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首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Chloride intracellular channel protein-4 functions in angiogenesis by supporting acidification of vacuoles along the intracellular tubulogenic pathway.
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Chloride intracellular channel protein-4 functions in angiogenesis by supporting acidification of vacuoles along the intracellular tubulogenic pathway.

机译:氯化物细胞内通道蛋白4通过支持沿细胞内微管形成途径的液泡酸化而在血管生成中起作用。

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摘要

Endothelial cells form capillary tubes through the process of intracellular tubulogenesis. Chloride intracellular channel (CLIC) family proteins have been previously implicated in intracellular tubulogenesis, but their specific role has not been defined. In this study, we show that disruption of the Clic4 gene in mice results in defective angiogenesis in vivo as reflected in a Matrigel plug angiogenesis assay. An angiogenesis defect is also apparent in the retina, both in the decreased spontaneous development of retinal vasculature of unstressed mice and in the dramatically decreased angiogenic response of retinal vessels to an oxygen toxicity challenge. We found that endothelial cells derived from Clic4(-/-) mice demonstrated impaired tubulogenesis in three-dimensional fibrin gels compared with cells derived from wild-type mice. Furthermore, we found that tubulogenesis of wild-type cells in culture was inhibited by both an inhibitor of CLICs and an inhibitor of the vacuolar proton ATPase. Finally, we showed that vacuoles along the endothelial tubulogenesis pathway are acidic in wild-type cells, and that vacuolar acidification is impaired in Clic4(-/-) cells while lysosomal acidification is intact. We conclude that CLIC4 plays a critical role in angiogenesis by supporting acidification of vacuoles along the cell-hollowing tubulogenic pathway.
机译:内皮细胞通过细胞内微管发生过程形成毛细管。氯化物细胞内通道(CLIC)家族蛋白先前已与细胞内微管发生有关,但尚未明确其具体作用。在这项研究中,我们显示破坏小鼠Clic4基因会导致体内血管生成缺陷,这在Matrigel栓塞血管生成测定法中得到了体现。在未受压的小鼠的视网膜脉管系统的自发性发育降低以及视网膜血管对氧中毒挑战的显着降低的血管新生中,血管新生缺陷在视网膜中也很明显。我们发现,与源自野生型小鼠的细胞相比,源自Clic4(-/-)小鼠的内皮细胞在三维纤维蛋白凝胶中显示出受损的肾小管生成。此外,我们发现,CLICs抑制剂和液泡质子ATPase抑制剂均抑制了培养物中野生型细胞的肾小管生成。最后,我们显示了沿内皮小管生成途径的液泡在野生型细胞中呈酸性,而在Clic4(-/-)细胞中液泡酸化受损,而溶酶体酸化则完整。我们得出结论,CLIC4通过支持沿空洞微管生成途径的液泡酸化在血管生成中起关键作用。

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