[1] Funke L, Dakoji S, Bredt DS. Membrane-associated guanylate kinases regulate adhesion and plasticity at cell junctions[J]. Annu Rev Biochem, 2005,74:219-245. [2] Stevenson BR, Siliciano JD, Mooseker MS, et al. Identification of ZO-1: a high molecular weight polypeptide associated with the tight junction (zonula occludens) in a variety of epithelia[J]. J Cell Biol,1986,103(3):755-766. [3] Anderson, JM. Cell signalling: MAGUK magic[J]. Curr Biol, 1996,6(4):382-384. [4] Umeda K, Ikenouchi J, Katahira-Tayama S, et al. ZO-1 and ZO-2 independently determine where claudins are polymerized in tight-junction strand formation[J]. Cell,2006,126(4):741-754. [5] González-Mariscal L, Betanzos A, Avila-Flores A. MAGUK proteins: structure and role in the tight junction[J]. Semin Cell Dev Biol, 2000,11(4):315-324. [6] Itoh M, Sasaki H, Furuse M, et al. Junctional adhesion molecule (JAM) binds to PAR-3: a possible mechanism for the recruitment of PAR-3 to tight junctions[J]. J Cell Biol, 2001,154(3):491-497. [7] Wittchen ES, Haskins J, Stevenson BR. Protein interactions at the tight junction. Actin has multiple binding partners, and ZO-1 forms independent complexes with ZO-2 and ZO-3[J]. J Biol Chem,1999,274(49): 35179-35185. [8] Yamamoto T, Harada N, Kano K, et al. The Ras target AF-6 interacts with ZO-1 and serves as a peripheral component of tight junctions in epithelial cells[J]. J Cell Biol,1997,139(3):785-795. [9] Bazzoni G, Martinez-Estrada OM, Orsenigo F, et al. Interaction of junctional adhesion molecule with the tight junction components ZO-1, cingulin, and occludin[J]. J Biol Chem,2000,275(27):20520-20526. [10] Tsukita S, Katsuno T, Yamazaki Y, et al. Roles of ZO-1 and ZO-2 in establishment of the belt-like adherens and tight junctions with paracellular permselective barrier function[J]. Ann N Y Acad Sci,2009,1165:44-52. [11] Van Itallie CM, Fanning AS, Bridges A, et al. ZO-1 stabilizes the tight junction solute barrier through coupling to the perijunctional cytoskeleton[J]. Mol Biol cell, 2009,20(17):3930-3940. [12] Fanning AS, Van Itallie CM, Anderson JM. Zonula occludens-1 and -2 regulate apical cell structure and the zonula adherens cytoskeleton in polarized epithelia[J]. Mol Biol cell,2012,23(4):577-590. [13] Nagaoka K, Udagawa T, Richter JD. CPEB-mediated ZO-1 mRNA localization is required for epithelial tight-junction assembly and cell polarity[J]. Nat Commun,2012,3:675. [14] Balda MS, Matter K. Tight junctions and the regulation of gene expression[J]. Biochim Biophy Acta, 2009,1788(4):761-767. [15] Omerovic J, Prior IA. Compartmentalized signalling: Ras proteins and signalling nanoclusters[J]. FEBS J, 2009,276(7):1817-1825. [16] Sourisseau T, Georgiadis A, Tsapara A, et al. Regulation of PCNA and cyclin D1 expression and epithelial morphogenesis by the ZO-1-regulated transcription factor ZONAB/DbpA[J]. Mol Cell Biol, 2006,26(6):2387-2398. [17] Nie M, Aijaz S, Leefa Chong San IV, et al. The Y-box factor ZONAB/DbpA associates with GEF-H1/Lfc and mediates Rho-stimulated transcription[J]. EMBO Rep,2009,10(10):1125-1131. [18] Balda MS, Matter K. The tight junction protein ZO-1 and an interacting transcription factor regulate ErbB-2 expression[J]. EMBO J, 2000,19(9):2024-2033. [19] Martin TA, Jiang WG. Loss of tight junction barrier function and its role in cancer metastasis[J]. Biochimi Biophys Acta, 2009,1788(4):872-891. [20] Raymond WR. Cancer Biology[M]. Oxford: Oxford University Press, 2007. [21] Willott E, Balda MS, Fanning AS, et al. The tight junction protein ZO-1 is homologous to the Drosophila discs-large tumor suppressor protein of septate junctions[J]. Proc Nat Acad Sci USA,1993,90(16):7834-7838. [22] Hanada N, Makino K, Koga H, et al. NE-dlg, a mammalian homolog of Drosophila dlg tumor suppressor, induces growth suppression and impairment of cell adhesion: possible involvement of down-regulation of beta-catenin by NE-dlg expression[J]. Int J Cancer, 2000,86(4):480-488. [23] Boussioutas A, Li H, Liu J, et al. Distinctive patterns of gene expression in premalignant gastric mucosa and gastric cancer[J]. Cancer Res,2003,63(10):2569-2577. [24] Yoshida K, Kanaoka S, Takai T, et al. EGF rapidly translocates tight junction proteins from the cytoplasm to the cell-cell contact via protein kinase C activation in TMK-1 gastric cancer cells[J]. Exp Cell Res,2005,309(2):397-409. [25] Tan X, Egami H, Ishikawa S, et al. Zonula occludens-1 (ZO-1) redistribution is involved in the regulation of cell dissociation in pancreatic cancer cells[J]. Dig Dis Sci, 2005,50(8):1402-1409. [26] Brysse A, Mestdagt M, Polette M, et al. Regulation of CXCL8/IL-8 expression by zonula occludens-1 in human breast cancer cells[J]. Mol Cancer Res, 2012,10(1):121-132. [27] Kaihara T, Kawamata H, Imura J, et al. Redifferentiation and ZO-1 reexpression in liver-metastasized colorectal cancer: possible association with epidermal growth factor receptor-induced tyrosine phosphorylation of ZO-1[J]. Cancer Sci, 2003,94(2):166-172. [28] Tuomi S, Mai A, Nevo J, et al. PKCepsilon regulation of an alpha5 integrin-ZO-1 complex controls lamellae formation in migrating cancer cells[J]. Sci Signal,2009,2(77):ra32. [29] Brooks PC. Cell adhesion molecules in angiogenesis[J]. Cancer Metastasis Rev,1996,15(2): 187-194. [30] Hay ED. An overview of epithelio-mesenchymal transformation[J]. Acta Anat (Basel),1995, 154(1):8-20. [31] Cereijido M, Contreras RG, Shoshani L. Cell adhesion, polarity, and epithelia in the dawn of metazoans[J]. Physiol Rev,2004,84(4):1229-1262. [32] Morita K, Tsukita S, Miyachi Y. Tight junction-associated proteins (occludin, ZO-1, claudin-1, claudin-4) in squamous cell carcinoma and Bowen′s disease[J]. Br J Dermatol,2004,151(2):328-334. [33] Martin TA, Watkins G, Mansel RE, et al. Loss of tight junction plaque molecules in breast cancer tissues is associated with a poor prognosis in patients with breast cancer[J]. Eur J Cancer,2004,40(18):2717-2725. [34] Orbán E, Szabó E, Lotz G, et al. Different expression of occludin and ZO-1 in primary and metastatic liver tumors[J]. Pathol Oncol Res, 2008,14(3):299-306. [35] Hu Y, Jian X, Peng J, et al. Gene expression profiling of oral submucous fibrosis using oligonucleotide microarray[J]. Oncol Rep, 2008,20(2):287-294. [36] Oku N, Sasabe E, Ueta E, et al. Tight junction protein claudin-1 enhances the invasive activity of oral squamous cell carcinoma cells by promoting cleavage of laminin-5 gamma2 chain via matrix metalloproteinase (MMP)-2 and membrane-type MMP-1[J]. Cancer Res, 2006,66(10):5251-5257. [37] Giri S, Poindexter KM, Sundar SN, et al. Arecoline induced disruption of expression and localization of the tight junctional protein ZO-1 is dependent on the HER 2 expression in human endometrial Ishikawa cells[J]. BMC Cell Biol, 2010,11:53. [38] Abbruscato TJ, Lopez SP, Mark KS, et al. Nicotine and cotinine modulate cerebral microvascular permeability and protein expression of ZO-1 through nicotinic acetylcholine receptors expressed on brain endothelial cells[J]. J Pharm Sci, 2002,91(12):2525-2538.
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