Andruchov Oleg, Andruchova Olena, Wang Yishu, Galler Stefan
Department of Cell Biology, University of Salzburg, Hellbrunnerstrasse 34, A-5020 Salzburg, Austria.
Am J Physiol Cell Physiol. 2004 Dec;287(6):C1725-32. doi: 10.1152/ajpcell.00255.2004. Epub 2004 Aug 11.
Stretch activation kinetics were investigated in skinned mouse skeletal muscle fibers of known myosin heavy chain (MHC) isoform content to assess kinetic properties of different myosin heads while generating force. The time to peak of stretch-induced delayed force increase (t(3)) was strongly correlated with MHC isoforms [t(3) given in ms for fiber types containing specified isoforms; means +/- SD with n in parentheses: MHCI 680 +/- 108 (13), MHCIIa 110.5 +/- 10.7 (23), MHCIIx(d) 46.2 +/- 5.2 (20), MHCIIb 23.5 +/- 3.3 (76)]. This strong correlation suggests different kinetics of force generation of different MHC isoforms in the following order:MHCIIb > MHCIIx(d) > MHCIIa >> MHCI. For rat, rabbit, and human skeletal muscles the same type of correlation was found previously. The kinetics decreases slightly with increasing body mass. Available amino acid sequences were aligned to quantify the structural variability of MHC isoforms of different animal species. The variation in t(3) showed a correlation with the structural variability of specific actin-binding loops (so-called loop 2 and loop 3) of myosin heads (r = 0.74). This suggests that alterations of amino acids in these loops contribute to the different kinetics of myosin heads of various MHC isoforms.
在已知肌球蛋白重链(MHC)同工型含量的去皮小鼠骨骼肌纤维中研究拉伸激活动力学,以评估不同肌球蛋白头部在产生力时的动力学特性。拉伸诱导的延迟力增加的峰值时间(t(3))与MHC同工型密切相关[t(3)以毫秒为单位,针对含有特定同工型的纤维类型;平均值±标准差,括号内为n:I型MHC 680±108(13),IIa型MHC 110.5±10.7(23),IIx(d)型MHC 46.2±5.2(20),IIb型MHC 23.5±3.3(76)]。这种强相关性表明不同MHC同工型产生力的动力学不同,顺序如下:IIb型MHC > IIx(d)型MHC > IIa型MHC >> I型MHC。对于大鼠、兔子和人类骨骼肌,先前也发现了相同类型的相关性。动力学随体重增加略有下降。对可用的氨基酸序列进行比对,以量化不同动物物种MHC同工型的结构变异性。t(3)的变化与肌球蛋白头部特定肌动蛋白结合环(所谓的环2和环3)的结构变异性相关(r = 0.74)。这表明这些环中氨基酸的改变导致了各种MHC同工型肌球蛋白头部不同的动力学。