Tohtong R, Yamashita H, Graham M, Haeberle J, Simcox A, Maughan D
Department of Molecular Genetics, Ohio State University, Columbus 43210, USA.
Nature. 1995 Apr 13;374(6523):650-3. doi: 10.1038/374650a0.
Myosin regulatory light chain is phosphorylated by myosin light chain kinase at conserved serine and threonine residues in a number of species. Phosphorylation of myosin regulatory light chain regulates smooth muscle contraction, but appears to have a modulatory role in striated muscle contraction. We assessed the in vivo role of myosin regulatory light chain phosphorylation in the striated muscles of Drosophila melanogaster by substituting alanine at each or both conserved myosin light chain kinase-dependent phosphorylation sites, serine 66 and serine 67. We report here that myosin light chain kinase-dependent phosphorylation is not required for myofibrillogenesis or for the development of maximal isometric force in indirect flight muscles. However, mutants with substitutions at the major phosphorylation site (serine 66) or with the double substitutions had reduced power output in isolated flight muscle fibres and reduced flight ability, showing that myosin regulatory light chain phosphorylation is a key determinant of the stretch activation response in Drosophila.
在许多物种中,肌球蛋白调节轻链在保守的丝氨酸和苏氨酸残基处被肌球蛋白轻链激酶磷酸化。肌球蛋白调节轻链的磷酸化调节平滑肌收缩,但似乎在横纹肌收缩中起调节作用。我们通过在保守的肌球蛋白轻链激酶依赖性磷酸化位点丝氨酸66和丝氨酸67处分别或同时替换丙氨酸,评估了果蝇横纹肌中肌球蛋白调节轻链磷酸化的体内作用。我们在此报告,肌原纤维形成或间接飞行肌中最大等长力的发育不需要肌球蛋白轻链激酶依赖性磷酸化。然而,在主要磷酸化位点(丝氨酸66)发生替换或进行双重替换的突变体,其分离的飞行肌纤维的功率输出降低,飞行能力下降,这表明肌球蛋白调节轻链磷酸化是果蝇拉伸激活反应的关键决定因素。