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Published on: June 7, 2020
Myogenesis defect due to Toca-1 knockdown can be suppressed by expression of N-WASP
Bhawana George1, Neeraj Jain1, Pei Fen Chong1
1School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551, Republic of Singapore.
Abstract:
Skeletal muscle formation is a multistep process involving proliferation, differentiation, alignment and fusion of myoblasts to form myotubes which fuse with additional myoblast to form myofibers. Toca-1 (Transducer of Cdc42-dependent actin assembly), is an adaptor protein which activates N-WASP in conjunction with Cdc42 to facilitate membrane invagination, endocytosis and actin cytoskeleton remodeling. Expression of Toca-1 in mouse primary myoblasts and C2C12 myoblasts was up-regulated on day 1 of differentiation and subsequently down-regulated during differentiation. Knocking down Toca-1 expression in C2C12 cells (Toca-1(KD) cells) resulted in a significant decrease in myotube formation and expression of shRNA-resistant Toca-1 in Toca-1(KD) cells rescued the myogenic defect, suggesting that the knockdown was specific and Toca-1 is essential for myotube formation. Toca-1(KD) cells exhibited elongated spindle-like morphology, expressed myogenic markers (MyoD and MyHC) and localized N-Cadherin at cell periphery similar to control cells suggesting that Toca-1 is not essential for morphological changes or expression of proteins critical for differentiation. Toca-1(KD) cells displayed prominent actin fibers suggesting a defect in actin cytoskeleton turnover necessary for cell-cell fusion. Toca-1(KD) cells migrated faster than control cells and had a reduced number of vinculin patches similar to N-WASP(KO) MEF cells. Transfection of N-WASP-expressing plasmid into Toca-1(KD) cells restored myotube formation of Toca-1(KD) cells. Thus, our results suggest that Toca-1(KD) cells have defects in formation of myotubes probably due to reduced activity of actin cytoskeleton regulators such as N-WASP. This is the first study to identify and characterize the role of Toca-1 in myogenesis.
Insights
Transducer of Cdc42-dependent actin assembly (Toca-1) is essential for skeletal muscle formation. Knocking down Toca-1 impairs myoblast fusion and myotube development, highlighting its role in myogenesis.
Area of Science:
- Cell Biology
- Muscle Development
- Biochemistry
Background:
- Skeletal muscle formation involves myoblast proliferation, differentiation, alignment, and fusion.
- Toca-1 (Transducer of Cdc42-dependent actin assembly) is an adaptor protein involved in actin cytoskeleton remodeling.
- The role of Toca-1 in myogenesis has not been previously characterized.
Purpose of the Study:
- To investigate the function of Toca-1 in skeletal muscle formation (myogenesis).
- To determine the specific role of Toca-1 in myoblast differentiation and fusion.
Main Methods:
- Utilized mouse primary myoblasts and C2C12 myoblast cell lines.
- Performed Toca-1 knockdown using shRNA in C2C12 cells (Toca-1(KD) cells).
- Assessed myotube formation, expression of myogenic markers (MyoD, MyHC), N-Cadherin localization, actin cytoskeleton organization, and cell migration.
Main Results:
- Toca-1 expression is upregulated during early differentiation and downregulated later.
- Toca-1 knockdown significantly reduced myotube formation, which was rescued by expressing shRNA-resistant Toca-1.
- Toca-1 knockdown cells showed defects in actin cytoskeleton turnover and cell-cell fusion, with faster migration and fewer vinculin patches.
- Restoration of N-WASP expression in Toca-1(KD) cells rescued myotube formation.
Conclusions:
- Toca-1 is essential for efficient myotube formation during myogenesis.
- Toca-1 likely functions by regulating actin cytoskeleton dynamics, potentially through N-WASP, facilitating cell-cell fusion.
- This study is the first to identify and characterize the role of Toca-1 in skeletal muscle development.
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