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肾脏和下尿路中的Eph/ephrin信号传导

Eph/ephrin signaling in the kidney and lower urinary tract.

作者信息

Weiss Anna-Carina, Kispert Andreas

机构信息

Institut für Molekularbiologie, OE5250, Medizinische Hochschule Hannover, Carl-Neuberg-Str. 1, 30625, Hannover, Germany.

出版信息

Pediatr Nephrol. 2016 Mar;31(3):359-71. doi: 10.1007/s00467-015-3112-8. Epub 2015 Apr 23.

Abstract

Development and homeostasis of the highly specialized cell types and tissues that constitute the organs of the urinary system, the kidneys and ureters, the bladder, and the urethra, require the tightly regulated exchange of signals in and between these tissues. Eph/ephrin signaling is a bidirectional signaling pathway that has been functionally implicated in many developmental and homeostatic contexts, most prominently in the vascular and neural system. Expression and knockout analyses have now provided evidence that Eph/ephrin signaling is of crucial relevance for cell and tissue interactions in the urinary system as well. A clear requirement has emerged in the formation of the vesicoureteric junction, in urorectal septation and glomerulogenesis during embryonic development, in maintenance of medullary tubular cells and podocytes in homeostasis, and in podocyte and glomerular injury responses. Deregulation of Eph/ephrin signaling may also contribute to the formation and progression of tumors in the urinary system, most prominently bladder and renal cell carcinoma. While in the embryonic contexts Eph/ephrin signaling regulates adhesion of epithelial cells, in the adult setting, cell-shape changes and cell survival seem to be the primary cellular processes mediated by this signaling module. With progression of the genetic analyses of mice conditionally mutant for compound alleles of Eph receptor and ephrin ligand genes, additional essential functions are likely to arise in the urinary system.

摘要

构成泌尿系统器官(肾脏、输尿管、膀胱和尿道)的高度特化细胞类型和组织的发育与内环境稳定,需要这些组织内部以及它们之间信号的严格调控交换。Eph/ephrin信号传导是一种双向信号通路,在许多发育和内环境稳定过程中都发挥了功能作用,最显著的是在血管和神经系统中。表达和基因敲除分析现已提供证据表明,Eph/ephrin信号传导对于泌尿系统中的细胞和组织相互作用也至关重要。在胚胎发育过程中膀胱输尿管连接的形成、尿直肠分隔和肾小球发生、维持髓质肾小管细胞和足细胞的内环境稳定以及足细胞和肾小球损伤反应中,都出现了明确的需求。Eph/ephrin信号传导失调也可能导致泌尿系统肿瘤的形成和进展,最显著的是膀胱癌和肾细胞癌。在胚胎环境中,Eph/ephrin信号传导调节上皮细胞的黏附,而在成年环境中,细胞形态变化和细胞存活似乎是由该信号模块介导的主要细胞过程。随着对Eph受体和ephrin配体基因复合等位基因条件性突变小鼠的遗传分析进展,泌尿系统中可能会出现更多重要功能。

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