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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Demethylation of RB regulator MYPT1 by histone demethylase LSD1 promotes cell cycle progression in cancer cells.
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Demethylation of RB regulator MYPT1 by histone demethylase LSD1 promotes cell cycle progression in cancer cells.

机译:组蛋白脱甲基酶LSD1对RB调节剂MYPT1的脱甲基作用促进了癌细胞的细胞周期进程。

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Histone demethylase LSD1 (also known as KDM1 and AOF2) is active in various cancer cells, but its biological significance in human carcinogenesis is unexplored. In this study, we explored hypothesized interactions between LSD1 and MYPT1, a known regulator of RB1 phosphorylation. We found that MYPT1 was methylated in vitro and in vivo by histone lysine methyltransferase SETD7 and demethylated by LSD1, identifying Lys 442 of MYPT1 as a target for methylation/demethylation by these enzymes. LSD1 silencing increased MYPT1 protein levels, decreasing the steady state level of phosphorylated RB1 (Ser 807/811) and reducing E2F activity. MYPT1 methylation status influenced the affinity of MYPT1 for the ubiquitin-proteasome pathway of protein turnover. MYPT1 was unstable in murine cells deficient in SETD7, supporting the concept that MYPT1 protein stability is physiologically regulated by methylation status. LSD1 overexpression could activate RB1 phosphorylation by inducing a destabilization of MYPT1 protein. Taken together, our results comprise a novel cell cycle regulatory mechanism mediated by methylation/demethylation dynamics, and they reveal the significance of LSD1 overexpression in human carcinogenesis.
机译:组蛋白脱甲基酶LSD1(也称为KDM1和AOF2)在各种癌细胞中都有活性,但其在人类致癌作用中的生物学意义尚待探索。在这项研究中,我们探讨了LSD1和MYPT1(RB1磷酸化的已知调节剂)之间的假设相互作用。我们发现,MYPT1在体外和体内被组蛋白赖氨酸甲基转移酶SETD7甲基化,并被LSD1脱甲基,从而确定MYPT1的Lys 442是这些酶甲基化/脱甲基化的靶标。 LSD1沉默增加MYPT1蛋白水平,降低磷酸化RB1的稳态水平(Ser 807/811),并降低E2F活性。 MYPT1甲基化状态影响MYPT1对蛋白质更新的泛素-蛋白酶体途径的亲和力。 MYPT1在缺乏SETD7的鼠细胞中不稳定,支持了MYPT1蛋白稳定性在生理上受甲基化状态调节的概念。 LSD1过表达可通过诱导MYPT1蛋白失稳来激活RB1磷酸化。综上所述,我们的结果包括由甲基化/去甲基化动力学介导的新型细胞周期调控机制,并且它们揭示了LSD1过表达在人类致癌中的重要性。

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