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来自具有独特动粒的物种的进化启示。

Evolutionary Lessons from Species with Unique Kinetochores.

作者信息

Drinnenberg Ines A, Akiyoshi Bungo

机构信息

Institut Curie, Paris Sciences et Lettres Research university, Centre de la Recherche Scientifique UMR 3664, 75005, Paris, France.

Department of Biochemistry, University of Oxford, Oxford, UK.

出版信息

Prog Mol Subcell Biol. 2017;56:111-138. doi: 10.1007/978-3-319-58592-5_5.

Abstract

The kinetochore is the multi-protein complex that drives chromosome segregation in eukaryotes. It assembles onto centromeric DNA and mediates attachment to spindle microtubules. Kinetochore research over the last several decades has been focused on a few animal and fungal model organisms, which revealed a detailed understanding of the composition and organization of their kinetochores. Yet, these traditional model organisms represent only a small fraction of all eukaryotes. To gain insights into the actual degree of kinetochore diversity, it is critical to extend these studies to nontraditional model organisms from evolutionarily distant lineages. In this chapter, we review the current knowledge of kinetochores across diverse eukaryotes with an emphasis on variations that arose in nontraditional model organisms. In addition, we also review the literature on species, in which the subcellular localization of kinetochores has changed from the nucleoplasm to the nuclear membrane. Finally, we speculate on the organization of the chromosome segregation machinery in an early eukaryotic ancestor to gain insights into fundamental principles of the chromosome segregation machinery, which are common to all eukaryotes.

摘要

动粒是驱动真核生物染色体分离的多蛋白复合体。它组装在着丝粒DNA上,并介导与纺锤体微管的附着。过去几十年里,动粒研究主要集中在少数动物和真菌模式生物上,这使人们对其动粒的组成和组织有了详细了解。然而,这些传统模式生物仅代表了所有真核生物中的一小部分。为了深入了解动粒多样性的实际程度,将这些研究扩展到进化关系较远谱系的非传统模式生物至关重要。在本章中,我们综述了不同真核生物中动粒的现有知识,重点关注非传统模式生物中出现的变异。此外,我们还综述了有关动粒亚细胞定位从核质转移到核膜的物种的文献。最后,我们推测早期真核生物祖先中染色体分离机制的组织形式,以深入了解所有真核生物共有的染色体分离机制的基本原理。

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