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着丝粒蛋白B框作为人类染色体着丝粒中动粒锚定物的分析

Analysis of CENP-B Boxes as Anchor of Kinetochores in Centromeres of Human Chromosomes.

作者信息

Parl Fritz F

机构信息

Department of Pathology, Microbiology, and Immunology, Vanderbilt University Medical Center, Nashville, TN, USA.

出版信息

Bioinform Biol Insights. 2024 Apr 29;18:11779322241248913. doi: 10.1177/11779322241248913. eCollection 2024.

Abstract

The kinetochore is a multiprotein structure that attaches at one end to DNA in the centromere and at the other end to microtubules in the mitotic spindle. By connecting centromere and spindle, the kinetochore controls the migration of chromosomes during cell division. The exact position where the kinetochore assembles on each centromere was uncertain because large sections of centromeric DNA had not been sequenced due to highly repetitive alpha-satellite arrays. Embedded in the arrays is a 17 bp consensus sequence, the so-called CENP-B box, which binds the CENP-B protein, the only protein that binds directly to centromeric DNA. Recently, the Telomere-to-Telomere Consortium published the complete centromeric DNA sequences of all chromosomes including their epigenetic modifications in the T2T-CHM13 map. I used data from the T2T-CHM13 map to locate the CENP-B boxes in the centromeres as anchor of kinetochores. Most of the CENP-B boxes in centromeric DNA are methylated with the exception of the so-called centromere dip region (CDR), where CENP-B protein dimers bind to adjacent unmethylated CENP-B boxes and interact with CENP-A and CENP-C proteins to assemble the kinetochore. The centromeres of all chromosomes combined have a size of 407 Mb of which the kinetochores account for 5.0 Mb or 1.2%. There is no correlation between centromere and kinetochore size ( = .77). While the number of CENP-B boxes varies 4-fold between chromosomes, their density (number/Kb) varies less than 2-fold with a mean of 2.61 ± 0.33. The narrow range ensures a uniform pull of the spindle on the centromeres. I illustrate the findings in a model of the human kinetochore anchored at unmethylated CENP-B boxes in the CDR and present circos plots of chromosomes to show the location of kinetochores in their respective centromeres.

摘要

动粒是一种多蛋白结构,一端附着于着丝粒中的DNA,另一端附着于有丝分裂纺锤体中的微管。通过连接着丝粒和纺锤体,动粒在细胞分裂过程中控制染色体的迁移。由于高度重复的α卫星阵列,着丝粒DNA的大部分区域尚未测序,因此动粒在每个着丝粒上组装的确切位置尚不确定。阵列中嵌入了一个17bp的共有序列,即所谓的CENP - B框,它与CENP - B蛋白结合,CENP - B蛋白是唯一直接与着丝粒DNA结合的蛋白。最近,端粒到端粒联盟在T2T - CHM13图谱中公布了所有染色体的完整着丝粒DNA序列及其表观遗传修饰。我利用T2T - CHM13图谱中的数据,将着丝粒中的CENP - B框定位为动粒的锚点。着丝粒DNA中的大多数CENP - B框都被甲基化,除了所谓的着丝粒双区域(CDR),在该区域CENP - B蛋白二聚体与相邻的未甲基化CENP - B框结合,并与CENP - A和CENP - C蛋白相互作用以组装动粒。所有染色体的着丝粒合起来大小为407 Mb,其中动粒占5.0 Mb或1.2%。着丝粒和动粒大小之间没有相关性(= 0.77)。虽然染色体之间CENP - B框的数量变化4倍,但其密度(数量/千碱基)变化小于2倍,平均值为2.61±0.33。这个狭窄的范围确保了纺锤体对着丝粒的均匀拉动。我在一个锚定在CDR中未甲基化CENP - B框上的人类动粒模型中展示了这些发现,并展示了染色体的环形图,以显示动粒在其各自着丝粒中的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c31/11060027/6913c030ec0d/10.1177_11779322241248913-fig1.jpg

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