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耐热酵母马克斯克鲁维酵母中的着丝粒介导与单个微管的附着。

Centromeres in the thermotolerant yeast K. marxianus mediate attachment to a single microtubule.

作者信息

Barrero Daniel J, Hedouin Sabrine, Mao Yizi, Asbury Charles L, Stergachis Andrew, O'Toole Eileen, Biggins Sue

机构信息

Howard Hughes Medical Institute, Fred Hutchinson Cancer Center.

University of Washington.

出版信息

Res Sq. 2025 Apr 23:rs.3.rs-6173630. doi: 10.21203/rs.3.rs-6173630/v1.

Abstract

Eukaryotic chromosome segregation requires spindle microtubules to attach to chromosomes through kinetochores. The chromosomal locus that mediates kinetochore assembly is the centromere and is epigenetically specified in most organisms by a centromeric histone H3 variant called CENP-A. An exception to this is budding yeast which have short, sequenced-defined point centromeres. In , a single CENP-A nucleosome is formed at the centromere and is sufficient for kinetochore assembly. The thermophilic budding yeast also has a point centromere but its length is nearly double the centromere and the number of centromeric nucleosomes and kinetochore attachment sites is unknown. Purification of native kinetochores from yielded a mixed population, with one subpopulation that appeared to consist of doublets, making it unclear whether shares the same attachment architecture as Here, we demonstrate that though the doublet kinetochores have a functional impact on kinetochore strength, kinetochore localization throughout the cell cycle appears conserved between these two yeasts. In addition, whole spindle electron tomography demonstrates that a single microtubule binds to each chromosome. Single-molecule nucleosome mapping analysis suggests the presence of a single centromeric nucleosome. Taken together, we propose that the point centromere assembles a single centromeric nucleosome that mediates attachment to one microtubule.

摘要

真核生物染色体分离需要纺锤体微管通过动粒附着到染色体上。介导动粒组装的染色体位点是着丝粒,在大多数生物体中,着丝粒是由一种名为CENP - A的着丝粒组蛋白H3变体通过表观遗传方式指定的。芽殖酵母是一个例外,它具有短的、序列定义的点着丝粒。在[具体物种1]中,在着丝粒处形成单个CENP - A核小体,这对于动粒组装就足够了。嗜热芽殖酵母[具体物种2]也有一个点着丝粒,但其长度几乎是[具体物种1]着丝粒的两倍,着丝粒核小体和动粒附着位点的数量未知。从[具体物种2]中纯化天然动粒得到了一个混合群体,其中一个亚群体似乎由双联体组成,这使得不清楚[具体物种2]是否与[具体物种1]具有相同的附着结构。在这里,我们证明,尽管双联体动粒对动粒强度有功能影响,但这两种酵母在整个细胞周期中的动粒定位似乎是保守的。此外,全纺锤体电子断层扫描显示单个微管与每条染色体结合。单分子核小体图谱分析表明存在单个着丝粒核小体。综上所述,我们提出[具体物种2]的点着丝粒组装单个着丝粒核小体,该核小体介导与一个微管的附着。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7410/12045370/f395a2db7d09/nihpp-rs6173630v1-f0001.jpg

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