Andruchov Oleg, Galler Stefan
Department of Cell Biology, University of Salzburg, Hellbrunnerstrasse 34, A-5020 Salzburg, Austria.
Pflugers Arch. 2008 Mar;455(6):1165-72. doi: 10.1007/s00424-007-0369-1. Epub 2007 Oct 25.
This study contributes to understand the physiological role of slow myosin light chain isoforms in fast-twitch type IIA fibres of skeletal muscle. These isoforms are often attached to the myosin necks of rat type IIA fibres, whereby the slow alkali myosin light chain isoform MLC1s is much more frequent and abundant than the slow regulatory myosin light chain isoform MLC2s. In the present study, single-skinned rat type IIA fibres were maximally Ca(2+) activated and subjected to stepwise stretches for causing a perturbation of myosin head pulling cycles. From the time course of the resulting force transients, myosin head kinetics was deduced. Fibres containing MLC1s exhibited slower kinetics independently of the presence or absence of MLC2s. At the maximal MLC1s concentration of about 75%, the slowing was about 40%. The slowing effect of MLC1s is possibly due to differences in the myosin heavy chain binding sites of the fast and slow alkali MLC isoforms, which changes the rigidity of the myosin neck. Compared with the impact of myosin heavy chain isoforms in various fast-twitch fibre types, the influence of MLC1s on myosin head kinetics of type IIA fibres is much smaller. In conclusion, the physiological role of fast and slow MLC isoforms in type IIA fibres is a fine-tuning of the myosin head kinetics.
本研究有助于理解慢肌球蛋白轻链亚型在骨骼肌快肌型IIA纤维中的生理作用。这些亚型常附着于大鼠IIA纤维的肌球蛋白颈部,其中慢碱性肌球蛋白轻链亚型MLC1s比慢调节性肌球蛋白轻链亚型MLC2s更为常见且丰富。在本研究中,对单根去表皮大鼠IIA纤维进行最大程度的Ca(2+)激活,并进行逐步拉伸以干扰肌球蛋白头部的拉动循环。根据产生的力瞬变的时间过程,推导肌球蛋白头部动力学。含有MLC1s的纤维表现出较慢的动力学,与MLC2s的存在与否无关。在MLC1s的最大浓度约为75%时,减慢约40%。MLC1s的减慢作用可能是由于快、慢碱性MLC亚型的肌球蛋白重链结合位点不同,这改变了肌球蛋白颈部的刚性。与肌球蛋白重链亚型在各种快肌纤维类型中的影响相比,MLC1s对IIA纤维肌球蛋白头部动力学的影响要小得多。总之,快、慢MLC亚型在IIA纤维中的生理作用是对肌球蛋白头部动力学的微调。