Dynamic regulation of sarcomeric actin filaments in striated muscle
Open Access
- 21 September 2010
- journal article
- review article
- Published by Wiley in Cytoskeleton
- Vol. 67 (11), 677-692
- https://doi.org/10.1002/cm.20476
Abstract
In striated muscle, the actin cytoskeleton is differentiated into myofibrils. Actin and myosin filaments are organized in sarcomeres and specialized for producing contractile forces. Regular arrangement of actin filaments with uniform length and polarity is critical for the contractile function. However, the mechanisms of assembly and maintenance of sarcomeric actin filaments in striated muscle are not completely understood. Live imaging of actin in striated muscle has revealed that actin subunits within sarcomeric actin filaments are dynamically exchanged without altering overall sarcomeric structures. A number of regulators for actin dynamics have been identified, and malfunction of these regulators often result in disorganization of myofibril structures or muscle diseases. Therefore, proper regulation of actin dynamics in striated muscle is critical for assembly and maintenance of functional myofibrils. Recent studies have suggested that both enhancers of actin dynamics and stabilizers of actin filaments are important for sarcomeric actin organization. Further investigation of the regulatory mechanism of actin dynamics in striated muscle should be a key to understanding how myofibrils develop and operate.Keywords
This publication has 266 references indexed in Scilit:
- Mutations and polymorphisms of the skeletal muscle α-actin gene (ACTA1)Human Mutation, 2009
- Cytoplasmic Ig‐domain proteins: Cytoskeletal regulators with a role in human diseaseCell Motility, 2009
- Actin‐ADF/cofilin rod formation in Caenorhabditis elegans muscle requires a putative F‐actin binding site of ADF/cofilin at the C‐terminusCell Motility, 2009
- Review of the mechanism of processive actin filament elongation by forminsCell Motility, 2009
- Myofibrillogenesis in skeletal muscle cells in zebrafishCell Motility, 2009
- A Nebulin Ruler Does Not Dictate Thin Filament LengthsBiophysical Journal, 2009
- Dual roles of tropomyosin as an F‐actin stabilizer and a regulator of muscle contraction in Caenorhabditis elegans body wall muscleCell Motility, 2006
- How to build a myofibrilJournal of Muscle Research and Cell Motility, 2006
- Cortical Actin Turnover during Cytokinesis Requires Myosin IICurrent Biology, 2005
- Myosin-II-Dependent Localization and Dynamics of F-Actin during CytokinesisCurrent Biology, 2005