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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Mechanical and kinetic properties of β-cardiac/slow skeletal muscle myosin.
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Mechanical and kinetic properties of β-cardiac/slow skeletal muscle myosin.

机译:β-心脏/慢速骨骼肌肌球蛋白的力学和动力学性质。

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We aimed to establish reference parameters to identify functional effects of familial hypertrophic cardiomyopathy-related point mutations in the β-cardiac/slow skeletal muscle myosin heavy chain (β-cardiac/MyHC-1). We determined mechanical and kinetic parameters of the β-cardiac/MyHC-1 using human soleus muscle fibers that express the same myosin heavy chain (MyHC-1) as ventricular myocardium (β-cardiac). The observed parameters are compared to previously reported data for rabbit psoas muscle fibers. We found all of the examined kinetic parameters to be slower in soleus fibers than in rabbit psoas muscle. Somewhat surprisingly, however, we also found that the stiffness of the β-cardiac/MyHC-1 head domain is more than 3-fold lower than the stiffness of the fast isoform of psoas fibers. Furthermore, and different from rabbit psoas muscle, in human soleus fibers both the occupancy of force-generating cross-bridge states as well as the elastic extension of force-generating heads increase with temperature. Thus, a myosin head in the force generating states makes an increasing contribution to force with temperature. We support some of our fiber data by data from in vitro motility and optical trapping assays. Initial findings with FHC-related point mutations in the converter imply that the differences in stiffness of the head domain between the slow and fast isoform may well be due to particular differences in the amino acid sequence of the converter. We show that the slower kinetics may be linked to a larger flexibility of the β-cardiac/MyHC-1 isoform compared to fast MyHC isoforms.
机译:我们旨在建立参考参数,以鉴定家族性肥厚型心肌病相关的点突变在β心脏/慢速骨骼肌肌球蛋白重链(β-cardiac/ MyHC-1)中的作用。我们使用表达与心室心肌(β-cardiac)相同的肌球蛋白重链(MyHC-1)的比目鱼肌纤维确定了β-cardiac/ MyHC-1的力学和动力学参数。将观察到的参数与先前报告的兔腰肌肌肉纤维的数据进行比较。我们发现,比目鱼肌中所有检查的动力学参数都比兔子腰肌慢。然而,出乎意料的是,我们还发现,β-cardiac/ MyHC-1头部结构域的刚度比腰大肌快速同种型的刚度低3倍以上。此外,与兔腰大肌不同,在人的比目鱼纤维中,产生力的跨桥状态的占有率以及产生力的头部的弹性延伸都随温度而增加。因此,处于力产生状态的肌球蛋白头对力随着温度的贡献增加。我们通过体外运动性和光阱测定的数据来支持某些纤维数据。转化子中与FHC相关的点突变的初步发现表明,慢和快速同工型之间头部结构域刚度的差异很可能归因于转化子氨基酸序列的特殊差异。我们显示,与快速MyHC异构体相比,较慢的动力学可能与β-cardiac/ MyHC-1亚型的更大灵活性相关。

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