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果蝇中的气管发育与冯·希佩尔-林道肿瘤抑制同源物

Tracheal development and the von Hippel-Lindau tumor suppressor homolog in Drosophila.

作者信息

Adryan B, Decker H J, Papas T S, Hsu T

机构信息

Center for Molecular and Structural Biology and Hollings Cancer Center, Medical University of South Carolina, Charleston, South Carolina, SC 29425, USA.

出版信息

Oncogene. 2000 Jun 1;19(24):2803-11. doi: 10.1038/sj.onc.1203611.

Abstract

von Hippel-Lindau disease is a hereditary cancer syndrome. Mutations in the VHL tumor suppressor gene predispose individuals to highly vascularized tumors. However, VHL-deficient mice die in utero due to a lack of vascularization in the placenta. To resolve the contradiction, we cloned the Drosophila VHL homologue (d-VHL) and studied its function. It showed an overall 50% similarity to the human counterpart and 76% similarity in the crucial functional domain: the elongin C binding site. The putative d-VHL protein can bind Drosophila elongin C in vitro. During embryogenesis, d-VHL is expressed in the developing tracheal regions where tube outgrowth no longer occurs. Reduced d-VHL activity (using RNA interference methodology) caused breakage of the main vasculature accompanied by excessive looping of smaller branches, whereas over-expression caused a general lack of vasculature. Importantly, human VHL can induce the same gain-of-function phenotypes. VHL is likely involved in halting cell migration at the end of vascular tube outgrowth. Loss of VHL activity can therefore lead to disruption of major vasculature (as in the mouse embryo), which requires precise cell movement and tube fusion, or ectopic outgrowth from existing secondary vascular branches (as in the adult tumors). Oncogene (2000) 19, 2803 - 2811

摘要

冯·希佩尔-林道病是一种遗传性癌症综合征。VHL肿瘤抑制基因的突变使个体易患高度血管化的肿瘤。然而,VHL基因缺陷的小鼠在子宫内死亡,原因是胎盘缺乏血管化。为了解决这一矛盾,我们克隆了果蝇VHL同源物(d-VHL)并研究了其功能。它与人类对应物总体上有50%的相似性,在关键功能域——延伸蛋白C结合位点有76%的相似性。推测的d-VHL蛋白在体外可与果蝇延伸蛋白C结合。在胚胎发育过程中,d-VHL在不再发生气管生长的发育中的气管区域表达。降低d-VHL活性(使用RNA干扰方法)会导致主要脉管系统断裂,并伴有较小分支的过度盘绕,而过度表达则会导致普遍缺乏脉管系统。重要的是,人类VHL可诱导相同的功能获得性表型。VHL可能参与在血管生长结束时阻止细胞迁移。因此,VHL活性的丧失可导致主要脉管系统的破坏(如在小鼠胚胎中),这需要精确的细胞运动和管道融合,或从现有的二级血管分支异位生长(如在成人肿瘤中)。《癌基因》(2000年)第19卷,第2803 - 2811页

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