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Occludin: a novel integral membrane protein localizing at tight junctions
Abstract
Recently, we found that ZO-1, a tight junction-associated protein, was concentrated in the so called isolated adherens junction fraction from the liver (Itoh, M., A. Nagafuchi, S. Yonemura, T. Kitani-Yasuda, Sa. Tsukita, and Sh. Tsukita. 1993. J. Cell Biol. 121:491-502). Using this fraction derived from chick liver as an antigen, we obtained three monoclonal antibodies specific for a approximately 65-kD protein in rats. This antigen was not extractable from plasma membranes without detergent, suggesting that it is an integral membrane protein. Immunofluorescence and immunoelectron microscopy with these mAbs showed that this approximately 65-kD membrane protein was exclusively localized at tight junctions of both epithelial and endothelial cells: at the electron microscopic level, the labels were detected directly over the points of membrane contact in tight junctions. To further clarify the nature and structure of this membrane protein, we cloned and sequenced its cDNA. We found that the cDNA encoded a 504-amino acid polypeptide with 55.9 kDa. A search of the data base identified no proteins with significant homology to this membrane protein. A most striking feature of its primary structure was revealed by a hydrophilicity plot: four putative membrane-spanning segments were included in the NH2-terminal half. This hydrophilicity plot was very similar to that of connexin, an integral membrane protein in gap junctions. These findings revealed that an integral membrane protein localizing at tight junctions is now identified, which we designated as "occludin."
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- Anderson JM, Stevenson BR, Jesaitis LA, Goodenough DA, Mooseker MS. Characterization of ZO-1, a protein component of the tight junction from mouse liver and Madin-Darby canine kidney cells. J Cell Biol. 1988 Apr;106(4):1141–1149. [Europe PMC free article] [Abstract] [Google Scholar]
- Buxton RS, Cowin P, Franke WW, Garrod DR, Green KJ, King IA, Koch PJ, Magee AI, Rees DA, Stanley JR, et al. Nomenclature of the desmosomal cadherins. J Cell Biol. 1993 May;121(3):481–483. [Europe PMC free article] [Abstract] [Google Scholar]
- Chomczynski P, Sacchi N. Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal Biochem. 1987 Apr;162(1):156–159. [Abstract] [Google Scholar]
- Citi S. The molecular organization of tight junctions. J Cell Biol. 1993 May;121(3):485–489. [Europe PMC free article] [Abstract] [Google Scholar]
- Citi S, Sabanay H, Jakes R, Geiger B, Kendrick-Jones J. Cingulin, a new peripheral component of tight junctions. Nature. 1988 May 19;333(6170):272–276. [Abstract] [Google Scholar]
- Dautigny A, Alliel PM, d'Auriol L, Pham Dinh D, Nussbaum JL, Galibert F, Jollès P. Molecular cloning and nucleotide sequence of a cDNA clone coding for rat brain myelin proteolipid. FEBS Lett. 1985 Aug 19;188(1):33–36. [Abstract] [Google Scholar]
- FARQUHAR MG, PALADE GE. Junctional complexes in various epithelia. J Cell Biol. 1963 May;17:375–412. [Europe PMC free article] [Abstract] [Google Scholar]
- Funayama N, Nagafuchi A, Sato N, Tsukita S, Tsukita S. Radixin is a novel member of the band 4.1 family. J Cell Biol. 1991 Nov;115(4):1039–1048. [Europe PMC free article] [Abstract] [Google Scholar]
- Gallin WJ, Sorkin BC, Edelman GM, Cunningham BA. Sequence analysis of a cDNA clone encoding the liver cell adhesion molecule, L-CAM. Proc Natl Acad Sci U S A. 1987 May;84(9):2808–2812. [Europe PMC free article] [Abstract] [Google Scholar]
- Gumbiner B. Structure, biochemistry, and assembly of epithelial tight junctions. Am J Physiol. 1987 Dec;253(6 Pt 1):C749–C758. [Abstract] [Google Scholar]
- Gumbiner B, Lowenkopf T, Apatira D. Identification of a 160-kDa polypeptide that binds to the tight junction protein ZO-1. Proc Natl Acad Sci U S A. 1991 Apr 15;88(8):3460–3464. [Europe PMC free article] [Abstract] [Google Scholar]
- Hatta K, Nose A, Nagafuchi A, Takeichi M. Cloning and expression of cDNA encoding a neural calcium-dependent cell adhesion molecule: its identity in the cadherin gene family. J Cell Biol. 1988 Mar;106(3):873–881. [Europe PMC free article] [Abstract] [Google Scholar]
- Holton JL, Kenny TP, Legan PK, Collins JE, Keen JN, Sharma R, Garrod DR. Desmosomal glycoproteins 2 and 3 (desmocollins) show N-terminal similarity to calcium-dependent cell-cell adhesion molecules. J Cell Sci. 1990 Oct;97(Pt 2):239–246. [Abstract] [Google Scholar]
- Itoh M, Yonemura S, Nagafuchi A, Tsukita S, Tsukita S. A 220-kD undercoat-constitutive protein: its specific localization at cadherin-based cell-cell adhesion sites. J Cell Biol. 1991 Dec;115(5):1449–1462. [Europe PMC free article] [Abstract] [Google Scholar]
- Itoh M, Nagafuchi A, Yonemura S, Kitani-Yasuda T, Tsukita S, Tsukita S. The 220-kD protein colocalizing with cadherins in non-epithelial cells is identical to ZO-1, a tight junction-associated protein in epithelial cells: cDNA cloning and immunoelectron microscopy. J Cell Biol. 1993 May;121(3):491–502. [Europe PMC free article] [Abstract] [Google Scholar]
- Kachar B, Reese TS. Evidence for the lipidic nature of tight junction strands. Nature. 1982 Apr 1;296(5856):464–466. [Abstract] [Google Scholar]
- Koch PJ, Walsh MJ, Schmelz M, Goldschmidt MD, Zimbelmann R, Franke WW. Identification of desmoglein, a constitutive desmosomal glycoprotein, as a member of the cadherin family of cell adhesion molecules. Eur J Cell Biol. 1990 Oct;53(1):1–12. [Abstract] [Google Scholar]
- Kozak M. The scanning model for translation: an update. J Cell Biol. 1989 Feb;108(2):229–241. [Europe PMC free article] [Abstract] [Google Scholar]
- Kumar NM, Gilula NB. Cloning and characterization of human and rat liver cDNAs coding for a gap junction protein. J Cell Biol. 1986 Sep;103(3):767–776. [Europe PMC free article] [Abstract] [Google Scholar]
- Laemmli UK. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature. 1970 Aug 15;227(5259):680–685. [Abstract] [Google Scholar]
- Leube RE, Kaiser P, Seiter A, Zimbelmann R, Franke WW, Rehm H, Knaus P, Prior P, Betz H, Reinke H, et al. Synaptophysin: molecular organization and mRNA expression as determined from cloned cDNA. EMBO J. 1987 Nov;6(11):3261–3268. [Europe PMC free article] [Abstract] [Google Scholar]
- Loewenstein WR. The cell-to-cell channel of gap junctions. Cell. 1987 Mar 13;48(5):725–726. [Abstract] [Google Scholar]
- Madara JL. Intestinal absorptive cell tight junctions are linked to cytoskeleton. Am J Physiol. 1987 Jul;253(1 Pt 1):C171–C175. [Abstract] [Google Scholar]
- Milks LC, Kumar NM, Houghten R, Unwin N, Gilula NB. Topology of the 32-kd liver gap junction protein determined by site-directed antibody localizations. EMBO J. 1988 Oct;7(10):2967–2975. [Europe PMC free article] [Abstract] [Google Scholar]
- Milner RJ, Lai C, Nave KA, Lenoir D, Ogata J, Sutcliffe JG. Nucleotide sequences of two mRNAs for rat brain myelin proteolipid protein. Cell. 1985 Oct;42(3):931–939. [Abstract] [Google Scholar]
- Musil LS, Goodenough DA. Gap junctional intercellular communication and the regulation of connexin expression and function. Curr Opin Cell Biol. 1990 Oct;2(5):875–880. [Abstract] [Google Scholar]
- Nagafuchi A, Shirayoshi Y, Okazaki K, Yasuda K, Takeichi M. Transformation of cell adhesion properties by exogenously introduced E-cadherin cDNA. Nature. 1987 Sep 24;329(6137):341–343. [Abstract] [Google Scholar]
- Nagafuchi A, Takeichi M, Tsukita S. The 102 kd cadherin-associated protein: similarity to vinculin and posttranscriptional regulation of expression. Cell. 1991 May 31;65(5):849–857. [Abstract] [Google Scholar]
- Nagy Z, Peters H, Hüttner I. Fracture faces of cell junctions in cerebral endothelium during normal and hyperosmotic conditions. Lab Invest. 1984 Mar;50(3):313–322. [Abstract] [Google Scholar]
- Nose A, Nagafuchi A, Takeichi M. Isolation of placental cadherin cDNA: identification of a novel gene family of cell-cell adhesion molecules. EMBO J. 1987 Dec 1;6(12):3655–3661. [Europe PMC free article] [Abstract] [Google Scholar]
- Paul DL. Molecular cloning of cDNA for rat liver gap junction protein. J Cell Biol. 1986 Jul;103(1):123–134. [Europe PMC free article] [Abstract] [Google Scholar]
- Pelham HR, Jackson RJ. An efficient mRNA-dependent translation system from reticulocyte lysates. Eur J Biochem. 1976 Aug 1;67(1):247–256. [Abstract] [Google Scholar]
- Pinto da Silva P, Kachar B. On tight-junction structure. Cell. 1982 Mar;28(3):441–450. [Abstract] [Google Scholar]
- Popot JL, Pham Dinh D, Dautigny A. Major Myelin proteolipid: the 4-alpha-helix topology. J Membr Biol. 1991 Mar;120(3):233–246. [Abstract] [Google Scholar]
- Ringwald M, Schuh R, Vestweber D, Eistetter H, Lottspeich F, Engel J, Dölz R, Jähnig F, Epplen J, Mayer S, et al. The structure of cell adhesion molecule uvomorulin. Insights into the molecular mechanism of Ca2+-dependent cell adhesion. EMBO J. 1987 Dec 1;6(12):3647–3653. [Europe PMC free article] [Abstract] [Google Scholar]
- Schneeberger EE, Lynch RD. Structure, function, and regulation of cellular tight junctions. Am J Physiol. 1992 Jun;262(6 Pt 1):L647–L661. [Abstract] [Google Scholar]
- Shivers RR, Betz AL, Goldstein GW. Isolated rat brain capillaries possess intact, structurally complex, interendothelial tight junctions; freeze-fracture verification of tight junction integrity. Brain Res. 1984 Dec 24;324(2):313–322. [Abstract] [Google Scholar]
- Simionescu M, Simionescu N, Palade GE. Segmental differentiations of cell junctions in the vascular endothelium. The microvasculature. J Cell Biol. 1975 Dec;67(3):863–885. [Europe PMC free article] [Abstract] [Google Scholar]
- Simionescu M, Simionescu N, Palade GE. Segmental differentiations of cell junctions in the vascular endothelium. Arteries and veins. J Cell Biol. 1976 Mar;68(3):705–723. [Europe PMC free article] [Abstract] [Google Scholar]
- Staehelin LA. Further observations on the fine structure of freeze-cleaved tight junctions. J Cell Sci. 1973 Nov;13(3):763–786. [Abstract] [Google Scholar]
- Staehelin LA. Structure and function of intercellular junctions. Int Rev Cytol. 1974;39:191–283. [Abstract] [Google Scholar]
- Stevenson BR, Goodenough DA. Zonulae occludentes in junctional complex-enriched fractions from mouse liver: preliminary morphological and biochemical characterization. J Cell Biol. 1984 Apr;98(4):1209–1221. [Europe PMC free article] [Abstract] [Google Scholar]
- Stevenson BR, Paul DL. The molecular constituents of intercellular junctions. Curr Opin Cell Biol. 1989 Oct;1(5):884–891. [Abstract] [Google Scholar]
- Stevenson BR, Siliciano JD, Mooseker MS, Goodenough DA. Identification of ZO-1: a high molecular weight polypeptide associated with the tight junction (zonula occludens) in a variety of epithelia. J Cell Biol. 1986 Sep;103(3):755–766. [Europe PMC free article] [Abstract] [Google Scholar]
- Stevenson BR, Anderson JM, Bullivant S. The epithelial tight junction: structure, function and preliminary biochemical characterization. Mol Cell Biochem. 1988 Oct;83(2):129–145. [Abstract] [Google Scholar]
- Stevenson BR, Heintzelman MB, Anderson JM, Citi S, Mooseker MS. ZO-1 and cingulin: tight junction proteins with distinct identities and localizations. Am J Physiol. 1989 Oct;257(4 Pt 1):C621–C628. [Abstract] [Google Scholar]
- Suzuki S, Sano K, Tanihara H. Diversity of the cadherin family: evidence for eight new cadherins in nervous tissue. Cell Regul. 1991 Apr;2(4):261–270. [Europe PMC free article] [Abstract] [Google Scholar]
- Takeichi M. Cadherin cell adhesion receptors as a morphogenetic regulator. Science. 1991 Mar 22;251(5000):1451–1455. [Abstract] [Google Scholar]
- Tokuyasu KT. Immunochemistry on ultrathin frozen sections. Histochem J. 1980 Jul;12(4):381–403. [Abstract] [Google Scholar]
- Tsukita S, Tsukita S. Isolation of cell-to-cell adherens junctions from rat liver. J Cell Biol. 1989 Jan;108(1):31–41. [Europe PMC free article] [Abstract] [Google Scholar]
- Tsukita S, Hieda Y, Tsukita S. A new 82-kD barbed end-capping protein (radixin) localized in the cell-to-cell adherens junction: purification and characterization. J Cell Biol. 1989 Jun;108(6):2369–2382. [Europe PMC free article] [Abstract] [Google Scholar]
- Tsukita S, Itoh M, Tsukita S. A new 400-kD protein from isolated adherens junctions: its localization at the undercoat of adherens junctions and at microfilament bundles such as stress fibers and circumferential bundles. J Cell Biol. 1989 Dec;109(6 Pt 1):2905–2915. [Europe PMC free article] [Abstract] [Google Scholar]
- Tsukita S, Tsukita S, Nagafuchi A, Yonemura S. Molecular linkage between cadherins and actin filaments in cell-cell adherens junctions. Curr Opin Cell Biol. 1992 Oct;4(5):834–839. [Abstract] [Google Scholar]
- Willecke K, Hennemann H, Dahl E, Jungbluth S, Heynkes R. The diversity of connexin genes encoding gap junctional proteins. Eur J Cell Biol. 1991 Oct;56(1):1–7. [Abstract] [Google Scholar]
- Yeager M, Gilula NB. Membrane topology and quaternary structure of cardiac gap junction ion channels. J Mol Biol. 1992 Feb 20;223(4):929–948. [Abstract] [Google Scholar]
- Zhong Y, Saitoh T, Minase T, Sawada N, Enomoto K, Mori M. Monoclonal antibody 7H6 reacts with a novel tight junction-associated protein distinct from ZO-1, cingulin and ZO-2. J Cell Biol. 1993 Jan;120(2):477–483. [Europe PMC free article] [Abstract] [Google Scholar]
- Zimmer DB, Green CR, Evans WH, Gilula NB. Topological analysis of the major protein in isolated intact rat liver gap junctions and gap junction-derived single membrane structures. J Biol Chem. 1987 Jun 5;262(16):7751–7763. [Abstract] [Google Scholar]
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