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Gαi2参与上皮细胞紧密连接的维持和生物发生。

Involvement of Galphai2 in the maintenance and biogenesis of epithelial cell tight junctions.

作者信息

Saha C, Nigam S K, Denker B M

机构信息

Renal Division, Department of Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 1998 Aug 21;273(34):21629-33. doi: 10.1074/jbc.273.34.21629.

Abstract

Polarized epithelial cells have highly developed tight junctions (TJ) to maintain an impermeant barrier and segregate plasma membrane functions, but the mechanisms that promote TJ formation and maintain its integrity are only partially defined. Treatment of confluent monolayers of Madin-Darby canine kidney (MDCK) cells with AlF4- (activator of heterotrimeric G protein alpha subunits) results in a 3-4-fold increase in transepithelial resistances (TER), a reliable indicator of TJ integrity. MOCK cells transfected with activated Galpha0 (Q205L) have acclerated TJ formation (Denker, B. M., Saha, C. , Khawaja, S., and Nigam, S. J. (1996) J. Biol. Chem. 271, 25750-25753). Galphai2 has been localized within the tight junction, and a role for Galphai2 in the formation and/or maintenance of the tight junction was studied by transfection of MDCK cells with vector without insert (PC), wild type Galphai2, or a GTPase-deficient mutant (constitutively activated), Q205Lalphai2. Tryptic conformational analysis confirmed expression of a constitutively active Galphai2 in Q205Lalphai2-MDCK cells, and confocal microscopy showed a similar pattern of Galphai2 localization in the three cell lines. Q205Lalphai2-MDCK cells had significantly higher base-line TER values than wild type Galphai2- or PC-MDCK cells (1187 +/- 150 versus 576 +/- 89 (Galphai2); 377 +/- 52 Omega.cm2 (PC)), and both Galphai2- and Q205Lalphai2-transfected cell lines more rapidly develop TER in the Ca2+ switch, a model widely used to study the mechanisms of junctional assembly. Treatment of cells with AlF4- during the Ca2+ switch had little effect on the kinetics of TER development in Galphai2- or Q205Lalphai2-MDCK cells, but PC cells reached half-maximal TER significantly sooner in the presence of AlF4- (similar times to Galphai2-transfected cells). Base-line TER values obtained after the switch were significantly higher for all three cell lines in the presence of AlF4-. These findings indicate that Galphai2 is important for both the maintenance and development of the TJ, although additional Galpha subunits are likely to play a role.

摘要

极化上皮细胞具有高度发达的紧密连接(TJ),以维持不透性屏障并分隔质膜功能,但促进TJ形成并维持其完整性的机制仅部分明确。用AlF4-(异源三聚体G蛋白α亚基激活剂)处理汇合的Madin-Darby犬肾(MDCK)细胞单层,可使跨上皮电阻(TER)增加3-4倍,这是TJ完整性的可靠指标。用激活的Gα0(Q205L)转染的MOCK细胞具有加速的TJ形成(登克,B.M.,萨哈,C., Khawaja,S.,和尼加姆,S.J.(1996年)《生物化学杂志》271,25750-25753)。Gαi2已定位在紧密连接内,通过用无插入片段的载体(PC)、野生型Gαi2或GTP酶缺陷突变体(组成性激活)Q205Lαi2转染MDCK细胞,研究了Gαi2在紧密连接形成和/或维持中的作用。胰蛋白酶构象分析证实了Q205Lαi2-MDCK细胞中组成性活性Gαi2的表达,共聚焦显微镜显示三种细胞系中Gαi2的定位模式相似。Q205Lαi2-MDCK细胞的基线TER值显著高于野生型Gαi2-或PC-MDCK细胞(1187±150对576±89(Gαi2);377±52Ω·cm2(PC)),并且Gαi2-和Q205Lαi2-转染的细胞系在Ca2+转换中TER发展更快,Ca2+转换是广泛用于研究连接组装机制的模型。在Ca2+转换期间用AlF4-处理细胞对Gαi2-或Q205Lαi2-MDCK细胞中TER发展的动力学影响很小,但在存在AlF4-的情况下,PC细胞达到最大TER的一半明显更快(与Gαi2转染细胞的时间相似)。在存在AlF4-的情况下,转换后获得的基线TER值对于所有三种细胞系都显著更高。这些发现表明,Gαi2对于TJ的维持和发展都很重要,尽管其他Gα亚基可能也起作用。

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