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Determination of primary structure of amberjack myosin heavy chain and itsrelationship with structural stability of various fish myosin rods

机译:鱼mber肌球蛋白重链一级结构的确定及其与结构稳定性的关系

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The structural stability of fish myosin depends upon species and temperatures of water in which fish live. Primary, secondary, and quaternary structures of myosin heavy chain (MyHC) from three species of fish living at different temperature ranges have been compared with those of rabbit MyHC in order to investigate the differences in stability. Primary structure of MyHC, although being accessible for warm-water and cold-water fish (carp and walleye pollack), was not available in previous for tropical-water fish literature; so in this study primary structure of MyHC of the tropical-water fish amberjack has been determined by cloning and sequencing its cDNA. The MyHC has 1938 amino acid residues (AA), which are almost as much as as those of carp and walleye pollack. The amberjack MyHC is 91-95% homologous with other fish and rabbit MyHCs. There is a discernible difference between animal species with stable myosin rod (amberjack, carp, and rabbit) and walleye pollack with unstable rod. Stable rod species have a high probability of forming coiled-coil around the COOH-terminal end of the rod, while the pollack has a low coiled-coil formation probability. In addition, the average scores of the coiled-coil for myosin rod were rabbit (1.738) > amberjack (1.691) > carp (1.680) > walleye pollack (1.674) which correlated exactly with the observed stability. The results suggest that coiled-coil forming ability, particularly around the COOH-terminal end, directs structural stability of fish myosin rod.
机译:鱼肌球蛋白的结构稳定性取决于鱼所生活的水的种类和温度。为了研究稳定性的差异,将三种生活在不同温度范围的鱼类的肌球蛋白重链(MyHC)的一级,二级和四级结构与兔子的MyHC进行了比较。 MyHC的主要结构虽然可用于温水和冷水鱼类(鲤鱼和角膜白斑),但以前在热带水鱼类文献中尚无可用。因此,在这项研究中,热带鱼mber鱼的MyHC的一级结构已通过对其cDNA进行克隆和测序来确定。 MyHC具有1938个氨基酸残基(AA),几乎与鲤鱼和大眼鲷的鳕鱼相同。琥珀鱼MyHC与其他鱼类和兔子的MyHC具有91-95%的同源性。肌球蛋白棒稳定的动物物种(a鱼,鲤鱼和兔子)与棒肌不稳定的角膜白斑之间存在明显差异。稳定的棒物质在棒的COOH末端附近形成卷曲螺旋的可能性很高,而波拉克的卷曲螺旋形成的可能性低。此外,肌球蛋白棒的卷曲螺旋平均得分为兔子(1.738)> mber鱼(1.691)>鲤鱼(1.680)>壁眼鳕(1.674),与观察到的稳定性完全相关。结果表明,卷曲螺旋形成能力,特别是在COOH末端附近,指导鱼肌球蛋白棒的结构稳定性。

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