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Tubulin acetylation increases cytoskeletal stiffness to regulate mechanotransduction in striated muscle.

Andrew K Coleman | Humberto C Joca | Guoli Shi | W Jonathan Lederer | Christopher W Ward
The Journal of general physiology | 2021

Microtubules tune cytoskeletal stiffness, which affects cytoskeletal mechanics and mechanotransduction of striated muscle. While recent evidence suggests that microtubules enriched in detyrosinated α-tubulin regulate these processes in healthy muscle and increase them in disease, the possible contribution from several other α-tubulin modifications has not been investigated. Here, we used genetic and pharmacologic strategies in isolated cardiomyocytes and skeletal myofibers to increase the level of acetylated α-tubulin without altering the level of detyrosinated α-tubulin. We show that microtubules enriched in acetylated α-tubulin increase cytoskeletal stiffness and viscoelastic resistance. These changes slow rates of contraction and relaxation during unloaded contraction and increased activation of NADPH oxidase 2 (Nox2) by mechanotransduction. Together, these findings add to growing evidence that microtubules contribute to the mechanobiology of striated muscle in health and disease.

Pubmed ID: 33740038

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Associated grants

  • Agency: NHLBI NIH HHS, United States
    Id: U01 HL116321
  • Agency: NHLBI NIH HHS, United States
    Id: R01 HL142290
  • Agency: NIAMS NIH HHS, United States
    Id: T32 AR007592
  • Agency: NIAMS NIH HHS, United States
    Id: R01 AR071618
  • Agency: NIAMS NIH HHS, United States
    Id: R01 AR071614

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C57BL/6J (tool)

RRID:IMSR_JAX:000664

Mus musculus with name C57BL/6J from IMSR.

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