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A systematic survey of conformational states in beta 1 and beta 4 integrins using negative-stain electron microscopy

机译:使用负染色电子显微镜对β1和β4整合蛋白的构象状态进行系统调查

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摘要

Structural analyses of beta 2 and beta 3 integrins have revealed that they generally assume a compact bent conformation in the resting state and undergo a global conformational transition involving extension during upregulation of ligand affinity, collectively called the 'switchblade model'. This hypothesis, however, has not been extensively tested for other classes of integrins. We prepared a set of recombinant integrin ectodomain fragments including alpha v beta 3, alpha 2 beta 1, alpha 3 beta 1, alpha 5 beta 1, alpha 6 beta 1 and alpha 6 beta 4, and used negative-stain electron microscopy to examine their structures under various conditions. In contrast to av beta 3 integrin, which exhibited a severely bent conformation in low-affinity 5 mM Ca2+ conditions, all beta 1 integrin heterodimers displayed a mixed population of half-bent to fully extended conformations. Moreover, they did not undergo significant conformational change upon activation by Mn2+. Integrin alpha 6 beta 4 was even more resistant to conformational regulation, showing a completely extended structure regardless of the buffer conditions. These results suggest that the mechanisms of conformational regulation of integrins are more diverse and complex than previously thought, requiring more experimental scrutiny for each integrin subfamily member.
机译:β2和β3整体素的结构分析表明,它们通常在静止状态下采用紧凑的弯曲构象,并在配体亲和力的上调期间经历涉及延伸的全局构象转变,共同称为“切换窗体模型”。然而,这一假设尚未对其他类班级进行广泛测试。我们制备了一组重组整联蛋白外来突蛋白片段,包括αvβ3,α2β1,α3β1,α5β1,α6β1和α6β4,并使用负染色电子显微镜检查它们结构下的结构。与AVβ3整联蛋白相比,在低亲和力5mM Ca2 +条件下表现出严重弯曲的构象,所有β1整联蛋白的异二聚体显示出混合群的半弯曲以完全延伸的构象。此外,它们在MN2 +激活时没有经历显着的构象变化。整合素α6β4甚至更具抗构象调节,显示出完全延伸的结构,无论缓冲条件如何。这些结果表明,整合素的构象调节机制比以前的思想更多样化,复杂,需要对每个整合蛋白的亚家族成员进行更实验的审查。

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