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The MuvB complex binds and stabilizes nucleosomes downstream of the transcription start site of cell-cycle dependent genes.MuvB 复合物结合并稳定细胞周期依赖性基因转录起始位点下游的核小体。
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MMB-FOXM1-driven premature mitosis is required for CHK1 inhibitor sensitivity.MMB-FOXM1 驱动的过早有丝分裂是 CHK1 抑制剂敏感性所必需的。
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A quantitative and semiautomated method for determining misaligned and lagging chromosomes during mitosis.一种用于确定有丝分裂过程中染色体未对齐和滞后的定量和半自动方法。
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Chromosome segregation errors generate a diverse spectrum of simple and complex genomic rearrangements.染色体分离错误会产生一系列不同的简单和复杂基因组重排。
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The Multifaceted Role of Chromosomal Instability in Cancer and Its Microenvironment.染色体不稳定性在癌症及其微环境中的多方面作用。
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CENP-F 对 FOXM1 介导的着丝粒和动粒转录调控的失调的贡献。

Contribution of CENP-F to FOXM1-Mediated Discordant Centromere and Kinetochore Transcriptional Regulation.

机构信息

Department of Biochemistry and Molecular Genetics, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA.

Simpson Querrey Institute for Epigenetics, Northwestern University Feinberg School of Medicine, Chicago, Illinois, USA.

出版信息

Mol Cell Biol. 2024;44(6):209-225. doi: 10.1080/10985549.2024.2350543. Epub 2024 May 23.

DOI:10.1080/10985549.2024.2350543
PMID:38779933
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11204039/
Abstract

Proper chromosome segregation is required to ensure chromosomal stability. The centromere (CEN) is a unique chromatin domain defined by CENP-A and is responsible for recruiting the kinetochore (KT) during mitosis, ultimately regulating microtubule spindle attachment and mitotic checkpoint function. Upregulation of many CEN/KT genes is commonly observed in cancer. Here, we show that although FOXM1 occupies promoters of many CEN/KT genes with MYBL2, FOXM1 overexpression alone is insufficient to drive the FOXM1-correlated transcriptional program. CENP-F is canonically an outer kinetochore component; however, it functions with FOXM1 to coregulate G2/M transcription and proper chromosome segregation. Loss of CENP-F results in altered chromatin accessibility at G2/M genes and reduced FOXM1-MBB complex formation. We show that coordinated CENP-FFOXM1 transcriptional regulation is a cancer-specific function. We observe a small subset of CEN/KT genes including CENP-C, that are not regulated by FOXM1. Upregulation of CENP-C in the context of CENP-A overexpression leads to increased chromosome missegregation and cell death suggesting that escape of CENP-C from FOXM1 regulation is a cancer survival mechanism. Together, we show that FOXM1 and CENP-F coordinately regulate G2/M genes, and this coordination is specific to a subset of genes to allow for maintenance of chromosome instability levels and subsequent cell survival.

摘要

正确的染色体分离是确保染色体稳定性所必需的。着丝粒(CEN)是一个独特的染色质结构域,由 CENP-A 定义,负责在有丝分裂过程中招募动粒(KT),最终调节微管纺锤体附着和有丝分裂检查点功能。许多 CEN/KT 基因的上调在癌症中很常见。在这里,我们表明,尽管 FOXM1 与 MYBL2 一起占据许多 CEN/KT 基因的启动子,但 FOXM1 的过表达本身不足以驱动与 FOXM1 相关的转录程序。CENP-F 通常是外动粒成分;然而,它与 FOXM1 一起发挥作用,共同调节 G2/M 转录和正确的染色体分离。CENP-F 的缺失导致 G2/M 基因的染色质可及性改变和 FOXM1-MBB 复合物形成减少。我们表明,协调的 CENP-FFOXM1 转录调控是一种癌症特异性功能。我们观察到一小部分 CEN/KT 基因,包括 CENP-C,不受 FOXM1 调节。在 CENP-A 过表达的情况下,CENP-C 的上调导致染色体错误分离和细胞死亡增加,这表明 CENP-C 逃避 FOXM1 调节是癌症存活的一种机制。总之,我们表明 FOXM1 和 CENP-F 协调调节 G2/M 基因,这种协调是特定于一组基因的,以维持染色体不稳定水平和随后的细胞存活。