0000000000794331

AUTHOR

Benjamin Pelz

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Dynamic force sensing of filamin revealed in single-molecule experiments

2012

Mechanical forces are important signals for cell response and development, but detailed molecular mechanisms of force sensing are largely unexplored. The cytoskeletal protein filamin is a key connecting element between the cytoskeleton and transmembrane complexes such as integrins or the von Willebrand receptor glycoprotein Ib. Here, we show using single-molecule mechanical measurements that the recently reported Ig domain pair 20–21 of human filamin A acts as an autoinhibited force-activatable mechanosensor. We developed a mechanical single-molecule competition assay that allows online observation of binding events of target peptides in solution to the strained domain pair. We find that fi…

Filaminsta221IntegrinPlasma protein bindingImmunoglobulin domainactin-binding proteinta3111LigandsFilaminoptical tweezerContractile ProteinsHumansCytoskeletonMultidisciplinarybiologyChemistryMicrofilament Proteinsta1182Microfilament ProteinBiological SciencesfilaminTransmembrane proteinCell biologyOptical tweezersbiology.proteinmechanosensingProtein Binding
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