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The motile beta/IC1 subunit of sea urchin sperm outer arm dynein does not form a rigor bond

机译:海胆精子外臂动力蛋白的能动β/ IC1亚基不形成严格的键

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We used in vitro translocation and cosedimentation assays to study the microtubule binding properties of sea urchin sperm outer arm dynein and its beta/IC1 subunit. Microtubules glided on glass-absorbed sea urchin dynein for a period of time directly proportional to the initial MgATP2- concentration and then detached when 70-95% of the MgATP2- was hydrolyzed. Detachment resulted from MgATP2- depletion, because (a) perfusion with fresh buffer containing MgATP2- reconstituted binding and gliding, (b) microtubules glided many minutes with an ATP- regenerating system at ATP concentrations which alone supported gliding for only 1-2 min, and (c) microtubules detached upon total hydrolysis of ATP by an ATP-removal system. The products of ATP hydrolysis antagonized binding and gliding; as little as a threefold excess of ADP/Pi over ATP resulted in complete loss of microtubule binding and translocation by the beta/IC1 subunit. In contrast to the situation with sea urchin dynein, microtubules ceased gliding but remained bound to glass-absorbed Tetrahymena outer arm dynein when MgATP2- was exhausted. Cosedimentation assays showed that Tetrahymena outer arm dynein sedimented with microtubules in an ATP-sensitive manner, as previously reported (Porter, M.E., and K. A. Johnson. J. Biol. Chem. 258: 6575-6581). However, the beta/IC1 subunit of sea urchin dynein did not cosediment with microtubules in the absence of ATP. Thus, this subunit, while capable of generating motility, lacks both structural and rigor-type microtubule binding.
机译:我们使用体外易位和共沉淀试验来研究海胆精子外臂动力蛋白及其β/ IC1亚基的微管结合特性。微管在玻璃吸收的海胆动力蛋白上滑行一段时间,该时间与初始MgATP2-浓度成正比,然后在70-95%的MgATP2-水解时脱离。分离是由MgATP2-消耗引起的,因为(a)用含有MgATP2-的新鲜缓冲液灌注重建了结合和滑动,(b)微管在ATP浓度为ATP的再生系统中滑动了几分钟,仅支持滑动1-2分钟, (c)通过ATP去除系统使ATP完全水解后分离的微管。 ATP水解产物拮抗结合和滑动; ADP / Pi比ATP低三倍,导致微管结合和β/ IC1亚基易位完全丧失。与海胆动力蛋白的情况相反,当MgATP2-耗尽时,微管停止滑动,但仍与玻璃吸收的四膜虫外臂动力蛋白结合。沉淀分析表明,四膜虫外臂动力蛋白以ATP敏感的方式沉淀在微管上(如先前报道(Porter,M.E.和K. A. Johnson。J. Biol。Chem。258:6575-6581)。但是,在没有ATP的情况下,海胆动力蛋白的beta / IC1亚基不会与微管形成共沉淀。因此,该亚基虽然能够产生运动性,但缺乏结构和严格类型的微管结合。

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  • 年度 1992
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