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Dissecting the behavior and function of MBD3 in DNA methylation homeostasis by single-molecule spectroscopy and microscopy

机译:通过单分子光谱法和显微镜分析MBD3在DNA甲基化稳态中的行为和功能

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摘要

The detailed mechanism for DNA methylation homeostasis relies on an intricate regulatory network with a possible contribution from methyl-CpG-binding domain protein 3 (MBD3). In this study we examine the single-molecule behavior of MBD3 and its functional implication in balancing the activity of DNA methyltransferases (DNMTs). Besides a localization tendency to DNA demethylating sites, MBD3 experiences a concurrent transcription with DNMTs in cell cycle. Fluorescence lifetime correlation spectroscopy (FLCS) and photon counting histogram (PCH) were applied to characterize the chromatin binding kinetics and stoichiometry of MBD3 in different cell phases. In the G1-phase, MBD3, in the context of the Mi-2/NuRD (nucleosome remodeling deacetylase) complex, could adopt a salt-dependent homodimeric association with its target epigenomic loci. Along with cell cycle progression, utilizing fluorescence lifetime imaging microscopy-based Förster resonance energy transfer (FLIM-FRET) we revealed that a proportion of MBD3 and MBD2 would co-localize with DNMT1 during DNA maintenance methylation, providing a proofreading and protective mechanism against a possible excessive methylation by DNMT1. In accordance with our hypothesis, insufficient MBD3 induced by small interfering RNA (siRNA) was found to result in a global DNA hypermethylation as well as increased methylation in the promoter CpG islands (CGIs) of a number of cell cycle related genes.
机译:DNA甲基化体内平衡的详细机制依赖于复杂的调控网络,而甲基CpG结合域蛋白3(MBD3)可能对此做出了贡献。在这项研究中,我们研究了MBD3的单分子行为及其在平衡DNA甲基转移酶(DNMT)活性中的功能含义。除了定位于DNA去甲基化位点的趋势外,MBD3在细胞周期中也经历与DNMT的同时转录。荧光寿命相关光谱(FLCS)和光子计数直方图(PCH)用于表征MBD3在不同细胞相中的染色质结合动力学和化学计量。在G1期,在Mi-2 / NuRD(核小体重构脱乙酰酶)复合物的背景下,MBD3可以采用与其目标表观基因组位点相关的盐依赖性同源二聚体。随着细胞周期的进展,利用基于荧光寿命成像显微镜的Förster共振能量转移(FLIM-FRET),我们发现在DNA维持甲基化过程中,一定比例的MBD3和MBD2与DNMT1共定位,从而提供了针对DNMT1可能过度甲基化。根据我们的假设,发现由小分子干扰RNA(siRNA)诱导的MBD3不足会导致整体DNA超甲基化以及许多细胞周期相关基因的启动子CpG岛(CGI)中甲基化的增加。

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