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胚胎肾发育的分子基础。

The molecular basis of embryonic kidney development.

作者信息

Lechner M S, Dressler G R

机构信息

Howard Hughes Medical Institute and Department of Pathology, University of Michigan, Ann Arbor 48109-0650, USA.

出版信息

Mech Dev. 1997 Mar;62(2):105-20. doi: 10.1016/s0925-4773(97)00667-9.

Abstract

The development of the mature mammalian kidney begins with the invasion of metanephric mesenchyme by ureteric bud. Mesenchymal cells near the bud become induced and convert to an epithelium which goes on to generate the functional filtering unit of the kidney, the nephron. The collecting duct system is elaborated by the branching ureter, the growth of which is dependent upon signals from the metanephric mesenchyme. The process of reciprocal induction between ureter and mesenchyme is repeated many times over during development and is the key step in generating the overall architecture of the kidney. Genetic studies in mice have allowed researchers to begin to unravel the molecular signals that govern these early events. These experiments have revealed that a number of essential gene products are required for distinct steps in kidney organogenesis. Here we review and summarize the developmental role played by some of these molecules, especially certain transcription factors and growth factors and their receptors. Although the factors involved are far from completely known a rough framework of a molecular cascade which governs embryonic kidney development is beginning to emerge.

摘要

成熟哺乳动物肾脏的发育始于输尿管芽对后肾间充质的侵入。芽附近的间充质细胞受到诱导并转化为上皮细胞,进而生成肾脏的功能滤过单位——肾单位。集合管系统由分支的输尿管发育而成,其生长依赖于后肾间充质发出的信号。输尿管和间充质之间的相互诱导过程在发育过程中会重复多次,是形成肾脏整体结构的关键步骤。对小鼠的遗传学研究使研究人员能够开始揭示控制这些早期事件的分子信号。这些实验表明,肾脏器官发生的不同步骤需要多种重要的基因产物。在这里,我们回顾并总结了其中一些分子,特别是某些转录因子、生长因子及其受体所起的发育作用。尽管所涉及的因素远未完全明确,但一个控制胚胎肾脏发育的分子级联粗略框架已开始显现。

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