{"id":250,"date":"2011-02-10T14:24:07","date_gmt":"2011-02-10T19:24:07","guid":{"rendered":"https:\/\/www.bu.edu\/nf-kb\/?page_id=250"},"modified":"2011-02-10T14:24:07","modified_gmt":"2011-02-10T19:24:07","slug":"references-n","status":"publish","type":"page","link":"https:\/\/www.bu.edu\/nf-kb\/other-resources\/references\/references-n\/","title":{"rendered":"References &#8211; N"},"content":{"rendered":"<p>Na HJ, Jeong HJ, Shin HY, Kim NS, Um JY, Hong SH and Kim HM (2005) Sopoongsan inhibits mast cell-mediated anaphylactic reactions and inflammatory cytokine secretion. International Archives of Allergy and Immunology 139 31-37<\/p>\n<p>Na HJ, Lee SJ, Kang YC, Cho YL, Nam WD, Kim PK, Ha KS, Chung HT, Lee H, Kwon YG, Koh JS and Kim YM (2004) Inhibition of farnesyltransferase prevents collagen-induced arthritis by down-regulation of inflammatory gene expression through suppression of p21(ras)-dependent NF-kB activation. 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Journal of Neurochemsitry 74 647-658<\/p>\n<p>Nakai M, Qin ZH, Wang Y and Chase TN (1999) Free radical scavenger OPC-14117 attenuates quinolinic acid-induced NF-kB activation and apoptosis in rat striatum. Brain Research Molecular Brain Research 64 59-68<\/p>\n<p>Nakai M, Sudo K, Yamada Y, Kojima Y, Kato T, Saito K, Moriwaki H and Seishima M (2005) The role of the tumor necrosis factor receptor in 2,4,6-trinitrobenzene sulfonic acid (TNBS)-induced colitis in mice.\u00a0Dig Dis Sci\u00a050 1669-1676<\/p>\n<p>Nakajima A, Kojima Y, Nakayama M, Yagita H, Okumura K and Nakano H (2007) Downregulation of c-FLIP promotes caspase-dependent JNK activation and reactive oxygen species accumulation in tumor cells.\u00a0Oncogene\u00a0in press<\/p>\n<p>Nakajima A, Komazawa-Sakon S, Takekawa M, Sasazuki T, Yeh WC, Yagita H, Okumura K and Nakano H (2006) An antiapoptotic protein, c-FLIP(L), directly binds to MKK7 and inhibits the JNK pathway.\u00a0EMBO Journal\u00a025 5549-5559<\/p>\n<p>Nakajima A, Wada K, Miki H, Kubota N, Nakajima N, Terauchi Y, Ohnishi S, Saubermann LJ, Kadowaki T, Blumberg RS, Nagai R and Matsuhashi N (2001) Endogenous PPAR gamma mediates anti-inflammatory activity in murine ischemia-reperfusion injury. Gastroenterology 120 460-469<\/p>\n<p>Nakajima H, Fujiwara H, Furuichi Y, Tanaka K and Shimbara N (2008) A novel small-molecule inhibitor of NF-kB signaling. Biochemical and Biophysical Research Communications in press<\/p>\n<p>Nakajima H, Nagaso H, Kakui N, Ishikawa M, Hiranuma T and Hoshiko S (2004) Critical role of the auto-modification of poly(ADP-ribose) polymerase-1 in the nuclear factor-kB-dependent gene expression in primary cultured mouse glial cells. Journal of Biological Chemistry 279 42774-42786<\/p>\n<p>Nakajima K, Honda S, Nakamura Y, Lopez-Redondo F, Kohsaka S, Yamato M, Kikuchi A and Okano T (2001) Intact microglia are cultured and non-invasively harvested without pathological activation using a novel cultured cell recovery method. Biomaterials 22 1213-1223<\/p>\n<p>Nakajima K, Kikuchi Y, Ikoma E, Honda S, Ishikawa M, Liu Y and Kohsaka S (1998) Neurotrophins regulate the function of cultured microglia. Glia 24 272-289<\/p>\n<p>Nakajima T, Kitajima I, Shin H, Takasaki I, Sigeta K, Abeyama K, Yamashita Y, Tokioka T, Soejima T and Maruyama I (1994) Involvement of NF-kB activation in thrombin-induced human vascular smooth muscle cell proliferation. Biochemical and Biophysical Research Communications 204 950-955<\/p>\n<p>Nakajima Y, Furuichi Y, Biswas KK, Hashiguchi T, Kawahara KI, Yamaji K, Uchimura T, Izumi Y and Maruyama I (2006) Endocannabinoid, anandamide in gingival tissue regulates the periodontal inflammation through NF-kB pathway inhibition.<br \/>\nFEBS Letters 580 613-619<\/p>\n<p>Nakamichi K, Saiki M, Kitani H, Kuboyama Y, Morimoto K, Takyama-Ito M and Kurane I (2007) Roles of NF-kB and MAPK signaling pathways in morphological and cytoskeletal responses of microglia to double-stranded RNA.\u00a0Neuroscience\u00a0Letters 414 222-227<\/p>\n<p>Nakamichi K, Saiki M, Sawada M, Takayama-Ito M, Yamamuro Y, Morimoto K and Kurane I (2005) Rabies virus-induced activation of mitogen-activated protein kinase and NF-kB signaling pathways regulates expression of CXC and CC chemokine ligands in microglia.\u00a0Journal of Virology\u00a079 11801-11812<\/p>\n<p>Nakamichi K, Saiki M, Sawada M, Yamamuro T, Morimoto K and Kurane I (2005) Double-stranded RNA stimulates chemokine expression in microglia through vacuolar pH-dependent activation of intracellular signaling pathways. Journal of Neurochemistry 95 273-283<\/p>\n<p>Nakamori Y, Koh T, Ogura H, Tanaka H, Fujimi S, Kasai K, Hosotubo H, Shimazu T and Sugimoto H (2003) Enhanced expression of intranuclear NF-kB in primed polymorphonuclear leukocytes in systemic inflammatory response syndrome patients. Journal of Trauma 54 253-260<\/p>\n<p>Nakamori Y, Ogura H, Koh T, Fujita K, Tanaka H, Sumi Y, Hosotsubo H, Yoshiya K, Irisawa T, Kuwagata Y, Shimazu T and Sugimoto H (2005) The balance between expression of intranuclear NF-kB and glucocorticoid receptor in polymorphonuclear leukocytes in SIRS patients. Journal of Trauma 59 308-315<\/p>\n<p>Nakamura A, Johns EJ, Imaizumi A, Yanagawa Y and Kohsaka T (2001) Activation of beta(2)-adrenoceptor prevents shiga toxin 2-induced TNF-alpha gene transcription. Journal of the American Society of Nephrology 12 2288-2299<\/p>\n<p>Nakamura H, Aoki M, Tamai K, Oishi M, Ogihara T, Kaneda Y and Morishita R (2002) Prevention and regression of atopic dermatitis by ointment containing NF-kB decoy oligodeoxynucleotides in NC\/Nga atopic mouse model. Gene Therapy 9 1221-1229<\/p>\n<p>Nakamura H, Fukusaki T, Toshimura A, Shiraishi C, Kishimoto M, Kaneko T and Hara Y (2008) Lack of Toll-like receptor 4 decreases lipopolysaccharide-induced bone resorption in C3H\/HeJ mice in vivo. Oral Microbiology and Immunology 23 190-195<\/p>\n<p>Nakamura H, Kawakami A, Ida H, Koji T and Eguchi K (2007) EGF activates PI3K-Akt and NF-kB via distinct pathways in salivary epithelial cells in Sjogren&#8217;s syndrome.\u00a0Rheumatology\u00a0International in press<\/p>\n<p>Nakamura H, Ishii C, Suehiro M, Iguchi A, Kuroda K, Shimizu K, Shimizu N, Imadome KI, Yajima M and Fujiwara S (2007) The latent membrane protein 1 (LMP1) encoded by Epstein-Barr virus induces expression of the putative oncogene Bcl-3 through activation of the nuclear factor-kappaB.\u00a0Virus Research in press<\/p>\n<p>Nakamura H, Kimura T, Ogita K, Nakamura T, Takemura M, Shimoya K, Koyama S, Tsujie T, Koyama M and Murata Y (2004) NF-kB activation at implantation window of the mouse uterus. American Journal of Reproductive Immunology 51 16-21<\/p>\n<p>Nakamura H, Kimura T, Ogita K, Koyama S, Tsujie T, Tsutsui T, Shimoya K, Koyama M, Kaneda Y and Murata Y (2004) Alteration of the timing of implantation by in vivo gene transfer: delay of implantation by suppression of nuclear factor kB activity and partial rescue by leukemia inhibitory factor. Biochemical and Biophysical Research Communications 321 886-892<\/p>\n<p>Nakamura H, Masutani H and Yodoi J (2002) Redox imbalance and its control in HIV infection. Antioxid Redox Signal 4 455-464<\/p>\n<p>Nakamura J, Shibata K, Hasebe A, Into T, Watanabe T and Ohata N (2002) Signaling pathways induced by lipoproteins derived from Mycoplasma salivarium and a synthetic lipopeptide (FSL-1) in normal human gingival\u00a0fibroblasts. Microbiol Immunol 46 151-158<\/p>\n<p>Nakamura K, Miyazato A, Koguchi Y, Adachi Y, Ohno N, Saijo S, Iwakura Y, Takeda K, Akira S, Fujita J, Ishii K, Kaku M and Kawakami K (2008)\u00a0Toll-like receptor 2 (TLR2) and dectin-1 contribute to the production of IL-12p40 by bone marrow-derived dendritic cells infected with Penicillium marneffei. Microbes and Infection in press<\/p>\n<p>Nakamura K, Miyazato A, Xiao G, Hatta M, Inden K, Aoyagi T, Shiratori K, Takeda K, Akira S, Saijo S, Iwakura Y, Adachi Y, Ohno N, Suzuki K, Fujita J, Kaku M and Kawakami K (2008) Deoxynucleic acids from Cryptococcus neoformans activate myeloid dendritic cells via a TLR9-dependent pathway. Journal of Immunology 180 4067-4074<\/p>\n<p>Nakamura K, Senda T, Sato K, Mori S and Moriyma M (2005) Accumulation of BCL10 at the perinuclear region is required for the BCL10-mediated nuclear factor-kB activation.\u00a0Pathobiology\u00a072 191-202<\/p>\n<p>Nakamura K, Yasunaga Y, Segawa T, Ko D, Moul JW, Srivastava S and Rhim JS (2002) Curcumin down-regulates AR gene expression and activation in prostate cancer cell lines. International Journal of Oncology 21 825-830<\/p>\n<p>Nakamura N, Hayasaka S, Zhang XY, Nagaki Y, Matsumoto M, Hayasaka Y and Terasawa K (2003) Effects of baicalin, baicalein, and wogonin on interleukin-6 and interleukin-8 expression, and nuclear factor-kappab binding activities induced by interleukin-1beta in human retinal pigment epithelial cell line. Experimental Eye Research 77 195-202<\/p>\n<p>Nakamura N, Shimaoka Y, Tougan T, Onda H, Okuzaki D, Zhao H, Fujimori A, Yabuta N, Nagamori I, Tanigawa A, Sato J, Oda T, Hayashida K, Suzuki R, Yukioka M Nojima H and Ochi T (2006) Isolation and expression profiling of genes upregulated in bone marrow-derived mononuclear cells of rheumatoid arthritis patients.\u00a0DNA Research\u00a013 169-183<\/p>\n<p>Nakamura T, Donovan DM, Hamada K, Sax CM, Norman B, Flanagan JR, Ozato K, Westphal H and Piatigorsky J (1990) Regulation of the mouse aA-crystallin gene: isolation of a cDNA encoding a protein that binds to a cis sequence motif shared with the major histocompatibility complex class I gene and other genes. Molecular and Cellular Biology 10 3700-3708<\/p>\n<p>Nakamura T, Goto M, Matsumoto A and Tanaka I (1998) Inhibition of NF-kB transcriptional activity by\u00a0a-Tocopheryl succinate. Biofactors 7 21-30<\/p>\n<p>Nakamura T, Kuwai R, Kitadai Y, Sasaki T, Fan D, Coombes KR, Kim SJ and Fidler IJ (2007) Zonal heterogeneity for gene expression in human pancreatic carcinoma.Cancer Research\u00a067\u00a07597-7604<\/p>\n<p>Nakamura T, Ouchida R, Kodama T, Kawashima T, Makino Y, Yoshikawa N, Watanabe S, Morimoto C, Kitamura T and Tanaka H (2001) Cytokine receptor common beta subunit-mediated STAT5 activation confers NF-kB activation in murine proB cell line Ba\/F3 cells. Journal of Biological Chemistry 277 6254-6265<\/p>\n<p>Nakamura T, Suzuki H, Wada Y, Kodama T and Doi T (2006) Fucoidan induces nitric oxide production via p38 mitogen-activated protein kinase and NF-kappaB-dependent signaling pathways through macrophage scavenger receptors.<br \/>\nBiochemical and\u00a0Biophysical\u00a0Research\u00a0Communications\u00a0343 286-294<\/p>\n<p>Nakamura Y, Grumont RJ and Gerondakis S (2002) NF-kB1 can inhibit v-Abl-induced lymphoid transformation by functioning as a negative regulator of cyclin D1 expression. Molecular and Cellular Biology 22 5563-5574<\/p>\n<p>Nakamura Y, Grumont RJ and Gerondakis S (2002) NF-kB1 can inhibit v-Abl-induced lymphoid transformation by functioning as a negative regulator of cyclin D1 expression. Molecular and Cellular Biology 22 5563-5574<\/p>\n<p>Nakamuta M, Enjoji M, Uchimura K, Ohta S, Sugimoto R, Kotoh K, Kato M, Irie T, Muta T and Nawata H (2002) Bisphenol a diblycidyl ether (badge) suppresses tumor necrosis factor-a production as a PPARg agonist in the murine macrophage-like cell line, RAW.264.7. Cell Biology International 26 235-241<\/p>\n<p>Nakamuta M, Ohta S, Tada S, Tsuruta S, Sugimoto R, Kotoh K, Kato M, Nakashima Y, Enjoji M and Nawata H (2001) Dimethyl sulfoxide inhibits dimethylnitrosamine-induced hepatic fibrosis in rats. International Journal of Molecular Medicine 8 553-560<\/p>\n<p>Nakane M, Ichikawa S and Matsuda A (2008) Triazole-linked dumbbell oligodeoxynucleotides with NF-kB binding ability as potential decoy molecules. Journal of Organic Chemistry in press<\/p>\n<p>Nakanishi C and Toi M (2005) Nuclear factor-kB inhibitors as sensitizers to anticancer drugs. Nature Reviews Cancer 5 297-309<\/p>\n<p>Nakanishi H, Kaibori M, Teshima S, Yoshida H, Kwon AH, Kamiyama Y, Nishizawa M, Ito S and Okumura T (2004) Pirfenidone inhibits the induction of iNOS stimulated by interleukin-1beta at a step of NF-kB DNA binding in hepatocytes. Journal of Hepatology 41 730-736<\/p>\n<p>Nakano H (2004) Signaling crosstalk between NF-kB and JNK. Trends in Immunology 25 402-405<\/p>\n<p>Nakano H (2005) Signaling crosstalk between NF-kappaB and JNK [Article in Japanese].\u00a0Seikagaku 77 29-32<\/p>\n<p>Nakano H, Nakajima A, Sakon-Komazawa S, Piao JH, Xue X and Okumura K (2006) Reactive oxygen species mediate crosstalk between NF-kB and JNK.\u00a0Cell Death\u00a0&amp;Differentiation\u00a013 730-737<\/p>\n<p>Nakano H, Sakon S, Koseki H, Takemori T, Tada K, Matsumoto M, Munechika E, Sakai T, Shirasawa T, Akiba H, Kobata T, Santee SM, Ware CF, Rennert PD, Taniguchi M, Yagita H and Okumura K (1999) Targeted disruption of TRAF5 gene causes defects in CD40- and CD27-mediated lymphocyte activation. Proceedings of the National Academy of Sciences USA 96 9803-9808<\/p>\n<p>Nakano H, Shindo M, Sakon S, Nishinaka S, Mihara M, Yagita H and Okumura K (1998) Differential regulation of IkB kinase a and b by two upstream kinases, NF-kB-inducing kinase and mitogen-activated protein kinase\/ERK kinase kinase 1. Proceedings of the National Academy of Sciences USA 95 3537-3542<\/p>\n<p>Nakano M, Tsuboi T, Kato M, Kurita K, Togari A (2003) Inhibitory effect of titanium particles on osteoclast formation generated by treatment of mouse bone marrow cells with PGE2. Oral Disease 9 77-83<\/p>\n<p>Nakao A, Kaczorowski DJ, Zuckerbraun BS, Lei J, Faleo G, Deguchi K, McCurry KR, Billiar TR and Kanno S (2007) Galantamine and carbon monoxide protect brain microvascular endothelial cells by heme oxygenase-1 induction. Biochemical and Biophysical Research Communications in press<\/p>\n<p>Nakao A, Otterbein LE, Overhaus M, Sarady JK, Tsung A, Kimizuka K, Nalesnik MA, Kaizu T, Uchiyama T, Liu F, Murase N, Bauer AJ and Bach FH (2004) Biliverdin protects the functional integrity of a transplanted syngeneic small bowel. Gastroenterology 127 595-606<\/p>\n<p>Nakao A, Schmidt J, Harada T, Tsung A, Stoffels B, Cruz Jr RJ, Kohmoto J, Peng X, Tomiyama K, Murase N, Bauer AJ and Fink MP (2006) A single intraperitoneal dose of carbon monoxide-saturated Ringer&#8217;s lactate solution ameliorates post-operative ileus in mice.\u00a0Journal of\u00a0Pharmacology and\u00a0Experimental\u00a0Therapeutics319 1265-1275<\/p>\n<p>Nakao N, Kurokawa T, Nonami T, Tumurkhuu G, Koide N and Yokochi T (2008) Hydrogen peroxide induces the production of tumor necrosis factor-a in RAW 264.7 macrophage cells via activation of p38 and stress-activated protein kinase. Innate Immunity 14 190-196<\/p>\n<p>Nakao S, Hata Y, Miura M, Noda K, Kimura YN, Kawahara S, Kita T, Hisatomi T, Nakazawa T, Kim Y, Dana MR, Kuwano M, Ono M, Ishibashi T and Hafezi-Moghadam A (2007) Dexamethasone inhibits interleukin-1beta-induced corneal neovascularization. Role of nuclear factor-kB-activated stromal cells in inflammatory angiogenesis.\u00a0American\u00a0Journal of\u00a0Pathology in press<\/p>\n<p>Nakao S, Ogtata Y, Shimizu E, Yamazaki M, Furuyama S and Sugiya H (2002) Tumor necrosis factor alpha (TNF-alpha)-induced prostaglandin E2 release is mediated by the activation of cyclooxygenase-2 (COX-2) transcription via NFkB in human gingival fibroblasts. Molecular and Cellular Biochemistry 238 11-18<\/p>\n<p>Nakao Y, Funami K, Kikkawa S, Taniguchi M, Nishiguchi M, Fukumori Y, Seya T and Matsumoto M (2005) Surface-expressed TLR6 participates in the recognition of diacylated lipopeptide and peptidoglycan in human cells. Journal of Immunology 174 1566-1573<\/p>\n<p>Nakase H, Okazaki K, Tabata Y, Uose S, Ohana M, Uchida K, Nishi T, Debreceni A, Itoh T, Kawanami C, Iwano M, Ikada Y and Chiba T (2001) An oral drug delivery system targeting immune-regulating cells ameliorates mucosal injury in trinitrobenzene sulfonic acid-induced colitis. Journal of Pharmacology and Experimental Therapy 297 1122-1128<\/p>\n<p>Nakashima H, Aoki M, Miyake T, Kawasaki T, Iwai M, Jo N, Oishi M, Kataoka K, Ohgi S, Ogihara T, Kaneda Y and Morishita R (2003) Inhibition of experimental abdominal aortic aneurysm in the rat by use of decoy oligodeoxynucleotides suppressing activity of Nuclear Factor kB and Ets transcription factors. Circulation 109 132-138<\/p>\n<p>Nakashima H,Nakamura M, Yamaguchi H, Yamanaka N, Akiyoshi T,Koga K, Yamaguchi K, Tsuneyoshi M, Tanaka M and Katano M (2006) Nuclear factor-kB contributes to Hedgehog signaling pathway activation through Sonic Hedgehog induction in pancreatic cancer.\u00a0Cancer Research\u00a066 7041-7049<\/p>\n<p>Nakashima I, Liu W, Akhand AA, Takeda K, Kawamoto Y, Kato M and Suzuki H (2003) 4-Hydroxynonenal triggers multistep signal transduction cascades for suppression of cellular functions. Molecular Aspects of Medicine 24 231-238<\/p>\n<p>Nakashima O, Terada Y, Inoshita S, Kuwahara M, Sasaki S and Marumo F (1999) Inducible nitric oxide synthase can be induced in the absence of active nuclear factor-kB in rat mesangial cells: involvement of the Janus kinase 2 signaling pathway. Journal of the American Society of Nephrology 10 721-729<\/p>\n<p>Nakashima Y, Sun DH, Trindade MC, Maloney WJ, Goodman SB, Schurman DJ and Smith RL (1999) Signaling pathways for tumor necrosis factor-alpha and interleukin-6 expression in human macrophages exposed to titanium-alloy particulate debris in vitro. J Bone Joint Surg Am 81 603-615<\/p>\n<p>Nakata H, Uemura Y, Kobayashi M, Harada R and Taguchi H (2003) Cyclooxygenase-2 inhibitor NS-398 suppresses cell growth and constitutive production of granulocyte-colony stimulating factor and granulocyte macrophage-colony stimulating factor in lung cancer cells. Cancer Science 94 173-180<\/p>\n<p>Nakata K, Hoshino Y, Honda Y, Tanaka N, Hebisawa A and Weiden M (2004) Molecular pathogenesis in tuberculosis complicated with AIDS [Article in Japanese].Kekkaku\u00a079 659-667<\/p>\n<p>Nakata S, Matsumura I, Tanaka H, Ezoe S, Satoh Y, Ishikawa J, Era T and Kanakura Y (2004) NF-kB family proteins participates in multiple steps of hematopoiesis through elimination of reactive oxygen species. Journal of Biological Chemistry 279 55578-55586<\/p>\n<p>Nakata S, Tsutsui M, Shimokawa H, Yamashita T, Tanimoto A, Tasaki H, Ozumi K, Sabanai K, Morishita T, Suda O, Hirano H, Sasaguri Y, Nakashima Y and Yanagihara N (2007) Statin treatment upregulates vascular neuronal nitric oxide synthase through Akt\/NF-kB pathway.\u00a0Arteriosclerosis,\u00a0Thrombosis and\u00a0Vascular Biology\u00a027 92-98<\/p>\n<p>Nakata T, Yasuda M, Fujita M, Kataoka H, Kiura K, Sano H and Shibata K (2006) CD14 directly binds to triacylated lipopeptides and facilitates recognition of the lipopeptides by the receptor complex of Toll-like receptors 2 and 1 without binding to the complex.\u00a0Cellular\u00a0Microbiology in press<\/p>\n<p>Nakatani K, Yamakuni T, Kondo N, Arakawa T, Oosawa K, Shimura S, Inoue H and Ohizumi Y (2004) gamma-mangostin inhibits IkB kinase activity and decreases lipopolysaccharide-induced cyclooxygenase-2 gene expression in C6 rat glioma cells. Molecular Pharmacology 66 667-674<br \/>\n<strong><br \/>\n<\/strong>Nakatani T, Tamada S, Asai T, Iwai Y, Kim T, Tsujino T, Kumata N, Uchida J, Tashiro K, Kuwabara N, Komiya T, Sumi T, Okamura M and Miura K (2002) Role of renin-angiotensin system and nuclear factor-kB in the obstructed kidney of rats with unilateral ureteral obstruction. Japanese Journal of Pharmacology 90 361-364<\/p>\n<p>Nakayama H, Ikebe T, Beppu M and Shirasuna K (2001) High expression levels of nuclear factor kB, IkB kinase alpha and Akt kinase in squamous cell carcinoma of the oral cavity. Cancer 92 3037-3044<\/p>\n<p>Nakayama H, Ikebe T and Shirasuna K (2005) Effects of IkB kinase alpha on the differentiation of squamous carcinoma cells. Oral Oncology 41 729-737<\/p>\n<p>Nakayama K, Hatakeyama S, Maruyama SI, Kikuchi A, Onoe K, Good RA and Nakayama KI (2003) Impaired degradation of inhibitory subunit of NF-kB (IkB) and {beta}-catenin as a result of targeted disruption of the {beta}-TrCP1 gene. Proceedings of the National Academy of Sciences USA 100 8752-8757<\/p>\n<p>Nakayama K, Ota Y, Okugawa S, Ise N, Kitazawa T, Tsukada K, Kawada M, Yanagimoto S and Kimura S (2003) Raf1 plays a pivotal role in lipopolysaccharide-induced activation of dendritic cells. Biochemical and Biophysical Research Communications 308 353-360<\/p>\n<p>Nakayama K, Shimizu H, Mitomo K, Watanabe T, Okamoto S-I and Yamamoto K-I (1992) A lymphoid cell-specific nuclear factor containing c-Rel-like proteins preferentially intereacts with interleukin-6 kB-related motifs whose activities are repressed in lymphoid cells. Molecular and Cellular Biology 12 1736-1746<\/p>\n<p>Nakayama T, Hieshima K, Nagakubo D, Sato E, Nakayama M, Kawa K and Yoshie O (2004) Selective induction of Th2-attracting chemokines CCL17 and CCL22 in human B cells by latent membrane protein 1 of Epstein-Barr Virus. Journal of Virology 78 1665-1674<\/p>\n<p>Nakayama Y, Kato N, Nakajima Y, Shimizu E and Ogata Y (2004) Effect of TNF-a on human osteosarcoma cell line Saos2-TNF-a regulation of bone sialoprotein gene expression in Saos2 osteoblast-like cells. Cell Biology International 28 653-660<\/p>\n<p>Nakazawa M, Ishii H, Nakamura H, Yoshino SI, Fukamizu A, Nishioka K and Nakajima T (2001) NFkB2 (p52) promoter activation via Notch signaling pathway in rheumatoid synoviocytes. International Journal of Molecular Medicine 7 31-35<\/p>\n<p>Nakkuntold J, Wongsurawat T, Charoenwongse P, Snabboon T, Sridama V and Hirankarn N (2006) Association of TNF-alpha, TNF-beta, IFN-gamma and IL-1Ra gene polymorphisms with Graves&#8217; disease in the Thai population.\u00a0Asian Pacific\u00a0Journal of Allergy and Immunology\u00a024 207-211<\/p>\n<p>Nakoshi Y, Hasegawa M, Sudo A, Yoshida T and Uchida A (2007) Regulation of tenascin-C expression by tumor necrosis factor-a in cultured human osteoarthritis chondrocytes. Journal of Rheumatology in press<\/p>\n<p>Nakshatri H, Bhat-Nakshatri P, Martin DA, Goulet Jr Rj and Sledge Jr GW (1997) Constitutive activation of NF-kB during progression of breast cancer to hormone-independent growth. Molecular and Cellular Biology 17 3629-3639<\/p>\n<p>Nakshatri H and Goulet RJ Jr (2002) NF-kB and breast cancer. Current Problems in Cancer 26 282-309<\/p>\n<p>Nakshatri H, Rice P and Bhat-Nakshatri P (2004) Antitumor agent parthenolide reverses resistance of breast cancer cells to tumor necrosis factor-related apoptosis-inducing ligand through sustained activation of c-Jun N-terminal kinase. Oncogene 23 7330-7344<\/p>\n<p>Nakakuki T, Ito M, Iwasaki H, Kureishi Y, Okamoto R, Moriki N, Kongo M, Kato S, Yamada N, Isaka N and Nakano T (2005) Rho\/Rho-kinase pathway contributes to C-reactive protein-induced plasminogen activator inhibitor-1 expression in endothelial cells.\u00a0Arterioscler Thromb Vasc Biol in press<\/p>\n<p>Nalca A, Qiu SG, El-Guendy N, Krishnan S and Rangnekar VM (1999) Oncogenic Ras sensitizes cells to apoptosis by Par-4. Journal of Biological Chemistry 274 29976-29983<\/p>\n<p>Nam HY, Ahn EK, Kim HJ, Lim Y, Lee CB, Lee KY and Vallyathan V (2006) Diesel exhaust particles increase IL-1beta-induced human beta-defensin expression via NF-kB-mediated pathway in human lung epithelial cells.\u00a0Part Fibre Toxicology\u00a03 9<\/p>\n<p>Nam HY, Choi BH, Lee JY, Lee SG, Kim YH, Lee KH, Yoon HK, Song JS, Kim HJ and Lim Y (2004) The role of nitric oxide in the particulate matter (PM2.5)-induced NFkB activation in lung epithelial cells. Toxicology Letters 148 95-102<\/p>\n<p>Nam JS, Cho MH, Lee Gt,Park JS, Ahn CW, Cha BS, Lim SK, Kim KR, Ha HJ and Lee HC (2008) The activation of NF-kB and AP-1 in peripheral blood mononuclear cells isolated from patients with diabetic nephropathy. Diabetes Reearch and Clinical Practice in press<\/p>\n<p>Nam J-S, Hirohashi S and Wakefield LM (2007) Dyadherin: a new player in cancer progression. Cancer Letters 255 161-169<\/p>\n<p>Nam KH, Choi JH, Seo YJ, Lee YM, Won YS, Lee MR, Lee MN, Park JG, Kim YM, Kim HC, Lee CH, Lee HK, Oh SR and Oh ST (2006) Inhibitory effects of tilianin on the expression of inducible nitric oxide synthase in low density lipoprotein receptor deficiency mice.\u00a0Experimental\u00a0Molecular Medicine\u00a038 445-452<\/p>\n<p>Nam KN, Koketsu M and Lee EH (2008) 5-Chloroacetyl-2-amino-1,3-selenazoles attenuate microglial inflammatory responses through NF-kB inhibition. European Journal of Pharmacology in press<\/p>\n<p>Nam KN, Son MS, Park JH and Lee EH (2008) Shikonins attenuate microglial inflammatory responses by inhibition of ERK, Akt, and NF-kB: neuroprotective implications. Neuropharmacology in press<\/p>\n<p>Nam KO, Kang H, Shin SM, Cho KH, Kwon B, Kwon BS, Kim SJand Lee HW (2005) Cross-linking of 4-1BB activates TCR-signaling pathways in CD8+ T lymphocytes.\u00a0Journal of Immunology 174 1898-1905<\/p>\n<p>Nam KW, Kim J, Hong JJ, Choi JH, Mar W, Cho MH, Kim YM, Oh SR, Lee HK, Nam KH and Oh GT (2005) Inhibition of cytokine-induced IkB kinase activation as a mechanism contributing to the anti-atherogenic activity of tilianin in hyperlipidemic mice.\u00a0Atherosclerosis\u00a0180 27-35<\/p>\n<p>Nam NH (2006) Naturally occurring NF-kB inhibitors.\u00a0Mini Reviews in\u00a0Medicinal Chemistry\u00a06 945-951<\/p>\n<p>Nam SY, Cho KS, Heo YM, Ha JC, Kim YH, Keun Yi H, Han Hwang P, Kim HM and Podack ER (2002) Regulation of lymphocyte clustering by CD30-mediated ICAM-1 up-regulation. Cell Immunol 219 38-47<\/p>\n<p>Nam SY and Chung HY (2005) The suppression of radiation-induced NF-kB activity by dexamethasone correlates with increased cell death in vivo.\u00a0Biochemical and Biophysical Research Communications\u00a0336 603-608<\/p>\n<p>Nam SY, Kim JS, Kim JM, Lee JY, Kim N, Jung HC and Song IS (2008) DA-6034, a derivative of flavonoid, prevents and ameliorates dextran sulfate sodium-induced colitis and inhibits colon carcinogenesis. Experimental Biology and Medicine (Maywood) 233 180-191<\/p>\n<p>Nam Y, Weng AP, Aster JC and Blacklow SC (2003) Structural requirements for assembly of the CSL\/intracellular notch1\/mastermind-like 1 transcriptional activation complex. 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Vascular Pharmacology 43 425-433<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Na HJ, Jeong HJ, Shin HY, Kim NS, Um JY, Hong SH and Kim HM (2005) Sopoongsan inhibits mast cell-mediated anaphylactic reactions and inflammatory cytokine secretion. International Archives of Allergy and Immunology 139 31-37 Na HJ, Lee SJ, Kang YC, Cho YL, Nam WD, Kim PK, Ha KS, Chung HT, Lee H, Kwon YG, Koh [&hellip;]<\/p>\n","protected":false},"author":4258,"featured_media":0,"parent":201,"menu_order":14,"comment_status":"closed","ping_status":"open","template":"","meta":[],"_links":{"self":[{"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/pages\/250"}],"collection":[{"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/users\/4258"}],"replies":[{"embeddable":true,"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/comments?post=250"}],"version-history":[{"count":1,"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/pages\/250\/revisions"}],"predecessor-version":[{"id":251,"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/pages\/250\/revisions\/251"}],"up":[{"embeddable":true,"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/pages\/201"}],"wp:attachment":[{"href":"https:\/\/www.bu.edu\/nf-kb\/wp-json\/wp\/v2\/media?parent=250"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}