Linton James M, Martin Gail R, Reichardt Louis F
Department of Physiology, 1550 Fourth Street, University of California, San Francisco, San Francisco, CA 94143, USA.
Development. 2007 Jul;134(13):2501-9. doi: 10.1242/dev.005033. Epub 2007 May 30.
Development of the metanephric kidney crucially depends on proper interactions between cells and the surrounding extracellular matrix. For example, we showed previously that in the absence of alpha8beta1 integrin, invasion by the ureteric bud into the metanephric mesenchyme is inhibited, resulting in renal agenesis. Here we present genetic evidence that the extracellular matrix protein nephronectin is an essential ligand that engages alpha8beta1 integrin during early kidney development. We show that embryos lacking a functional nephronectin gene frequently display kidney agenesis or hypoplasia, which can be traced to a delay in the invasion of the metanephric mesenchyme by the ureteric bud at an early stage of kidney development. Significantly, we detected no defects in extracellular matrix organization in the nascent kidneys of the nephronectin mutants. Instead, we found that Gdnf expression was dramatically reduced in both nephronectin- and alpha8 integrin-null mutants specifically in the metanephric mesenchyme at the time of ureteric bud invasion. We show that this reduction is sufficient to explain the agenesis and hypoplasia observed in both mutants. Interestingly, the reduction in Gdnf expression is transient, and its resumption presumably enables the nephronectin-deficient ureteric buds to invade the metanephric mesenchyme and begin branching. Our results thus place nephronectin and alpha8beta1 integrin in a pathway that regulates Gdnf expression and is essential for kidney development.
后肾的发育关键取决于细胞与周围细胞外基质之间的适当相互作用。例如,我们之前表明,在缺乏α8β1整合素的情况下,输尿管芽向肾间充质的侵入受到抑制,导致肾缺如。在这里,我们提供遗传学证据表明,细胞外基质蛋白肾连蛋白是在肾脏早期发育过程中与α8β1整合素结合的必需配体。我们表明,缺乏功能性肾连蛋白基因的胚胎经常表现出肾缺如或发育不全,这可以追溯到在肾脏发育早期输尿管芽对肾间充质侵入的延迟。值得注意的是,我们在肾连蛋白突变体的新生肾脏中未检测到细胞外基质组织的缺陷。相反,我们发现,在输尿管芽侵入时,肾连蛋白和α8整合素缺失的突变体中,Gdnf表达在肾间充质中均显著降低。我们表明,这种降低足以解释在两个突变体中观察到的肾缺如和发育不全。有趣的是,Gdnf表达的降低是短暂的,其恢复可能使缺乏肾连蛋白的输尿管芽能够侵入肾间充质并开始分支。因此,我们的结果将肾连蛋白和α8β1整合素置于一条调节Gdnf表达且对肾脏发育至关重要的途径中。