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Phosphorylation-dependent structural changes in the regulatory light chain domain of smooth muscle heavy meromyosin

X Wu1, B A Clack, G Zhi

  • 1Department of Biochemistry and Biophysics, Washington State University, Pullman, Washington 99164-4660, USA.

Insights

Phosphorylation regulates smooth muscle heavy meromyosin structure. Dephosphorylated states show regulatory light chain proximity, which thiophosphorylation disrupts, revealing key structural changes near the head-tail junction.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Muscle Physiology

Background:

  • Smooth muscle heavy meromyosin (HMM) is a myosin fragment regulated by phosphorylation.
  • Understanding phosphorylation-dependent structural changes in HMM is crucial for muscle function.

Purpose of the Study:

  • To investigate structural changes near the head-tail junction of smooth muscle HMM in response to phosphorylation.
  • To identify specific residues involved in these phosphorylation-dependent structural rearrangements.

Main Methods:

  • Preparation of five well-regulated HMMs with single-cysteine mutants of the human smooth muscle regulatory light chain.
  • Labeling mutants with benzophenone-iodoacetamide and subsequent photocross-linking.
  • Analysis of cross-linked species, specifically regulatory light chain dimers, using dephosphorylated and thiophosphorylated HMM.

Main Results:

  • Two classes of mutants were identified based on cross-linking patterns.
  • Class 1 (Q15C, A23C, wild type Cys-108) formed regulatory light chain dimers in dephosphorylated but not thiophosphorylated HMM, indicating proximity changes.
  • Class 2 (S59C, T134C) did not form dimers, suggesting their positions are outside the interaction region.

Conclusions:

  • Thiophosphorylation abolishes the proximity of specific regulatory light chain residues (Gln-15, Ala-23, Cys-108) to the partner head's regulatory light chain.
  • These findings provide direct chemical evidence for phosphorylation-induced structural rearrangements near the head-tail junction of smooth muscle HMM.

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