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首页> 外文期刊>Nature >CRYSTAL STRUCTURE OF THE MOTOR DOMAIN OF THE KINESIN-RELATED MOTOR NCD
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CRYSTAL STRUCTURE OF THE MOTOR DOMAIN OF THE KINESIN-RELATED MOTOR NCD

机译:与驱动蛋白有关的马达NCD的马达域的晶体结构

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MICROTUBULE-BASED ATPases of the kinesin superfamily(1,2) provide the motile force for many animated features of living cells. Kinesin motors differ in their direction of movement along microtubules. Kinesin(3) and ncd(4,5), a kinesin-related motor involved in formation and maintenance of mitotic and meiotic spindles, move in opposite directions along microtubules, even though their motor domains are 40% identical in amino-acid sequence. Here we report the crystal structure of the MgADP complex of the Drosophila ncd motor domain determined to 2.5 Angstrom by X-ray crystallography, and compare it to the kinesin structure. The ncd and kinesin motor domains are remarkably similar in structure, and the locations of conserved surface amino acids suggest these motors share a common microtubule-binding site, Moreover, structural and functional comparisons of ncd, kinesin, myosin and G proteins indicate that these NTPases may have a similar strategy of changing conformation between NTP and NDP states. We propose a general model for converting a common gamma-phosphate-sensing mechanism into opposite polarities of movement for kinesin and ncd. [References: 28]
机译:驱动蛋白超家族(1,2)的基于微管的ATPases为活细胞的许多动画特征提供了动力。驱动蛋白马达沿微管的运动方向不同。 Kinesin(3)和ncd(4,5)是一种与驱动蛋白有关的运动,参与有丝分裂和减数分裂纺锤体的形成和维持,即使它们的运动结构域在氨基酸序列上具有40%的相同性,它们也沿微管沿相反的方向移动。在这里,我们报告果蝇Ncd电机域的MgADP复合物的晶体结构,通过X射线晶体学测定为2.5埃,并将其与驱动蛋白结构进行比较。 ncd和驱动蛋白的马达结构域在结构上非常相似,并且保守的表面氨基酸的位置表明这些马达共享一个共同的微管结合位点。此外,ncd,驱动蛋白,肌球蛋白和G蛋白的结构和功能比较表明,这些NTPase可能具有更改NTP和NDP状态之间构象的类似策略。我们提出了一个通用模型,用于将常见的伽玛-磷酸盐感应机制转换为驱动蛋白和ncd的相反运动极性。 [参考:28]

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