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DNA Damage Changes Distribution Pattern and Levels of HP1 Protein Isoforms in the Nucleolus and Increases Phosphorylation of HP1β-Ser88

机译:DNA损伤改变核仁中HP1蛋白同种型的分布模式和水平,增加了HP1β-SER88的磷酸化

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The family of heterochromatin protein 1 (HP1) isoforms is essential for chromatin packaging, regulation of gene expression, and repair of damaged DNA. Here we document that γ-radiation reduced the number of HP1α-positive foci, but not HP1β and HP1γ foci, located in the vicinity of the fibrillarin-positive region of the nucleolus. The additional analysis confirmed that γ-radiation has the ability to significantly decrease the level of HP1α in rDNA promoter and rDNA encoding 28S rRNA. By mass spectrometry, we showed that treatment by γ-rays enhanced the HP1β serine 88 phosphorylation (S88ph), but other analyzed modifications of HP1β, including S161ph/Y163ph, S171ph, and S174ph, were not changed in cells exposed to γ-rays or treated by the HDAC inhibitor (HDACi). Interestingly, a combination of HDACi and γ-radiation increased the level of HP1α and HP1γ. The level of HP1β remained identical before and after the HDACi/γ-rays treatment, but HDACi strengthened HP1β interaction with the KRAB-associated protein 1 (KAP1) protein. Conversely, HP1γ did not interact with KAP1, although approximately 40% of HP1γ foci co-localized with accumulated KAP1. Especially HP1γ foci at the periphery of nucleoli were mostly absent of KAP1. Together, DNA damage changed the morphology, levels, and interaction properties of HP1 isoforms. Also, γ-irradiation-induced hyperphosphorylation of the HP1β protein; thus, HP1β-S88ph could be considered as an important marker of DNA damage.
机译:异铬胺蛋白1(HP1)同种型的家族对于染色质包装,基因表达调节和受损DNA的修复是必不可少的。在这里,我们记载了γ-辐射降低了HP1α阳性焦点的数量,而不是HP1β和HP1γCoci,位于核仁的纤维素阳性区域附近。额外的分析证实γ-辐射能够显着降低RDNA启动子和编码28s rRNA的RDNA中HP1α的水平。通过质谱,我们表明,通过γ射线的处理增强了HP1β丝氨酸88磷酸化(S88ph),但在暴露于γ射线的细胞中,没有改变其他分析的HP1β的分析修饰,包括S161ph / Y163ph,S171ph和S174ph。 HDAC抑制剂(HDACI)治疗。有趣的是,HDACI和γ-辐射的组合增加了HP1α和HP1γ的水平。在HDACI /γ射线处理之前和之后,HP1β的水平保持相同,但HDACI强化了与Krab相关蛋白1(KAP1)蛋白质的HP1β相互作用。相反,HP1γ没有与KAP1相互作用,尽管大约40%的HP1γCoci与累积的KAP1共同定位。特别是核仁周边的HP1γ焦点主要是kap1。一起,DNA损伤改变了HP1同种型的形态,水平和相互作用性质。此外,γ-辐照诱导的HP1β蛋白的高磷酸化;因此,HP1β-S88PH可以被认为是DNA损伤的重要标志物。

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