长春新碱
生物物理学
焦点粘着
细胞骨架
机械转化
化学
整合素
细胞生物学
全内反射荧光显微镜
细胞质
血浆蛋白结合
信号转导
膜
生物化学
生物
受体
细胞
作者
Armando E. del Río Hernández,Raúl Pérez‐Jiménez,Ruchuan Liu,Pere Roca‐Cusachs,Julio M. Fernández,Michael P. Sheetz
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2009-01-29
卷期号:323 (5914): 638-641
被引量:1430
标识
DOI:10.1126/science.1162912
摘要
The molecular mechanism by which a mechanical stimulus is translated into a chemical response in biological systems is still unclear. We show that mechanical stretching of single cytoplasmic proteins can activate binding of other molecules. We used magnetic tweezers, total internal reflection fluorescence, and atomic force microscopy to investigate the effect of force on the interaction between talin, a protein that links liganded membrane integrins to the cytoskeleton, and vinculin, a focal adhesion protein that is activated by talin binding, leading to reorganization of the cytoskeleton. Application of physiologically relevant forces caused stretching of single talin rods that exposed cryptic binding sites for vinculin. Thus in the talin-vinculin system, molecular mechanotransduction can occur by protein binding after exposure of buried binding sites in the talin-vinculin system. Such protein stretching may be a more general mechanism for force transduction.
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