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眼见为实:RB 对核组织的影响。

Seeing is believing: the impact of RB on nuclear organization.

机构信息

Massachusetts General Hospital Cancer Center and Harvard Medical School, Charlestown, MA, USA.

Whitehead Institute for Biomedical Research, Cambridge, MA, USA.

出版信息

Cell Cycle. 2023 Jun;22(11):1357-1366. doi: 10.1080/15384101.2023.2206352. Epub 2023 May 3.

Abstract

The retinoblastoma tumor suppressor (RB) prevents G1 to S cell cycle transition by inhibiting E2F activity. This function requires that RB remains un- or underphosphorylated (the so-called active forms of RB). Recently, we showed that active forms of RB cause widespread changes in nuclear architecture that are visible under a microscope. These phenotypes did not correlate with cell cycle arrest or repression of the E2F transcriptional program, but appeared later, and were associated with the appearance of autophagy or in IMR-90 cells with senescence markers. In this perspective, we describe the relative timing of these RB-induced events and discuss the mechanisms that may underlie RB-induced chromatin dispersion. We consider the relationship between RB-induced dispersion, autophagy, and senescence and the potential connection between dispersion and cell cycle exit.

摘要

视网膜母细胞瘤肿瘤抑制因子 (RB) 通过抑制 E2F 活性来阻止 G1 期到 S 期的细胞周期转换。这一功能要求 RB 保持非磷酸化或低磷酸化状态(即 RB 的所谓活性形式)。最近,我们发现 RB 的活性形式会引起细胞核结构的广泛变化,在显微镜下可见。这些表型与细胞周期停滞或 E2F 转录程序的抑制无关,但出现在后期,并与自噬的出现或 IMR-90 细胞中衰老标志物的出现相关。在本观点中,我们描述了这些 RB 诱导事件的相对时间,并讨论了可能导致 RB 诱导染色质分散的机制。我们考虑了 RB 诱导的分散、自噬和衰老之间的关系,以及分散与细胞周期退出之间的潜在联系。

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