评估运动酶和微管动力学对有丝分裂染色体运动的贡献。

IF 11.4 1区 生物学 Q1 CELL BIOLOGY
J Richard McIntosh
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引用次数: 15

摘要

在我与Keith Porter的研究生工作中,我对有丝分裂纺锤体着迷,这一兴趣激发了我此后的许多科学工作。我开始用电子显微镜研究纺锤体,这种仪器对我们理解纺锤体的组织有重大贡献。这些仪器有助于阐明纺锤体微管的分布,它们之间的相互作用,它们的分子极性,以及它们与着丝点和纺锤体极点的联系。我们的实验室还研究了纺锤体生理的一些过程:微管动力学,微管相关蛋白(包括运动酶)的作用,由特定纺锤体成分产生的力的特征,以及控制有丝分裂进程的因素。在这里,我就这段思想史和最近的发现对染色体运动机制的启示给出个人观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the Contributions of Motor Enzymes and Microtubule Dynamics to Mitotic Chromosome Motions.

During my graduate work with Keith Porter, I became fascinated by the mitotic spindle, an interest that has motivated much of my scientific work ever since. I began spindle studies by using electron microscopes, instruments that have made significant contributions to our understanding of spindle organization. Such instruments have helped to elucidate the distributions of spindle microtubules, the interactions among them, their molecular polarity, and their associations with both kinetochores and spindle poles. Our lab has also investigated some processes of spindle physiology: microtubule dynamics, the actions of microtubule-associated proteins (including motor enzymes), the character of forces generated by specific spindle components, and factors that control mitotic progression. Here, I give a personal perspective on some of this intellectual history and on what recent discoveries imply about the mechanisms of chromosome motion.

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来源期刊
CiteScore
19.50
自引率
0.00%
发文量
21
期刊介绍: The Annual Review of Cell and Developmental Biology, established in 1985, comprehensively addresses major advancements in cell and developmental biology. Encompassing the structure, function, and organization of cells, as well as the development and evolution of cells in relation to both single and multicellular organisms, the journal explores models and tools of molecular biology. As of the current volume, the journal has transitioned from gated to open access through Annual Reviews' Subscribe to Open program, making all articles published under a CC BY license.
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