McKay B S, Annis D S, Honda S, Christie D, Kunicki T J
Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California 92017, USA.
J Biol Chem. 1996 Nov 29;271(48):30544-7. doi: 10.1074/jbc.271.48.30544.
Integrin subunit compatibility within and between species plays a major role in heterodimer assembly and ligand specificity. As an example, human alphaIIb pairs only with human beta3 and does not assemble a heterodimer with beta3 from other species. We use interspecies subunit chimeras to identify molecular requirements for subunit compatibility and show that species-restricted heterodimer assembly depends on a unique hexapeptide VGSDNH in an extended loop of the hypothetical human beta3 MIDAS domain. This allows us to express alphaIIb(1-233) and beta3(111-318) as a soluble, mini-integrin that retains RGD-dependent ligand recognition. Thus, in the case of one integrin, alphaIIbbeta3, the molecular requirements for integrin subunit compatibility and ligand recognition are intimately related.
整合素亚基在种内和种间的兼容性在异二聚体组装和配体特异性方面起着主要作用。例如,人类αIIb仅与人类β3配对,而不与其他物种的β3组装异二聚体。我们使用种间亚基嵌合体来确定亚基兼容性的分子要求,并表明物种限制的异二聚体组装取决于假设的人类β3 MIDAS结构域延伸环中的独特六肽VGSDNH。这使我们能够将αIIb(1 - 233)和β3(111 - 318)表达为一种可溶性的微型整合素,该微型整合素保留了依赖RGD的配体识别能力。因此,就一种整合素αIIbbeta3而言,整合素亚基兼容性和配体识别的分子要求密切相关。