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Mechanistic Analysis Of Microtubule Based Motors

Mechanistic Analysis Of Microtubule Based Motors
基于微管的电机的机械分析
批准号:
6519738
负责人:
SUSAN P. GILBERT
金额:
$24.42万
依托单位国家:
美国
项目类别:
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-05-01 至 2005-04-30

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中文摘要
翻译
我们的长期目标是为生物马达的力量生产建立结构和机械基础。这项提议的具体目的是建立EG5和Kar3 ATPase产生力量的动力学和热力学基础,并与NCD和传统的动蛋白进行直接比较。这四种都是Kinesin超家族分子马达,它们使用ATP来驱动基于微管的单向运动。NCD、EG5和Kar3都参与了减数分裂和/或有丝分裂过程中的纺锤体动力学,因此是染色体正确分离所必需的。相反,动蛋白是一种驱动膜性细胞器运动的神经元马达。激动素的运动性是独特的,因为它的过程性。NCD、Kar3和EG5被认为不是进行性的,它们的运动速度明显慢于Kinesin促进的运动。NCD和Kar3都促进负端定向微管运动,而Kinesin和EG5促进正端定向运动。此外,作为单体的Kar3表现出单向运动。由于Kar3是单体,可以产生单向运动,因此Kar3是一个有趣的运动,可以直接与二聚体运动蛋白--kinesin、EG5、NCD进行比较。我们对NCD和Kinesin的结果表明,二聚体的两个运动域都是运动所必需的。EG5也是二聚体,但迄今的证据表明它不是过程的。作为一种主轴电机,尽管NCD的运动方向是微管的负端,但其机制可能更类似于NCD。我们对EG5与NCD和Kinesin的直接比较研究将确定加工能力所特需的机械特征,这些特征可能不同于驱动正端定向运动的特征。这些实验将评估主轴电机的共同机械特性,同时解决与单体电机相比的二聚体电机的能量传递的具体问题。对这4种分子马达进行全面的动力学和热力学分析将提供严格和直接的信息,以便开始了解细胞周期中发生的各种运动的结构和机械要求,在细胞周期中,基因改变可能导致出生缺陷和癌症等疾病。
英文摘要
Our long term goal is to establish the structural and mechanistic basis for force production by biological motors. The specific aims of this proposal are to establish the kinetic and thermodynamic basis of force generation of the Eg5 and Kar3 ATPases in direct comparison to Ncd and conventional kinesin. All four are kinesin superfamily molecular motors that use ATP to drive unidirectional microtubule-based movements. Ncd, Eg5, and Kar3 are all involved in spindle dynamics during meiosis and/or mitosis and therefore are required for proper chromosome segregation. In contrast, kinesin is a neuronal motor that drives movements of membranous organelles. Kinesin's motility is distinctive because of its processivity. Ncd, Kar3, and Eg5 are believed not to be processive, and their motility is significantly slower than that promoted by kinesin. Both Ncd and Kar3 promote minus-end directed microtubule movements, yet kinesin and Eg5 promote plus-end directed movements. Furthermore, Kar3 as a monomer exhibits unidirectional movement. Because Kar3 is monomeric and can generate unidirectional movement, Kar3 is an interesting motor to study in direct comparison to the dimeric kinesins-- kinesin, Eg5, Ncd. Our results with Ncd and kinesin indicate that both motor domains of the dimer are required for movement. Eg5 is also dimeric, yet evidence to date indicates it is not processive. As a spindle motor, its mechanism may be more similar to Ncd's even though Ncd motility is directed to the minus-end of microtubules. Our studies with Eg5 in direct comparison to Ncd and kinesin will define the mechanistic features required specifically for processivity that may be distinct from those features that drive plus-end directed movements. The experiments will evaluate the mechanistic features that spindle motors have in common, and at the same time address specific questions about energy transduction for dimeric motors in comparison to monomeric motors. A comprehensive kinetic and thermodynamic analysis of these 4 molecular motors will provide rigorous and direct information to begin to understand the structural and mechanistic requirements for the diverse movements occurring during the cell cycle where genetic alteration can result in birth defects and diseases such as cancer.
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Mechanistic Analysis of Microtubule Based Motors
  • 批准号:
    7912055
  • 项目类别:
  • 资助金额:
    $11.4万
  • 财政年份:
    2009
  • 负责人:
    SUSAN P. GILBERT
  • 依托单位:
Biology of Mitotic Motors-A Nanomedicine Consortium(RMI)
Mechanistic Analysis of Microtubule-Based Motors
Mechanistic Analysis of Microtubule-Based Motors
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