Ikebe M, Reardon S, Mitani Y, Kamisoyama H, Matsuura M, Ikebe R
Department of Physiology and Biophysics, Case Western Reserve University School of Medicine, Cleveland, OH 44106-4970.
Proc Natl Acad Sci U S A. 1994 Sep 13;91(19):9096-100. doi: 10.1073/pnas.91.19.9096.
The segment of smooth muscle regulatory light chain essential for the phosphorylation dependent activation of actomyosin motor activity and the binding of myosin heavy chain was identified. The C-terminal domain of the 20-kDa light chain, which is less conserved than the rest of the polypeptide among various muscle types, was mutated by either deletion or substitution of amino acid residues and the mutant light chains were then incorporated into myosin by subunit exchange. Deletion of Lys149-Ala166 markedly reduced the affinity of the light chain for the heavy chain, whereas the C-terminal five residues, Lys167-Asp171, did not contribute to the binding affinity. Deletion of Lys149-Phe158 abolished the phosphorylation-dependent activation of actomyosin ATPase activity as well as superprecipitation activity. These results suggest that the C-terminal domain of the regulatory light chain is critical for transmitting the change in the conformation of the regulatory light chain induced by phosphorylation at Ser19 to the heavy chain.
鉴定出了对肌动球蛋白运动活性的磷酸化依赖性激活以及肌球蛋白重链结合至关重要的平滑肌调节轻链片段。20 kDa轻链的C末端结构域在不同肌肉类型中比多肽的其余部分保守性更低,通过氨基酸残基的缺失或取代对其进行了突变,然后通过亚基交换将突变的轻链整合到肌球蛋白中。删除Lys149-Ala166显著降低了轻链对重链的亲和力,而C末端的五个残基Lys167-Asp171对结合亲和力没有贡献。删除Lys149-Phe158消除了肌动球蛋白ATP酶活性的磷酸化依赖性激活以及超沉淀活性。这些结果表明,调节轻链的C末端结构域对于将Ser19磷酸化诱导的调节轻链构象变化传递给重链至关重要。