Sun Xiaoming, Bizhanova Aizhan, Matheson Timothy D, Yu Jun, Zhu Lihua Julie, Kaufman Paul D
Department of Molecular, Cell and Cancer Biology, University of Massachusetts Medical School, Worcester, Massachusetts, USA.
Program in Bioinformatics and Integrative Biology, University of Massachusetts Medical School, Worcester, Massachusetts, USA.
Mol Cell Biol. 2017 Aug 11;37(17). doi: 10.1128/MCB.00569-16. Print 2017 Sep 1.
The Ki-67 protein is widely used as a tumor proliferation marker. However, whether Ki-67 affects cell cycle progression has been controversial. Here we demonstrate that depletion of Ki-67 in human hTERT-RPE1, WI-38, IMR90, and hTERT-BJ cell lines and primary fibroblast cells slowed entry into S phase and coordinately downregulated genes related to DNA replication. Some gene expression changes were partially relieved in Ki-67-depleted hTERT-RPE1 cells by codepletion of the Rb checkpoint protein, but more thorough suppression of the transcriptional and cell cycle defects was observed upon depletion of the cell cycle inhibitor p21. Notably, induction of p21 upon depletion of Ki-67 was a consistent hallmark of cell types in which transcription and cell cycle distribution were sensitive to Ki-67; these responses were absent in cells that did not induce p21. Furthermore, upon Ki-67 depletion, a subset of inactive X (Xi) chromosomes in female hTERT-RPE1 cells displayed several features of compromised heterochromatin maintenance, including decreased H3K27me3 and H4K20me1 labeling. These chromatin alterations were limited to Xi chromosomes localized away from the nuclear lamina and were not observed in checkpoint-deficient 293T cells. Altogether, our results indicate that Ki-67 integrates normal S-phase progression and Xi heterochromatin maintenance in p21 checkpoint-proficient human cells.
Ki-67蛋白被广泛用作肿瘤增殖标志物。然而,Ki-67是否影响细胞周期进程一直存在争议。在此,我们证明,在人hTERT-RPE1、WI-38、IMR90和hTERT-BJ细胞系以及原代成纤维细胞中敲除Ki-67会减缓进入S期的速度,并协同下调与DNA复制相关的基因。在敲除Ki-67的hTERT-RPE1细胞中,通过共敲除Rb检查点蛋白,一些基因表达变化得到部分缓解,但在敲除细胞周期抑制剂p21后,观察到转录和细胞周期缺陷受到更彻底的抑制。值得注意的是,敲除Ki-67后诱导p21是转录和细胞周期分布对Ki-67敏感的细胞类型的一个一致特征;在未诱导p21的细胞中没有这些反应。此外,敲除Ki-67后,雌性hTERT-RPE1细胞中一部分失活的X(Xi)染色体表现出异染色质维持受损的几个特征,包括H3K27me3和H4K20me1标记减少。这些染色质改变仅限于远离核纤层定位的Xi染色体,在检查点缺陷的293T细胞中未观察到。总之,我们的结果表明,在p21检查点功能正常的人类细胞中,Ki-67整合了正常的S期进程和Xi异染色质维持。