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20S 蛋白酶体激活剂 PA28γ 控制染色质的紧缩。

The 20S proteasome activator PA28γ controls the compaction of chromatin.

机构信息

Centre de Recherche de Biologie cellulaire de Montpellier (CRBM), Université de Montpellier, CNRS, 34293 Montpellier, France.

Institut de Génétique Moléculaire de Montpellier (IGMM), Université de Montpellier, CNRS, 34293 Montpellier, France.

出版信息

J Cell Sci. 2021 Feb 1;134(3):jcs257717. doi: 10.1242/jcs.257717.

Abstract

PA28γ (also known as PSME3), a nuclear activator of the 20S proteasome, is involved in the degradation of several proteins regulating cell growth and proliferation and in the dynamics of various nuclear bodies, but its precise cellular functions remain unclear. Here, using a quantitative FLIM-FRET based microscopy assay monitoring close proximity between nucleosomes in living human cells, we show that PA28γ controls chromatin compaction. We find that its depletion induces a decompaction of pericentromeric heterochromatin, which is similar to what is observed upon the knockdown of HP1β (also known as CBX1), a key factor of the heterochromatin structure. We show that PA28γ is present at HP1β-containing repetitive DNA sequences abundant in heterochromatin and, importantly, that HP1β on its own is unable to drive chromatin compaction without the presence of PA28γ. At the molecular level, we show that this novel function of PA28γ is independent of its stable interaction with the 20S proteasome, and most likely depends on its ability to maintain appropriate levels of H3K9me3 and H4K20me3, histone modifications that are involved in heterochromatin formation. Overall, our results implicate PA28γ as a key factor involved in the regulation of the higher order structure of chromatin.

摘要

PA28γ(也称为 PSME3)是 20S 蛋白酶体的核激活剂,参与调节细胞生长和增殖的几种蛋白质的降解以及各种核体的动态,但它的确切细胞功能仍不清楚。在这里,我们使用基于定量 FLIM-FRET 的显微镜检测方法,监测活人体细胞中核小体之间的近距离,结果表明 PA28γ 控制染色质的紧缩。我们发现其耗竭会诱导着丝粒周围异染色质的解紧缩,这与 HP1β(也称为 CBX1)的敲低观察到的结果相似,HP1β 是异染色质结构的关键因素。我们发现 PA28γ 存在于富含异染色质的 HP1β 所含的重复 DNA 序列中,重要的是,没有 PA28γ 的存在,HP1β 本身无法驱动染色质紧缩。在分子水平上,我们表明 PA28γ 的这种新功能与其与 20S 蛋白酶体的稳定相互作用无关,很可能依赖于其维持 H3K9me3 和 H4K20me3 适当水平的能力,这些组蛋白修饰参与异染色质形成。总的来说,我们的结果表明 PA28γ 是参与调节染色质高级结构的关键因素。

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