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Actomyosin kinetics of pure fast and slow rat myosin isoforms studied by in vitro motility assay approach

机译:体外运动分析方法研究纯快,慢大鼠肌球蛋白同工型的肌动球蛋白动力学

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摘要

An in vitro motility assay approach was used to investigate the mechanisms of the functional differences between myosin isoforms, by studying the effect of MgATP and MgADP on actin sliding velocity (Vf) of pure slow and fast rat skeletal myosin at different temperatures. The value of Vf depended on [MgATP] according to Michaelis–Menten kinetics, with an apparent constant (Km) of 54.2, 64.4 and 200 μM for the fast isoform and 18.6, 36.5 and 45.5 μM for the slow isoform at 20, 25 and 35°C, respectively. The presence of 2 mM MgADP decreased Vf and yielded an inhibition constant (Ki) of 377, 463 and 533 μM for the fast isoform at 20, 25 and 35°C, respectively, and 120 and 355 μM for the slow isoform at 25 and 35°C, respectively. The analysis of Km and Ki suggested that slow and fast isoforms differ in the kinetics limiting Vf. Moreover, the higher sensitivity of the fast myosin isoform to a drop in [MgATP] is consistent with the higher fatigability of fast fibres than slow fibres. From the Michaelis–Menten relation in the absence of MgADP, we calculated the rate of actomyosin dissociation by MgATP (k+ATP) and the rate of MgADP release (k-ADP). We found values of k+ATP of 4.8 × 106, 6.5 × 106 and 6.6 × 106 M−1 s−1 for the fast isoform and 3.3 × 106, 2.9 × 106 and 6.7 × 106 M−1 s−1 for the slow isoform and values of k-ADP of 263, 420 and 1320 s−1 for the fast isoform and 62, 107 and 306 s−1 for the slow isoform at 20, 25 and 35°C, respectively. The results suggest that k-ADP could be the major determinant of functional differences between the fast and slow myosin isoforms at physiological temperatures.
机译:通过研究MgATP和MgADP对不同温度下纯慢速和快速大鼠骨骼肌肌球蛋白肌动蛋白滑动速度(Vf)的影响,采用了体外运动分析方法来研究肌球蛋白同工型之间功能差异的机制。根据Michaelis-Menten动力学,Vf的值取决于[MgATP],快速异构体的表观常数(Km)为54.2、64.4和200μM,慢速异构体在20、25和20时的表观常数(Km)为18.6、36.5和45.5μM。分别为35°C。 2 mM MgADP的存在降低了Vf并在20、25和35°C下分别对快速同工型产生了377、463和533μM的抑制常数(Ki),在25和25°C下对慢同型异构体产生了120和355μM的抑制常数。分别为35°C。对Km和Ki的分析表明,慢速和快速亚型在动力学上限制了Vf。此外,快肌球蛋白同工型对[MgATP]下降的较高敏感性与快纤维比慢纤维的较高可疲劳性相一致。根据在没有MgADP的情况下的Michaelis-Menten关系,我们计算了由MgATP解离的肌动球蛋白率(k + ATP)和MgADP释放率(k-ADP)。我们发现快异构体的k + ATP值分别为4.8×106、6.5×106和6.6×106 M-1 s-1,慢异构体的k + ATP值为3.3×106、2.9×106和6.7×106 M-1 s-1在20、25和35°C时,快异构体的k-ADP异构体和k-ADP值分别为263、420和1320 s-1,慢异构体的k-ADP值分别为62、107和306 s-1。结果表明,在生理温度下,k-ADP可能是快和慢肌球蛋白同工型之间功能差异的主要决定因素。

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