Qi D, Mitchell R W, Burdyga T, Ford L E, Kuo K-H, Seow C Y
Department of Pharmacology and Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z3.
Am J Physiol Cell Physiol. 2002 Jun;282(6):C1298-305. doi: 10.1152/ajpcell.00554.2001.
Phosphorylation of the 20-kDa regulatory myosin light chain (MLC) of smooth muscle is known to cause monomeric myosins in solution to self-assemble into thick filaments. The role of MLC phosphorylation in thick filament formation in intact muscle, however, is not clear. It is not known whether the phosphorylation is necessary to initiate thick filament assembly in vivo. Here we show, by using a potent inhibitor of MLC kinase (wortmannin), that the MLC phosphorylation and isometric force in trachealis muscle could be abolished without affecting calcium transients. By measuring cross-sectional densities of the thick filaments electron microscopically, we also show that inhibition of MLC phosphorylation alone did not cause disassembly of the filaments. The unphosphorylated thick filaments, however, partially dissolved when the muscle was subjected to oscillatory strains (which caused a 25% decrease in the thick filament density). The postoscillation filament density recovered to the preoscillation level only when wortmannin was removed and the muscle was stimulated. The data suggest that in vivo thick filament reassembly after mechanical perturbation is facilitated by the cyclic MLC phosphorylation associated with repeated stimulation.
已知平滑肌20 kDa调节性肌球蛋白轻链(MLC)的磷酸化会导致溶液中的单体肌球蛋白自组装成粗肌丝。然而,MLC磷酸化在完整肌肉粗肌丝形成中的作用尚不清楚。目前尚不清楚磷酸化是否是体内启动粗肌丝组装所必需的。在这里,我们通过使用一种有效的MLC激酶抑制剂(渥曼青霉素)表明,气管肌中的MLC磷酸化和等长力可以被消除,而不影响钙瞬变。通过电子显微镜测量粗肌丝的横截面密度,我们还表明,单独抑制MLC磷酸化不会导致肌丝解聚。然而,当肌肉受到振荡应变时(这导致粗肌丝密度降低25%),未磷酸化的粗肌丝会部分溶解。只有在去除渥曼青霉素并刺激肌肉后,振荡后的肌丝密度才恢复到振荡前的水平。数据表明,在体内,与重复刺激相关的循环MLC磷酸化促进了机械扰动后粗肌丝的重新组装。