首页> 外文OA文献 >Distinct domain-dependent effect of syntaxin1A on amiloride-sensitive sodium channel (ENaC) currents in HT-29 colonic epithelial cells
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Distinct domain-dependent effect of syntaxin1A on amiloride-sensitive sodium channel (ENaC) currents in HT-29 colonic epithelial cells

机译:Syntaxin1A对HT-29结肠上皮细胞中阿米洛利敏感钠通道(ENaC)电流的不同域依赖性影响

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摘要

The amiloride-sensitive epithelial sodium channel (ENaC), a plasma membrane protein mediates sodium reabsorption in epithelial tissues, including the distal nephron and colon. Syntaxin1A, a trafficking protein of the t-SNARE family has been reported to inhibit ENaC in the Xenopus oocyte expression and artificial lipid bilayer systems. The present report describes the regulation of the epithelial sodium channel by syntaxin1A in a human cell line that is physiologically relevant as it expresses both components and also responds to aldosterone stimulation. In order to evaluate the physiological significance of syntaxin1A interaction with natively expressed ENaC, we over-expressed HT-29 with syntaxin1A constructs comprising various motifs. Unexpectedly, we observed the augmentation of amiloride-sensitive currents with wild-type syntaxin1A full-length construct (1-288) in this cell line. Both γENaC and neutralizing syntaxin1A antibodies blocked native expression as amiloride-sensitive sodium currents were inhibited while munc18-1 antibody reversed this effect. The coiled-coiled domain H3 (194-266) of syntaxin1A inhibited, however the inclusion of the transmembrane domain to this motif (194-288) augmented amiloride sensitive currents. More so, data suggest that ENaC interacts with multiple syntaxin1A domains, which differentially regulate channel function. This functional modulation is the consequence of the physical enhancement of ENaC at the cell surface in cells over-expressed with syntaxin(s). Our data further suggest that syntaxin1A up-regulates ENaC function by multiple mechanisms that include PKA, PLC, PI3 and MAP Kinase (p42/44) signaling systems. We propose that syntaxin1A possesses distinct inhibitory and stimulatory domains that interact with ENaC subunits, which critically determines the overall ENaC functionality/regulation under distinct physiological conditions.
机译:阿米洛利敏感性上皮钠通道(ENaC)是一种质膜蛋白,介导上皮组织(包括远端肾单位和结肠)中钠的重吸收。据报道,Syntaxin1A是t-SNARE家族的一种运输蛋白,可以抑制非洲爪蟾卵母细胞表达和人工脂质双层系统中的ENaC。本报告描述了syntaxin1A在人类细胞系中对syntaxin1A的调节作用,因为它表达两种成分并且对醛固酮刺激也具有生理相关性。为了评估syntaxin1A与天然表达的ENaC相互作用的生理学意义,我们用syntaxin1A包含多种基序的构建体过表达了HT-29。出乎意料的是,我们在此细胞系中观察到野生型语法in1A全长构建体(1-288)对阿米洛利敏感电流的增加。 γENaC和中和的syntaxin1A抗体均阻断了天然表达,因为阿米洛利敏感的钠电流受到抑制,而munc18-1抗体则逆转了这种作用。 Syntaxin1A的卷曲螺旋结构域H3(194-266)受抑制,但是跨膜结构域包含在该基序(194-288)中增加了阿米洛利敏感电流。更重要的是,数据表明ENaC与多个syntaxin1A域进行交互,从而区别地调节通道功能。该功能性调节是在用syntaxin过度表达的细胞中细胞表面ENaC物理增强的结果。我们的数据进一步表明,syntaxin1A通过多种机制上调ENaC功能,包括PKA,PLC,PI3和MAP激酶(p42 / 44)信号系统。我们建议syntaxin1A具有与ENaC亚基相互作用的独特的抑制和刺激域,从而决定了在不同生理条件下的整体ENaC功能/调控。

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