Kieffer N, Melchior C, Guinet J M, Michels S, Gouon V, Bron N
Laboratoire Franco-Luxembourgeois de Recherche Biomédicale, Center Universitaire Luxembourg, Grand-Duchy.
Cell Adhes Commun. 1996 Jul;4(1):25-39. doi: 10.3109/15419069609010761.
A naturally occurring point mutation (Ser752Pro substitution) in the beta subunit cytoplasmic domain of the platelet fibrinogen receptor GPIIb-IIIa (integrin alpha IIb beta 3), causing Glanzmann's thrombasthenia, has been shown to abrogate bidirectional transmembrane signaling of GPIIb-IIIa when expressed in heterologous cells (Chen YP, 1994, Blood 84, 1857-1865). As the vitronectin receptor alpha v beta 3 constitutively mediates cell attachment to RGD containing extracellular matrix proteins, the purpose of this study was to explore the regulatory role of Ser752 in alpha v beta 3 vitronectin receptor function, by cotransfecting recombinant human alpha v cDNA together with human beta 3 mutant cDNA into Chinese hamster ovary (CHO) cells. CHO cells expressing wild type human alpha v beta 3 acquired the ability to attach and spread on fibrinogen and von Willebrand factor, in contrast to non transfected CHO cells that only bound to vitronectin and fibronectin. Overexpression of a truncated recombinant beta 3 subunit (beta 3 delta 744) generated alpha v (hamster) beta 3 (human) chimers that mediated attachment but lost the ability to promote cell spreading on vitronectin, von Willebrand factor and fibrinogen, and to concentrate in focal contact sites, demonstrating a negative effect of beta 3 delta 744 on alpha v beta 3 dependent postreceptor occupancy events. Transfection of beta 3Ser752Pro reproduced the same negative effect as beta 3 delta 744, whereas beta 3Ser752Ala restored normal receptor function by allowing pronounced attachment and spreading on fibrinogen and von Willebrand factor. Our results provide evidence that (1) the C-terminal cytoplasmic domain of beta 3 (amino acids 744-762) is essential for alpha v beta 3 integrin postreceptor occupancy events; (2) within this domain, the Ser752Pro mutation affects alpha v beta 3 postreceptor occupancy events by preventing cell spreading and focal contact localization; (3) the defective receptor function of the vitronectin receptor alpha v beta 3 is due to the presence of Pro752, rather than the absence of Ser752, as a Ser to Ala substitution at position 752 restores normal beta 3 integrin cell spreading and adhesive plaque formation.
血小板纤维蛋白原受体GPIIb-IIIa(整合素αIIbβ3)β亚基胞质结构域中的一种自然发生的点突变(Ser752Pro替代)导致了Glanzmann血小板无力症,当在异源细胞中表达时,该突变已被证明可消除GPIIb-IIIa的双向跨膜信号传导(Chen YP,1994,《血液》84,1857 - 1865)。由于玻连蛋白受体αvβ3组成性地介导细胞与含RGD的细胞外基质蛋白的附着,本研究的目的是通过将重组人αv cDNA与人类β3突变体cDNA共转染到中国仓鼠卵巢(CHO)细胞中,探索Ser752在αvβ3玻连蛋白受体功能中的调节作用。与仅结合玻连蛋白和纤连蛋白的未转染CHO细胞相比,表达野生型人αvβ3的CHO细胞获得了在纤维蛋白原和血管性血友病因子上附着和铺展的能力。截短的重组β3亚基(β3δ744)的过表达产生了αv(仓鼠)β3(人类)嵌合体,其介导附着,但失去了促进细胞在玻连蛋白、血管性血友病因子和纤维蛋白原上铺展以及在粘着斑部位聚集的能力,这表明β3δ744对αvβ3依赖的受体占据后事件有负面影响。β3Ser752Pro的转染产生了与β3δ744相同的负面影响,而β3Ser752Ala通过允许在纤维蛋白原和血管性血友病因子上显著附着和铺展恢复了正常的受体功能。我们的结果提供了证据表明:(1)β3的C末端胞质结构域(氨基酸744 - 762)对于αvβ3整合素受体占据后事件至关重要;(2)在该结构域内,Ser752Pro突变通过阻止细胞铺展和粘着斑定位影响αvβ3受体占据后事件;(3)玻连蛋白受体αvβ3的受体功能缺陷是由于存在Pro752,而不是由于缺少Ser752,因为在752位的丝氨酸到丙氨酸的替代恢复了正常的β3整合素细胞铺展和粘着斑形成。