首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The MBT Repeats of L3MBTL1 Link SET8-mediated p53 Methylation at Lysine 382 to Target Gene Repression
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The MBT Repeats of L3MBTL1 Link SET8-mediated p53 Methylation at Lysine 382 to Target Gene Repression

机译:L3MBTL1链接SET8介导的赖氨酸382的p53甲基化的MBT重复到目标基因抑制。

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摘要

The p53 tumor suppressor protein is regulated by multiple post-translational modifications, including lysine methylation. We previously found that monomethylation of p53 at lysine 382 (p53K382me1) by the protein lysine methyltransferase (PKMT) SET8/PR-Set7 represses p53 transactivation of target genes. However, the molecular mechanism linking p53K382 monomethylation to repression is not known. Here we show in biochemical and crystallographic studies the preferential recognition of p53K382me1 by the triple malignant brain tumor (MBT) repeats of the chromatin compaction factor L3MBTL1. We demonstrate that SET8-mediated methylation of p53 at Lys-382 promotes the interaction between L3MBTL1 and p53 in cells, and the chromatin occupancy of L3MBTL1 at p53 target promoters. In the absence of DNA damage, L3MBTL1 interacts with p53K382me1 and p53-target genes are repressed, whereas depletion of L3MBTL1 results in a p53-dependent increase in p21 and PUMA transcript levels. Activation of p53 by DNA damage is coupled to a decrease in p53K382me1 levels, abrogation of the L3MBTL1-p53 interaction, and disassociation of L3MBTL1 from p53-target promoters. Together, we identify L3MBTL1 as the second known methyl-p53 effector protein, and provide a molecular explanation for the mechanism by which p53K382me1 is transduced to regulate p53 activity.
机译:p53肿瘤抑制蛋白受多种翻译后修饰(包括赖氨酸甲基化)的调节。我们以前发现,赖氨酸甲基转移酶(PKMT)SET8 / PR-Set7在赖氨酸382(p53K382me1)处p53的单甲基化抑制了靶基因的p53反式激活。然而,将p53K382单甲基化与抑制联系起来的分子机制尚不清楚。在这里,我们在生化和晶体学研究中显示了染色质紧实因子L3MBTL1的三重恶性脑瘤(MBT)重复序列对p53K382me1的优先识别。我们证明SET8介导的Lys-382处p53的甲基化促进了L3MBTL1与细胞中的p53之间的相互作用,以及L3MBTL1在p53目标启动子上的染色质占据。在没有DNA损伤的情况下,L3MBTL1与p53K382me1相互作用,p53靶基因被抑制,而L3MBTL1的耗竭导致p21和PUMA转录水平的p53依赖性增加。 DNA损伤对p53的激活与p53K382me1水平的降低,L3MBTL1-p53相互作用的废止以及L3MBTL1与p53靶标启动子的分离相关。在一起,我们确定L3MBTL1为第二种已知的甲基p53效应蛋白,并为p53K382me1转导调节p53活性的机制提供分子解释。

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