作者
Carsten Grashoff, Brenton D Hoffman, Michael D Brenner, Ruobo Zhou, Maddy Parsons, Michael T Yang, Mark A McLean, Stephen G Sligar, Christopher S Chen, Taekjip Ha, Martin A Schwartz
发表日期
2010/7/8
期刊
Nature
卷号
466
期号
7303
页码范围
263-266
出版商
Nature Publishing Group UK
简介
Mechanical forces are central to developmental, physiological and pathological processes. However, limited understanding of force transmission within sub-cellular structures is a major obstacle to unravelling molecular mechanisms. Here we describe the development of a calibrated biosensor that measures forces across specific proteins in cells with piconewton (pN) sensitivity, as demonstrated by single molecule fluorescence force spectroscopy. The method is applied to vinculin, a protein that connects integrins to actin filaments and whose recruitment to focal adhesions (FAs) is force-dependent. We show that tension across vinculin in stable FAs is ∼2.5 pN and that vinculin recruitment to FAs and force transmission across vinculin are regulated separately. Highest tension across vinculin is associated with adhesion assembly and enlargement. Conversely, vinculin is under low force in disassembling or sliding …
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