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Identification of Structural Elements of the Lysine Specific Demethylase 2B CxxC Domain Associated with Replicative Senescence Bypass in Primary Mouse Cells

机译:鉴定赖氨酸特异性去甲基酶2B CXXC结构域的结构元素,其在原代小鼠细胞中的复制衰老旁路相关

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Background Lysine specific demethylase 2B, KDM2B, regulates genes that participate in cellular development, morphogenesis, differentiation and metabolism as a component of the polycomb repressive complex 1 (PRC1). The CxxC finger of KDM2B is responsible for the DNA binding capacity of this epigenetic regulator, acting as a sampling mechanism across chromatin for gene repression Objectives The molecular determinants of the CxxC-DNA interaction remain largely unknown, revealing a significant knowledge gap to be explored. Our goal was to elucidate the key residues of the CxxC domain that contribute to its function as well as to further elaborate on the significance of this domain in the KDM2B role Methods By using electrophoresis mobility swift assay, we identified structural elements of CxxC domain that participate in the DNA recognition. We created mouse embryonic fibroblasts overexpressing different truncated and point-mutated mouse KDM2B variants to examine the contribution of the KDM2B domains in replicative senescence bypass Results In this study, we show that only the CxxC finger is essential for the ability of mKDM2B to bypass replicative senescence in primary cells by ink4A-Arf-ink4B locus repression, and that this is mediated by specific interactions of residues R585, K608 and K616 with non-methylated CpG containing DNA Conclusions These results provide new structural insights into the molecular interactions of CxxC and could serve as a stepping-stone for developing domain-specific inhibitors for KDM2B.
机译:背景赖氨酸特异性去甲基酶2b,KDM2B,调节参与细胞发育,形态发生,分化和代谢的基因,作为多元体抑制复合物1(PRC1)的组分。 KDM2B的CXXC手指对该表观遗传调节剂的DNA结合能力负责,作为基因抑制的染色质的采样机制,CXXC-DNA相互作用的分子决定因素仍然很大程度上,揭示了探索了重要的知识差距。我们的目标是阐明CXXC域的关键残留,这些域的助成力涉及其功能,并进一步详细阐述了通过使用电泳迁移率Swift测定的KDM2B角色方法中该领域的重要性,我们确定了参与的CXXC域的结构元素在DNA识别。我们创建了过表达不同截头和点突变的小鼠KDM2B变体的鼠标胚胎成纤维细胞,以检查KDM2B结构域在复制衰老旁路的贡献中,我们表明只有CXXC手指对MKDM2B绕过复制衰老至关重要在墨水4a-arf-ink4b基因座抑制中,这是通过残留物R585,K608和K616的特定相互作用介导的,其中包含DNA结论的非甲基化CpG这些结果为CXXC的分子相互作用提供了新的结构见解,并且可以服务作为用于开发KDM2B的域特异性抑制剂的踩踏石。

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