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首页> 外文期刊>Journal of cellular biochemistry. >S6 kinase 2 is bound to chromatin-nuclear matrix cellular fractions and is able to phosphorylate histone H3 at threonine 45 in vitro and in vivo.
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S6 kinase 2 is bound to chromatin-nuclear matrix cellular fractions and is able to phosphorylate histone H3 at threonine 45 in vitro and in vivo.

机译:S6激酶2与染色质-核基质细胞部分结合,并能够在体外和体内将苏氨酸45上的组蛋白H3磷酸化。

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摘要

The activity of S6 kinases (S6K) is highly induced in cancer cells highlighting an essential role in carcinogenesis. The S6K family has two members: S6K1 and S6K2 which bear common as well as distinct features. In an attempt to identify S6K2 unique sequence features compared to S6K1, we applied extensive bioinformatic analysis and motif search approaches. Interestingly, we identified 14 unique protein signatures which are present in proteins directly connected to chromatin and/or involved in transcription regulation. Using chromatin binding assay, we biochemically showed that S6K2 is bound to chromatin as well as nuclear matrix cellular fractions in HEK293 cells. The presence of S6K2 in chromatin fractions raised the possibility that it may be in close proximity to a number of chromatin substrates. For that, we then searched for S6K phosphorylation consensus sites RXRXXT/S in mammalian proteins using the SWISS-PROT database. Interestingly, we identified some potential phosphorylation sites in histone H3 (Thr45). Using in vitro kinase assays and siRNA-based knockdown strategy; we confirmed that S6K2 but not S6K1 or AKT is essential for histone H3-Thr45 phosphorylation in HEK293 cells. Furthermore, we show that the nuclear localisation sequence in the S6K2 C-terminus is essential for this modification. We have found that, H3-Thr45 phosphorylation correlates to S6K activation in response to mitogens and TPA-induced cell differentiation of leukaemic cell lines U937, HL60 and THP1. Overall, we demonstrate that S6K2 is a novel kinase that can phosphorylate histone H3 at position Thr45, which may play a role during cell proliferation and/or differentiation.
机译:S6激酶(S6K)的活性在癌细胞中被高度诱导,突出了其在致癌作用中的重要作用。 S6K系列具有两个成员:S6K1和S6K2,它们具有共同的特征和不同的特征。为了确定与S6K1相比S6K2独特的序列特征,我们应用了广泛的生物信息学分析和基序搜索方法。有趣的是,我们鉴定了14个独特的蛋白质标记,它们存在于直接与染色质连接和/或参与转录调控的蛋白质中。使用染色质结合测定,我们生化显示S6K2与HEK293细胞中的染色质以及核基质细胞级分结合。染色质级分中存在S6K2,这增加了它可能紧邻许多染色质底物的可能性。为此,我们随后使用SWISS-PROT数据库在哺乳动物蛋白中搜索了S6K磷酸化共有位点RXRXXT / S。有趣的是,我们在组蛋白H3(Thr45)中发现了一些潜在的磷酸化位点。使用体外激酶测定法和基于siRNA的敲低策略;我们证实,S6K2而非S6K1或AKT对于HEK293细胞中组蛋白H3-Thr45磷酸化至关重要。此外,我们表明S6K2 C端的核定位序列对于此修饰至关重要。我们已经发现,H3-Thr45磷酸化与有丝分裂原和TPA诱导的白血病细胞系U937,HL60和THP1的有丝分裂原和TPA诱导的细胞分化相关。总体而言,我们证明S6K2是一种新型激酶,可以在Thr45位置磷酸化组蛋白H3,这可能在细胞增殖和/或分化过程中起作用。

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