The Mechanism of the Reverse Recovery Step, Phosphate Release, and Actin Activation of Dictyostelium Myosin II
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference54 articles.
1. The Molecular Mechanism of Muscle Contraction
2. The Force Exerted by a Muscle Cross-Bridge Depends Directly on the Strength of the Actomyosin Bond
3. Elementary processes of the magnesium ion-dependent adenosine triphosphatase activity of heavy meromysin. A transient kinetic approach to the study of kinases and adenosine triphosphatases and a colorimetric inorganic phosphate assay in situ
4. Kinetic Analysis of ATPase Mechanisms
5. Synthesis of ATP from ADP and Inorganic Phosphate at the Myosin-Subfragment 1 Active Site
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1. New paradigms in actomyosin energy transduction: Critical evaluation of non‐traditional models for orthophosphate release;BioEssays;2023-06-27
2. New paradigms in actomyosin energy transduction: critical evaluation of non-traditional models for orthophosphate release;2023-04-13
3. Multistep orthophosphate release tunes actomyosin energy transduction;Nature Communications;2022-08-05
4. Improved Inhibitory and Absorption, Distribution, Metabolism, Excretion, and Toxicology (ADMET) Properties of Blebbistatin Derivatives Indicate That Blebbistatin Scaffold Is Ideal for drug Development Targeting Myosin-2;Journal of Pharmacology and Experimental Therapeutics;2021-01-19
5. Single molecule turnover of fluorescent ATP by myosin and actomyosin unveil elusive enzymatic mechanisms;Communications Biology;2021-01-13
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