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Bidirectional transmembrane signaling by cytoplasmic domain separation in integrins

机译:整合素胞质域分离的双向跨膜信号传递

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Although critical for development, immunity, wound healing, and metastasis, integrins represent one of the few classes of plasma membrane receptors for which the basic signaling mechanism remains a mystery. We investigated cytoplasmic conformational changes in the integrin LFA-1 (alpha(L)beta(2)) in living cells by measuring fluorescence resonance energy transfer between cyan fluorescent protein - fused and yellow fluorescent protein - fused alpha(L) and beta(2) cytoplasmic domains. In the resting state these domains were close to each other, but underwent significant spatial separation upon either intracellular activation of integrin adhesiveness (inside-out signaling) or ligand binding (outside-in signaling). Thus, bidirectional integrin signaling is accomplished by coupling extracellular conformational changes to an unclasping and separation of the alpha and beta cytoplasmic domains, a distinctive mechanism for transmitting information across the plasma membrane. [References: 31]
机译:尽管对于发育,免疫力,伤口愈合和转移至关重要,但整联蛋白代表了少数几类质膜受体之一,其基本信号传导机制仍是一个谜。我们通过测量青色荧光蛋白-融合和黄色荧光蛋白-融合的alpha(L)和beta(2)之间的荧光共振能量转移,研究了活细胞中整联蛋白LFA-1(alpha(L)beta(2))的胞质构象变化)胞质域。在静止状态下,这些结构域彼此靠近,但是在细胞内激活整联蛋白粘附性(由内而外的信号传导)或配体结合(由外而内的信号传导)时经历了明显的空间分离。因此,双向整合素信号传导是通过将胞外构象变化与α和β胞质结构域的脱壳和分离偶联而完成的,α和β胞质结构域是一种跨质膜传输信息的独特机制。 [参考:31]

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