MDia1 senses both force and torque during F-actin filament polymerization
10.1038/s41467-017-01745-4
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sg-nus-scholar.10635-1744832023-09-07T09:15:25Z MDia1 senses both force and torque during F-actin filament polymerization Yu M. Yuan X. Lu C. Le S. Kawamura R. Efremov A.K. Zhao Z. Kozlov M.M. Sheetz M. Bershadsky A. Yan J. MECHANOBIOLOGY INSTITUTE DEPT OF PHYSICS BIOLOGY (NU) biotin F actin protein protein mDia1 unclassified drug actin carrier protein biochemistry biomechanics chemical binding force polymerization protein torque actin filament actin polymerization Article force hypothesis magnetism protein conformation torque actin filament animal biomechanics chemistry genetics kinetics Leporidae metabolism polymerization torque Actin Cytoskeleton Actins Animals Biomechanical Phenomena Carrier Proteins Kinetics Polymerization Rabbits Torque 10.1038/s41467-017-01745-4 Nature Communications 8 1 1650 2020-09-06T16:03:33Z 2020-09-06T16:03:33Z 2017 Article Yu M., Yuan X., Lu C., Le S., Kawamura R., Efremov A.K., Zhao Z., Kozlov M.M., Sheetz M., Bershadsky A., Yan J. (2017). MDia1 senses both force and torque during F-actin filament polymerization. Nature Communications 8 (1) : 1650. ScholarBank@NUS Repository. https://doi.org/10.1038/s41467-017-01745-4 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/174483 Nature Publishing Group Unpaywall 20200831 |
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biotin F actin protein protein mDia1 unclassified drug actin carrier protein biochemistry biomechanics chemical binding force polymerization protein torque actin filament actin polymerization Article force hypothesis magnetism protein conformation torque actin filament animal biomechanics chemistry genetics kinetics Leporidae metabolism polymerization torque Actin Cytoskeleton Actins Animals Biomechanical Phenomena Carrier Proteins Kinetics Polymerization Rabbits Torque |
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biotin F actin protein protein mDia1 unclassified drug actin carrier protein biochemistry biomechanics chemical binding force polymerization protein torque actin filament actin polymerization Article force hypothesis magnetism protein conformation torque actin filament animal biomechanics chemistry genetics kinetics Leporidae metabolism polymerization torque Actin Cytoskeleton Actins Animals Biomechanical Phenomena Carrier Proteins Kinetics Polymerization Rabbits Torque Yu M. Yuan X. Lu C. Le S. Kawamura R. Efremov A.K. Zhao Z. Kozlov M.M. Sheetz M. Bershadsky A. Yan J. MDia1 senses both force and torque during F-actin filament polymerization |
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10.1038/s41467-017-01745-4 |
author2 |
MECHANOBIOLOGY INSTITUTE |
author_facet |
MECHANOBIOLOGY INSTITUTE Yu M. Yuan X. Lu C. Le S. Kawamura R. Efremov A.K. Zhao Z. Kozlov M.M. Sheetz M. Bershadsky A. Yan J. |
format |
Article |
author |
Yu M. Yuan X. Lu C. Le S. Kawamura R. Efremov A.K. Zhao Z. Kozlov M.M. Sheetz M. Bershadsky A. Yan J. |
author_sort |
Yu M. |
title |
MDia1 senses both force and torque during F-actin filament polymerization |
title_short |
MDia1 senses both force and torque during F-actin filament polymerization |
title_full |
MDia1 senses both force and torque during F-actin filament polymerization |
title_fullStr |
MDia1 senses both force and torque during F-actin filament polymerization |
title_full_unstemmed |
MDia1 senses both force and torque during F-actin filament polymerization |
title_sort |
mdia1 senses both force and torque during f-actin filament polymerization |
publisher |
Nature Publishing Group |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/174483 |
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1778169764235968512 |