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Microscopic Temperature Control Reveals Cooperative Regulation of Actin–Myosin Interaction by Drebrin E

Authors :
40609236
Kubota, Hiroaki
Ogawa, Hiroyuki
Miyazaki, Makito
Ishii, Shuya
Oyama, Kotaro
Kawamura, Yuki
Ishiwata, Shin’ichi
Suzuki, Madoka
40609236
Kubota, Hiroaki
Ogawa, Hiroyuki
Miyazaki, Makito
Ishii, Shuya
Oyama, Kotaro
Kawamura, Yuki
Ishiwata, Shin’ichi
Suzuki, Madoka
Publication Year :
2021

Abstract

Drebrin E is a regulatory protein of intracellular force produced by actomyosin complexes, that is, myosin molecular motors interacting with actin filaments. The expression level of drebrin E in nerve cells decreases as the animal grows, suggesting its pivotal but unclarified role in neuronal development. Here, by applying the microscopic heat pulse method to actomyosin motility assay, the regulatory mechanism is examined from the room temperature up to 37 °C without a thermal denaturing of proteins. We show that the inhibition of actomyosin motility by drebrin E is eliminated immediately and reversibly during heating and depends on drebrin E concentration. The direct observation of quantum dot-labeled drebrin E implies its stable binding to actin filaments during the heat-induced sliding. Our results suggest that drebrin E allosterically modifies the actin filament structure to regulate cooperatively the actomyosin activity at the maintained in vivo body temperature.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1458632234
Document Type :
Electronic Resource