Suppr超能文献

海胆卵驱动蛋白的ATP酶活性与微管转运活性之间的相关性。

Correlation between the ATPase and microtubule translocating activities of sea urchin egg kinesin.

作者信息

Cohn S A, Ingold A L, Scholey J M

出版信息

Nature. 1987;328(6126):160-3. doi: 10.1038/328160a0.

Abstract

Coupling between ATP hydrolysis and microtubule movement was demonstrated several years ago in flagellar axonemes and subsequent studies suggest that the relevant microtubule motor, dynein, uses ATP to drive microtubule sliding by a cross-bridge mechanism analogous to that of myosin in muscles. Kinesin, a microtubule-based motility protein which may participate in organelle transport and mitosis, binds microtubules in a nucleotide-sensitive manner, and requires hydrolysable nucleotides to translocate microtubules over a glass surface. Recently, neuronal kinesin was shown to possess microtubule-activated ATPase activity although coupling between ATP hydrolysis and motility was not demonstrated. Here we report that sea urchin egg kinesin, prepared either with or without a 5'-adenylyl imidodiphosphate(AMPPNP)-induced microtubule binding step, also possesses significant microtubule-activated ATPase activity when Mg-ATP is used as a substrate. This ATPase activity is inhibited in a dose-dependent manner by addition of Mg-free ATP, by chelation of Mg2+ with EDTA, by addition of Na3VO4, or by addition of AMPPNP with or without Mg2+. Addition of these same reagents also inhibits the microtubule-translocating activities of sea urchin egg kinesin in a dose-dependent manner, supporting the hypothesis that kinesin-driven motility is coupled to the microtubule-activated Mg2+-ATPase activity.

摘要

数年前在鞭毛轴丝中证实了ATP水解与微管运动之间的偶联,随后的研究表明,相关的微管马达动力蛋白利用ATP通过类似于肌肉中肌球蛋白的横桥机制驱动微管滑动。驱动蛋白是一种基于微管的运动蛋白,可能参与细胞器运输和有丝分裂,它以核苷酸敏感的方式结合微管,并需要可水解的核苷酸才能使微管在玻璃表面上移位。最近,已表明神经元驱动蛋白具有微管激活的ATP酶活性,尽管未证实ATP水解与运动性之间的偶联。在此我们报告,无论有无5'-腺苷酰亚胺二磷酸(AMPPNP)诱导的微管结合步骤制备的海胆卵驱动蛋白,当以Mg-ATP作为底物时,也具有显著的微管激活的ATP酶活性。通过添加无Mg的ATP、用EDTA螯合Mg2+、添加Na3VO4或添加有或无Mg的AMPPNP,这种ATP酶活性以剂量依赖的方式受到抑制。添加这些相同的试剂也以剂量依赖的方式抑制海胆卵驱动蛋白的微管移位活性,支持了驱动蛋白驱动的运动性与微管激活的Mg2+-ATP酶活性偶联的假说。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验