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表皮生长因子样蛋白7通过限制内皮细胞的空间分布来调节其集体迁移。

EGFL7 regulates the collective migration of endothelial cells by restricting their spatial distribution.

作者信息

Schmidt Maike, Paes Kim, De Mazière Ann, Smyczek Tanya, Yang Stacey, Gray Alane, French Dorothy, Kasman Ian, Klumperman Judith, Rice Dennis S, Ye Weilan

机构信息

Tumor Biology and Angiogenesis Department, Genentech Inc., 1 DNA Way, South San Francisco, CA 94080, USA.

出版信息

Development. 2007 Aug;134(16):2913-23. doi: 10.1242/dev.002576. Epub 2007 Jul 11.

Abstract

During sprouting angiogenesis, groups of endothelial cells (ECs) migrate together in units called sprouts. In this study, we demonstrate that the vascular-specific secreted factor EGFL7 regulates the proper spatial organization of ECs within each sprout and influences their collective movement. In the homozygous Egfl7-knockout mice, vascular development is delayed in many organs despite normal EC proliferation, and 50% of the knockout embryos die in utero. ECs in the mutant vasculatures form abnormal aggregates and the vascular basement membrane marker collagen IV is mislocalized, suggesting that ECs fail to recognize the proper spatial position of their neighbors. Although the migratory ability of individual ECs in isolation is not affected by the loss of EGFL7, the aberrant spatial organization of ECs in the mutant tissues decreases their collective movement. Using in vitro and in vivo analyses, we showed that EGFL7 is a component of the interstitial extracellular matrix deposited on the basal sides of sprouts, a location suitable for conveying positional information to neighboring ECs. Taken together, we propose that EGFL7 defines the optimal path of EC movement by assuring the correct positioning of each EC in a nascent sprout.

摘要

在发芽血管生成过程中,内皮细胞(ECs)群体以称为芽的单位一起迁移。在本研究中,我们证明血管特异性分泌因子EGFL7调节每个芽内ECs的正确空间组织,并影响它们的集体运动。在纯合Egfl7基因敲除小鼠中,尽管ECs增殖正常,但许多器官的血管发育延迟,并且50%的基因敲除胚胎在子宫内死亡。突变血管中的ECs形成异常聚集体,并且血管基底膜标记物胶原蛋白IV定位错误,这表明ECs无法识别其邻居的正确空间位置。虽然单个ECs单独的迁移能力不受EGFL7缺失的影响,但突变组织中ECs异常的空间组织降低了它们的集体运动。通过体外和体内分析,我们表明EGFL7是沉积在芽基部的间质细胞外基质的一个组成部分,该位置适合于向相邻ECs传递位置信息。综上所述,我们提出EGFL7通过确保每个EC在新生芽中的正确定位来定义EC运动的最佳路径。

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