首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Methyllysine Reader Plant Homeodomain (PHD) Finger Protein 20-like 1 (PHF20L1) Antagonizes DNA (Cytosine-5) Methyltransferase 1 (DNMT1) Proteasomal Degradation
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Methyllysine Reader Plant Homeodomain (PHD) Finger Protein 20-like 1 (PHF20L1) Antagonizes DNA (Cytosine-5) Methyltransferase 1 (DNMT1) Proteasomal Degradation

机译:甲基赖氨酸阅读器植物同源域(PHD)手指蛋白20样1(PHF20L1)拮抗DNA(胞嘧啶5)甲基转移酶1(DNMT1)蛋白酶体降解

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摘要

Inheritance of DNA cytosine methylation pattern during successive cell division is mediated by maintenance DNA (cytosine-5) methyltransferase 1 (DNMT1). Lysine 142 of DNMT1 is methylated by the SET domain containing lysine methyltransferase 7 (SET7), leading to its degradation by proteasome. Here we show that PHD finger protein 20-like 1 (PHF20L1) regulates DNMT1 turnover in mammalian cells. Malignant brain tumor (MBT) domain of PHF20L1 binds to monomethylated lysine 142 on DNMT1 (DNMT1K142me1) and colocalizes at the perinucleolar space in a SET7-dependent manner. PHF20L1 knockdown by siRNA resulted in decreased amounts of DNMT1 on chromatin. Ubiquitination of DNMT1K142me1 was abolished by overexpression of PHF20L1, suggesting that its binding may block proteasomal degradation of DNMT1K142me1. Conversely, siRNA-mediated knockdown of PHF20L1 or incubation of a small molecule MBT domain binding inhibitor in cultured cells accelerated the proteasomal degradation of DNMT1. These results demonstrate that the MBT domain of PHF20L1 reads and controls enzyme levels of methylated DNMT1 in cells, thus representing a novel antagonist of DNMT1 degradation.
机译:连续细胞分裂过程中DNA胞嘧啶甲基化模式的遗传是由维持性DNA(cytosine-5)甲基转移酶1(DNMT1)介导的。 DNMT1的赖氨酸142被含有赖氨酸甲基转移酶7(SET7)的SET结构域甲基化,导致其被蛋白酶体降解。在这里,我们显示PHD手指蛋白20样1(PHF20L1)调节哺乳动物细胞中DNMT1的转换。 PHF20L1的恶性脑肿瘤(MBT)域与DNMT1(DNMT1K142me1)上的单甲基化赖氨酸142结合,并以SET7依赖性方式共定位在核仁周围。 siRNA抑制PHF20L1导致染色质上DNMT1的量减少。 PHF20L1的过表达消除了DNMT1K142me1的泛素化,表明其结合可能阻止DNMT1K142me1的蛋白酶体降解。相反,siRNA介导的PHF20L1的敲低或小分子MBT域结合抑制剂在培养细胞中的孵育加速了DNMT1的蛋白酶降解。这些结果表明PHF20L1的MBT域读取并控制细胞中甲基化DNMT1的酶水平,因此代表了DNMT1降解的新型拮抗剂。

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