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Structure-Guided Discovery of Selective Antagonists for the Chromodomain of Polycomb Repressive Protein CBX7

机译:结构引导的多梳抑制蛋白CBX7染色体结构域的选择性拮抗剂的发现。

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The chromobox 7 (CBX7) protein of the polycomb repressive complex 1 (PRC1) functions to repress transcription of tumor suppressor p16(INK4a) through long RNA, ANRIL (antisense noncoding RNA in the INK4 locus) directed chromodomain (ChD) binding to trimethylated lysine 27 of histone H3 (H3K27me3), resulting in chromatin compaction at the INK4a/ARF locus. In this study, we report structure-guided discovery of two distinct classes of small-molecule antagonists for the CBX7ChD. Our Class A compounds, a series including analogues of, the previously reported MS452, inhibit CBX7ChD/methyl-lysine binding by occupying the H3K27me3 peptide binding site, whereas our Class B compound, the newly discovered MS351, appears to inhibit H3K27me3 binding when CBX7ChD is bound to RNA. Our crystal structure of the CBX7ChD/MS351 complex reveals the molecular details of ligand recognition by the aromatic cage residues that typically engage in methyl-lysine binding. We further demonstrate that MS351 effectively induces transcriptional derepression of CBX7 target genes, including p16(INK4a) in mouse embryonic stem cells and human prostate cancer PC3 cells. Thus, MS351 represents a new class of ChD antagonists that selectively targets the biologically active form of CBX7 of the PRC1 in long noncoding RNA- and H3K27me3-directed gene transcriptional repression.
机译:聚梳阻遏复合物1(PRC1)的染色体框7(CBX7)蛋白通过长RNA,ANRIL(INK4基因座中的反义非编码RNA)定向的染色体结构域(ChD)与三甲基化的赖氨酸结合来抑制肿瘤抑制因子p16(INK4a)的转录。 27个组蛋白H3(H3K27me3),导致INK4a / ARF位点的染色质紧实。在这项研究中,我们报告了CBX7ChD的两种不同类型的小分子拮抗剂的结构指导发现。我们的A类化合物(包括以前报道的MS452的类似物)通过占据H3K27me3肽结合位点来抑制CBX7ChD /甲基赖氨酸结合,而我们的B类化合物(新发现的MS351)似乎在CBX7ChD被抑制时抑制H3K27me3结合。绑定到RNA。我们的CBX7ChD / MS351复合物的晶体结构揭示了通常通过甲基赖氨酸结合作用的芳香族笼状残基识别配体的分子细节。我们进一步证明,MS351有效诱导CBX7靶基因的转录去阻遏,包括小鼠胚胎干细胞和人前列腺癌PC3细胞中的p16(INK4a)。因此,MS351代表了一类新的ChD拮抗剂,在长的非编码RNA和H3K27me3定向基因转录抑制中选择性靶向PRC1的CBX7的生物活性形式。

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