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首页> 外文期刊>The Journal of biological chemistry >Structural Basis for the Allosteric Interference of Myosin Function by Reactive Thiol Region Mutations G680A and G680V
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Structural Basis for the Allosteric Interference of Myosin Function by Reactive Thiol Region Mutations G680A and G680V

机译:反应性硫醇区突变G680A和G680V的肌球蛋白官能肌蛋白酶函数的结构基础

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The cold-sensitive single-residue mutation of glycine 680 in the reactive thiol region of Dictyostelium discoideum myosin-2 or the corresponding conserved glycine in other myosin isoforms has been reported to interfere with motor function. Here we present the x-ray structures of myosin motor domain mutants G680A in the absence and presence of nucleotide as well as the apo structure of mutant G680V. Our results show that the Gly-680 mutations lead to uncoupling of the reactive thiol region from the surrounding structural elements. Structural and functional data indicate that the mutations induce the preferential population of a state that resembles the ADP-bound state. Moreover, the Gly-680 mutants display greatly reduced dynamic properties, which appear to be related to the recovery of myosin motor function at elevated temperatures.
机译:据报道据报道,在其他肌蛋白同种型中的甲状腺蛋白酶肌肌肌肌蛋白酶-2的反应性硫醇区域中的甘氨酸680的冷敏感单残余物突变或相应的保守甘氨酸。在这里,我们在核苷酸的不存在和存在下呈现肌蛋白电机结构域突变体G680A的X射线结构以及突变体G680V的APO结构。我们的结果表明,GLY-680突变导致来自周围结构元件的反应性硫醇区域的解耦。结构和功能数据表明该突变诱导了类似于ADP绑定状态的状态的优先群体。此外,GLY-680突变体显示出大大降低的动态性质,其似乎与肌肌素电机功能在高温下的回收有关。

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