Redox signaling modulates Rho activity and tissue contractility in theCaenorhabditis elegansspermatheca
Author:
Affiliation:
1. Department of Biology, Northeastern University, Boston, MA 02115
2. Center for Molecular Medicine, Molecular Cancer Research Section, University Medical Center Utrecht, Universiteitsweg 100, 3584 CG Utrecht, the Netherlands
Abstract
Publisher
American Society for Cell Biology (ASCB)
Subject
Cell Biology,Molecular Biology
Reference93 articles.
1. Direct Activation of RhoA by Reactive Oxygen Species Requires a Redox-Sensitive Motif
2. In Vivo Mapping of Hydrogen Peroxide and Oxidized Glutathione Reveals Chemical and Regional Specificity of Redox Homeostasis
3. Formation of Actin Stress Fibers and Focal Adhesions Enhanced by Rho-Kinase
4. Regulation of the Caenorhabditis elegans oxidative stress defense protein SKN-1 by glycogen synthase kinase-3
5. Actin dynamics and competition for myosin monomer govern the sequential amplification of myosin filaments
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1. A mutation in F-actin polymerization factor suppresses the distal arthrogryposis type 5 PIEZO2 pathogenic variant in Caenorhabditis elegans;Development;2024-02-13
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3. Tension-dependent RHGF-1 recruitment to stress fibers drives robust spermathecal tissue contraction;Journal of Cell Biology;2022-12-27
4. Redox signaling as a modulator of germline stem cell behavior: Implications for regenerative medicine;Free Radical Biology and Medicine;2021-04
5. FLN ‐1/filamin is required to anchor the actomyosin cytoskeleton and for global organization of sub‐cellular organelles in a contractile tissue;Cytoskeleton;2020-10
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