MDia1 senses both force and torque during F-actin filament polymerization

10.1038/s41467-017-01745-4

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Main Authors: Yu M., Yuan X., Lu C., Le S., Kawamura R., Efremov A.K., Zhao Z., Kozlov M.M., Sheetz M., Bershadsky A., Yan J.
Other Authors: MECHANOBIOLOGY INSTITUTE
Format: Article
Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/174483
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spelling 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
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic 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
spellingShingle 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
description 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
_version_ 1778169764235968512