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在果蝇气管系统中,Na⁺/K⁺ ATP酶对于分隔连接功能和上皮管大小控制是必需的。

The Na+/K+ ATPase is required for septate junction function and epithelial tube-size control in the Drosophila tracheal system.

作者信息

Paul Sarah M, Ternet Melissa, Salvaterra Paul M, Beitel Greg J

机构信息

Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, IL 60208, USA.

出版信息

Development. 2003 Oct;130(20):4963-74. doi: 10.1242/dev.00691. Epub 2003 Aug 20.

DOI:10.1242/dev.00691
PMID:12930776
Abstract

Although the correct architecture of epithelial tubes is crucial for the function of organs such as the lung, kidney and vascular system, little is known about the molecular mechanisms that control tube size. We show that mutations in the ATPalpha alpha and nrv2 beta subunits of the Na+/K+ ATPase cause Drosophila tracheal tubes to have increased lengths and expanded diameters. ATPalpha and nrv2 mutations also disrupt stable formation of septate junctions, structures with some functional and molecular similarities to vertebrate tight junctions. The Nrv2 beta subunit isoforms have unique tube size and junctional functions because Nrv2, but not other Drosophila Na+/K+ ATPase beta subunits, can rescue nrv2 mutant phenotypes. Mutations in known septate junctions genes cause the same tracheal tube-size defects as ATPalpha and nrv2 mutations, indicating that septate junctions have a previously unidentified role in epithelial tube-size control. Double mutant analyses suggest that tube-size control by septate junctions is mediated by at least two discernable pathways, although the paracellular diffusion barrier function does not appear to involved because tube-size control and diffusion barrier function are genetically separable. Together, our results demonstrate that specific isoforms of the Na+/K+ ATPase play a crucial role in septate junction function and that septate junctions have multiple distinct functions that regulate paracellular transport and epithelial tube size.

摘要

尽管上皮管的正确结构对于肺、肾和血管系统等器官的功能至关重要,但对于控制管腔大小的分子机制却知之甚少。我们发现,Na+/K+ ATP酶的ATPαα和nrv2β亚基发生突变会导致果蝇气管管腔长度增加、直径扩大。ATPα和nrv2突变还会破坏分隔连接的稳定形成,分隔连接在功能和分子方面与脊椎动物的紧密连接有一些相似之处。Nrv2β亚基异构体具有独特的管腔大小和连接功能,因为只有Nrv2,而不是其他果蝇Na+/K+ ATP酶β亚基,能够挽救nrv2突变体的表型。已知的分隔连接基因发生突变会导致与ATPα和nrv2突变相同的气管管腔大小缺陷,这表明分隔连接在上皮管腔大小控制中具有以前未被认识的作用。双突变分析表明,分隔连接对管腔大小的控制至少由两条可区分的途径介导,尽管细胞旁扩散屏障功能似乎未参与其中,因为管腔大小控制和扩散屏障功能在遗传上是可分离的。总之,我们的结果表明,Na+/K+ ATP酶的特定异构体在分隔连接功能中起关键作用,并且分隔连接具有多种不同的功能,可调节细胞旁运输和上皮管腔大小。

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