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R-Ras是血管再生的全局调节因子,可抑制内膜增生和肿瘤血管生成。

R-Ras is a global regulator of vascular regeneration that suppresses intimal hyperplasia and tumor angiogenesis.

作者信息

Komatsu Masanobu, Ruoslahti Erkki

机构信息

Burnham Institute for Medical Research, Cancer Research Center, 10901 North Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Nat Med. 2005 Dec;11(12):1346-50. doi: 10.1038/nm1324. Epub 2005 Nov 13.

Abstract

R-Ras is a small GTPase of the Ras family that regulates cell survival and integrin activity. Despite a number of in vitro studies, the in vivo function of R-Ras remains unclear. Here, we used R-Ras-null mice to explore the in vivo function of this small GTPase. Our results show a role for R-Ras as a regulator of vascular differentiation that primarily affects the remodeling of blood vessels. We show that R-Ras-null mice, although otherwise phenotypically normal, mount excessive vascular responses. We found that in vivo R-Ras expression is largely confined to fully differentiated smooth muscle cells, including those of blood vessels, and to endothelial cells. Challenging the R-Ras-null mice with arterial injury or tumor implantation showed exaggerated neointimal thickening in response to the injury and increased angiogenesis in the tumors. In wild-type mice, R-Ras expression was greatly reduced in hyperplastic neointimal smooth muscle cells and in angiogenic endothelial cells. Forced expression of activated R-Ras suppressed mitogenic and invasive activities of growth factor-stimulated vascular cells. These results establish an unexpected role for R-Ras in blood vessel homeostasis and suggest that R-Ras signaling may offer a target for therapeutic intervention in vascular diseases.

摘要

R-Ras是Ras家族的一种小GTP酶,可调节细胞存活和整合素活性。尽管有许多体外研究,但R-Ras的体内功能仍不清楚。在这里,我们使用R-Ras基因敲除小鼠来探索这种小GTP酶的体内功能。我们的结果表明,R-Ras作为血管分化的调节因子,主要影响血管重塑。我们发现,R-Ras基因敲除小鼠虽然在其他方面表型正常,但会产生过度的血管反应。我们发现,R-Ras在体内的表达主要局限于完全分化的平滑肌细胞,包括血管平滑肌细胞和内皮细胞。用动脉损伤或肿瘤植入对R-Ras基因敲除小鼠进行刺激,结果显示,对损伤的反应中内膜增生过度,肿瘤中的血管生成增加。在野生型小鼠中,增生性内膜平滑肌细胞和血管生成内皮细胞中R-Ras的表达大大降低。激活的R-Ras的强制表达抑制了生长因子刺激的血管细胞的促有丝分裂和侵袭活性。这些结果确立了R-Ras在血管稳态中的意外作用,并表明R-Ras信号传导可能为血管疾病的治疗干预提供一个靶点。

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