Crow M T, Kushmerick M J
J Biol Chem. 1982 Mar 10;257(5):2121-4.
The rate of splitting of energy-rich phosphate compounds and the extent of myosin light chain phosphorylation in contracting mouse extensor digitorum longus (EDL, fast twitch) and soleus (slow twitch) muscles were studied at 20 degrees C. The rate of high energy phosphate-splitting during a maintained isometric tetanus was 1.44 +/- 0.21 mumol . g-1 . s-1 in soleus. In EDL, the splitting rate was higher, 3.71 +/- 0.62 mumol . g-1 . s-1, during the first several seconds and thereafter was reduced to a rate of 1.63 +/- 0.35 mumol . g-1 . s-1 between 12 and 15 s of stimulation. Light chains identified on 2-dimensional gel electrophoretograms from EDL corresponded to the light chain composition of fast twitch muscle (LC1f, LC2f, and LC3f). Soleus is composed of fast twitch and slow twitch fibers because 2 additional light chains were found: LC1s and LC2s. In unstimulated EDL and soleus muscles, 0.1 of the LC1f and LC2s were phosphorylated. Upon stimulation, only LC2f, and only in EDL, increased its extent of phosphorylation. The time course of increase in phosphorylation of LC2f and decrease in rate of high energy phosphate-splitting correspond so that the 2 processes may be mechanistically related. If so, it appears that myosin LC2f phosphorylation represents a thick filament regulatory system capable of downward modulation of actomyosin ATPase in vivo during a maintained contraction.
在20℃下,研究了收缩状态下的小鼠趾长伸肌(EDL,快肌纤维)和比目鱼肌(慢肌纤维)中富含能量的磷酸化合物的分解速率以及肌球蛋白轻链磷酸化的程度。在比目鱼肌等长强直收缩期间,高能磷酸化合物的分解速率为1.44±0.21μmol·g-1·s-1。在EDL中,在前几秒分解速率较高,为3.71±0.62μmol·g-1·s-1,之后在刺激12至15秒之间降至1.63±0.35μmol·g-1·s-1。从EDL的二维凝胶电泳图谱中鉴定出的轻链与快肌纤维的轻链组成相对应(LC1f、LC2f和LC3f)。比目鱼肌由快肌纤维和慢肌纤维组成,因为还发现了另外两条轻链:LC1s和LC2s。在未受刺激的EDL和比目鱼肌中,LC1f和LC2s中有0.1%发生了磷酸化。受到刺激后,只有LC2f发生磷酸化程度增加,且仅在EDL中如此。LC2f磷酸化增加的时间进程与高能磷酸化合物分解速率降低相对应,因此这两个过程可能在机制上相关。如果是这样,似乎肌球蛋白LC2f磷酸化代表了一种粗肌丝调节系统,能够在持续收缩期间在体内向下调节肌动球蛋白ATP酶。