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连接蛋白 37 定位于肾上皮细胞,并对饮食盐摄入量的变化作出反应。

Connexin 37 is localized in renal epithelia and responds to changes in dietary salt intake.

机构信息

Institute of Anatomy, Charité-Universitätsmedizin Berlin, Berlin, Germany.

出版信息

Am J Physiol Renal Physiol. 2010 Jan;298(1):F216-23. doi: 10.1152/ajprenal.00295.2009. Epub 2009 Oct 14.

Abstract

Connexins are the main components of gap junction channels, which are important for intercellular communication. In the kidney, several members of the connexin (Cx) family have been identified. Renal vascular expression and hemodynamic impacts have so far been shown for Cx37, Cx40, and Cx43. Additionally, Cx30, Cx30.3, and Cx43 have been identified to be part of tubular epithelial gap junctions and/or hemichannels. However, the localization and role of other Cx family members in renal epithelial structures remain undetermined. We aimed to localize Cx37 in the kidney to obtain information on its epithelial expression and potential functions. Immunohistochemistry in rodent kidney showed characteristic punctate patterns in the vasculature and along the nephron. Strong basolateral expression was found in the thick ascending limb and distal convoluted tubule. Weaker abundances were found in the proximal tubule and the collecting duct also at the basolateral side. In situ hybridization and real-time PCR of isolated nephron segments confirmed this distribution at the mRNA level. Ultrastructurally, Cx37 immunostaining was confined to basolateral cell interdigitations and infoldings. As a functional approach, rats were fed low- or high-salt diets. Compared with control and high-salt diets, rats treated with low-salt diet showed significantly increased Cx37 mRNA and protein levels. This may be indicative of an adaptive tubular response to changes in sodium reabsorption. In summary, renal epithelia express Cx37 in their basolateral membranes. Here, the formation of Cx37 gap junctions may be involved in cellular communication and adjustments of vectorial epithelial transport.

摘要

间隙连接蛋白是间隙连接通道的主要组成部分,对于细胞间通讯至关重要。在肾脏中,已经鉴定出几种连接蛋白(Cx)家族成员。迄今为止,Cx37、Cx40 和 Cx43 的血管表达和血液动力学影响已经得到证实。此外,Cx30、Cx30.3 和 Cx43 已被鉴定为管状上皮细胞间隙连接和/或半通道的一部分。然而,其他 Cx 家族成员在肾脏上皮结构中的定位和作用仍未确定。我们旨在定位肾脏中的 Cx37,以获取有关其上皮表达和潜在功能的信息。在啮齿动物肾脏中的免疫组织化学显示,血管和肾单位中存在特征性点状模式。在升支粗段和远曲小管中发现强烈的基底外侧表达。在近端小管和收集管中也发现了较弱的表达,同样在基底外侧。分离的肾单位片段的原位杂交和实时 PCR 证实了这种在 mRNA 水平上的分布。超微结构显示,Cx37 免疫染色仅限于基底外侧细胞的相互交错和内陷。作为一种功能方法,用低或高盐饮食喂养大鼠。与对照组和高盐饮食相比,用低盐饮食治疗的大鼠显示 Cx37 mRNA 和蛋白水平显著增加。这可能表明对钠重吸收变化的肾小管适应性反应。总之,肾脏上皮细胞在其基底外侧膜表达 Cx37。在这里,Cx37 间隙连接的形成可能参与细胞间通讯和向量上皮转运的调节。

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