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血纤蛋白原RGD基序作为分子开关的新功能作用,该开关在细胞铺展过程中选择性触发整合素αIIbβ3依赖性RhoA激活。

A new functional role of the fibrinogen RGD motif as the molecular switch that selectively triggers integrin alphaIIbbeta3-dependent RhoA activation during cell spreading.

作者信息

Salsmann Alexandre, Schaffner-Reckinger Elisabeth, Kabile Fabrice, Plançon Sébastien, Kieffer Nelly

机构信息

Laboratoire de Biologie et Physiologie Intégrée (CNRS/GDRE-ITI), Université du Luxembourg, 162A Avenue de la Faïencerie, L-1511 Luxembourg, Grand-Duchy of Luxembourg.

出版信息

J Biol Chem. 2005 Sep 30;280(39):33610-9. doi: 10.1074/jbc.M500146200. Epub 2005 Jun 13.

Abstract

A number of RGD-type integrins rely on a synergistic site in addition to the canonical RGD site for ligand binding and signaling, although it is still unclear whether these two recognition sites function independently, synergistically, or competitively. Experimental evidence has suggested that fibrinogen binding to the RGD-type integrin alphaIIbbeta3 occurs exclusively through the synergistic gamma(400-411) sequence, thus questioning the functional role of the RGD recognition site. Here we have investigated the respective role of the fibrinogen gamma(400-411) sequence and the RGD motif in the molecular events leading to ligand-induced alphaIIbbeta3-dependent Chinese hamster ovary (CHO) cell or platelet spreading, by using intact fibrinogen and well characterized plasmin-generated fibrinogen fragments containing either the RGD motif (fragment C) or the gamma(400-411) sequence (fragment D), and CHO cells expressing resting wild type (alphaIIbbeta3wt), constitutively active (alphaIIbbeta3T562N), or non-functional (alphaIIbbeta3D119Y) receptors. Our data provide evidence that the gamma(400-411) site by itself is able to initiate alphaIIbbeta3 clustering and recruitment of intracellular proteins to early focal complexes, mediating cell attachment, FAK phosphorylation, and Rac1 activation, while the RGD motif subsequently acts as a molecular switch on the beta3 subunit to trigger cell spreading. More importantly, we show that the premier functional role of the RGD site is not to reinforce cell attachment but, rather, to imprint a conformational change on the beta3 subunit leading to maximal RhoA activation and actin cytoskeleton organization in CHO cells as well as in platelets. Finally, alphaIIbbeta3-dependent RhoA stimulation and cell spreading, but not cell attachment, are Src-dependent and phosphoinositide 3-kinase-independent and are inhibited by the Src antagonist PP2.

摘要

许多RGD型整合素除了经典的RGD位点外,还依赖一个协同位点来进行配体结合和信号传导,尽管目前尚不清楚这两个识别位点是独立发挥作用、协同作用还是竞争性作用。实验证据表明,纤维蛋白原与RGD型整合素αIIbβ3的结合仅通过协同的γ(400 - 411)序列发生,因此对RGD识别位点的功能作用提出了质疑。在此,我们通过使用完整的纤维蛋白原以及特征明确的纤溶酶生成的纤维蛋白原片段(包含RGD基序的片段C或γ(400 - 411)序列的片段D),以及表达静息野生型(αIIbβ3wt)、组成型激活型(αIIbβ3T562N)或无功能型(αIIbβ3D119Y)受体的中国仓鼠卵巢(CHO)细胞,研究了纤维蛋白原γ(400 - 411)序列和RGD基序在导致配体诱导的αIIbβ3依赖性CHO细胞或血小板铺展的分子事件中的各自作用。我们的数据表明,γ(400 - 411)位点自身能够启动αIIbβ3聚集并将细胞内蛋白质募集到早期粘着斑复合体,介导细胞附着、粘着斑激酶(FAK)磷酸化和Rac1激活,而RGD基序随后作为β3亚基上的分子开关触发细胞铺展。更重要的是,我们表明RGD位点的主要功能作用不是加强细胞附着,而是在β3亚基上印记一种构象变化,导致CHO细胞和血小板中最大程度的RhoA激活和肌动蛋白细胞骨架组织。最后,αIIbβ3依赖性的RhoA刺激和细胞铺展,但不是细胞附着,是Src依赖性的且不依赖磷脂酰肌醇3激酶,并被Src拮抗剂PP2抑制。

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