Tsuruta Daisuke, Hopkinson Susan B, Lane Kimberly D, Werner Michael E, Cryns Vincent L, Jones Jonathan C R
Departments of Cell and Molecular Biology and Medicine, Feinberg School of Medicine at Northwestern University, Chicago, Illinois 60611, USA.
J Biol Chem. 2003 Oct 3;278(40):38707-14. doi: 10.1074/jbc.M301637200. Epub 2003 Jul 16.
Within each hemidesmosome, alpha6beta4 integrin plays a crucial role in hemidesmosome assembly by binding to laminin-5 in the basement membrane zone of epithelial tissue. Recent analyses have implicated "specificity-determining loops" (SDLs) in the I-like domain of beta integrin in regulating ligand binding. Here, we investigated the function of an SDL-like motif within the extracellular I-like domain of beta4 integrin. We generated point mutations within the SDL of beta4 integrin tagged with green fluorescent protein (GFP-beta4K150A and GFP-beta4Q155L). We also generated a mutation within the I-like domain of the beta4 integrin, lying outside the SDL region (GFP-beta4V284E). We transfected constructs encoding the mutated beta4 integrins and a GFP-conjugated wild type beta4 integrin (GFP-beta4WT) into 804G cells, which assemble hemidesmosomes, and human endothelial cells, which express little endogenous beta4 integrin. In transfected 804G cells, GFP-beta4WT and GFP-beta4V284E colocalize with hemidesmosome proteins, whereas hemidesmosomal components in cells expressing GFP-beta4K150A and GFP-beta4Q155L are aberrantly localized. In endothelial cells, GFP-beta4WT and mutant proteins are co-expressed at the cell surface with alpha6 integrin. When transfected endothelial cells are plated onto laminin-5 matrix, GFP-beta4WT and GFP-beta4V284E localize with laminin-5, whereas GFP-beta4K150A and GFP-beta4Q155L do not. GFP-beta4WT and GFP-beta4V284E expressed in endothelial cells associate with the adaptor protein Shc when the cells are stimulated with laminin-5. However, GFP-beta4K150A and GFP-beta4Q155L fail to associate with Shc even when laminin-5 is present, thus impacting downstream signaling. These results provide evidence that the SDL segment of the beta4 integrin subunit is required for ligand binding and is involved in outside-in signaling.
在每个半桥粒中,α6β4整合素通过与上皮组织基底膜区的层粘连蛋白-5结合,在半桥粒组装中发挥关键作用。最近的分析表明,β整合素I样结构域中的“特异性决定环”(SDLs)参与调节配体结合。在此,我们研究了β4整合素细胞外I样结构域内一个类似SDL基序的功能。我们在标记有绿色荧光蛋白的β4整合素的SDL内产生了点突变(GFP-β4K150A和GFP-β4Q155L)。我们还在β4整合素的I样结构域内、位于SDL区域之外产生了一个突变(GFP-β4V284E)。我们将编码突变型β4整合素和绿色荧光蛋白偶联的野生型β4整合素(GFP-β4WT)的构建体转染到能组装半桥粒的804G细胞以及几乎不表达内源性β4整合素的人内皮细胞中。在转染的804G细胞中,GFP-β4WT和GFP-β4V284E与半桥粒蛋白共定位,而在表达GFP-β4K150A和GFP-β4Q155L的细胞中,半桥粒成分的定位异常。在内皮细胞中,GFP-β4WT和突变蛋白与α6整合素在细胞表面共表达。当将转染的内皮细胞接种到层粘连蛋白-5基质上时,GFP-β4WT和GFP-β4V284E与层粘连蛋白-5共定位,而GFP-β4K150A和GFP-β4Q155L则不然。当用层粘连蛋白-5刺激时,在内皮细胞中表达的GFP-β4WT和GFP-β4V284E与衔接蛋白Shc结合。然而,即使存在层粘连蛋白-5,GFP-β4K150A和GFP-β4Q155L也无法与Shc结合,从而影响下游信号传导。这些结果提供了证据,表明β4整合素亚基的SDL片段是配体结合所必需的,并参与外向内信号传导。