The three-dimensional structure of integrins and their ligands, and conformational regulation of cell adhesion.

Timothy A Springer, Jia-Huai Wang
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引用次数: 166

Abstract

Integrins are a structurally elaborate family of adhesion molecules that transmit signals bidirectionally across the plasma membrane by undergoing large-scale structural rearrangements. By regulating cell-cell and cell-matrix contacts, integrins participate in a wide-range of biological interactions including development, tissue repair, angiogenesis, inflammation and hemostasis. From a therapeutic standpoint, integrins are probably the most important class of cell adhesion receptors. Structural investigations on integrin-ligand interactions reveal remarkable features in molecular detail. These details include the atomic basis for divalent cation-dependent ligand binding and how conformational signals are propagated long distances from one domain to another between the cytoplasm and the extracellular ligand binding site that regulate affinity for ligand, and conversely, cytosolic signaling pathways.

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整合素及其配体的三维结构,以及细胞粘附的构象调控。
整合素是一种结构复杂的粘附分子家族,通过大规模的结构重排在质膜上双向传递信号。通过调节细胞-细胞和细胞-基质的接触,整合素参与了广泛的生物相互作用,包括发育、组织修复、血管生成、炎症和止血。从治疗的角度来看,整合素可能是最重要的一类细胞粘附受体。整合素-配体相互作用的结构研究揭示了分子细节的显著特征。这些细节包括二价阳离子依赖性配体结合的原子基础,以及构象信号如何在细胞质和调节配体亲和力的细胞外配体结合位点之间从一个结构域到另一个结构域的长距离传播,以及相反的细胞质信号通路。
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