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Structural basis for recognition of hemi-methylated DNA by the SRA domain of human UHRF1

机译:人UHRF1的SRA结构域识别半甲基化DNA的结构基础

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Epigenetic inheritance in mammals is characterized by high-fidelity replication of CpG methylation patterns dining development. UHRF1 (also known as ICBP90 in humans and Np95 in mouse) is an E3 ligase important for the maintenance of global and local DNA methylation in vivo. The preferential affinity of UHRF1 for hemi-methylated DNA over symmetrically methylated DNA by means of its SET and RING-associated (SRA) domain and its association with the maintenance DNA methyltransferase 1 (DNMT1) suggests a role in replication of the epigenetic code. Here we report the 1.7 A crystal structure of the apo SRA domain of human UHRF1 and a 2.2 A structure of its complex with hemi-methylated DNA, revealing a previously unknown reading mechanism for methylated CpG sites (mCpG). The SRA-DNA complex has several notable structural features including a binding pocket that accommodates the 5-methylcytosine that is flipped out of the duplex DNA. Two specialized loops reach through the resulting gap in the DNA from both the major and the minor grooves to read the other three bases of the CpG duplex. The major groove loop confers both specificity for the CpG dinucleotide and discrimination against methylation of deoxycytidine of the complementary strand. The structure, along with mutagenesis data, suggests how UHRF1 acts as a key factor for DNMT1 maintenance methylation through recognition of a fundamental unit of epigenetic inheritance, mCpG.
机译:哺乳动物的表观遗传遗传特征是CpG甲基化模式的高保真复制,促进了饮食的发展。 UHRF1(在人类中也称为ICBP90,在小鼠中也称为Np95)是一种E3连接酶,对于维持体内的全局和局部DNA甲基化非常重要。 UHRF1通过其SET和RING关联(SRA)域相对于对称甲基化DNA对半甲基化DNA的优先亲和力及其与维持DNA甲基转移酶1(DNMT1)的关联暗示了表观遗传密码的复制中的作用。在这里,我们报告人UHRF1的apo SRA域的1.7 A晶体结构和其与半甲基化DNA的复合物的2.2 A结构,揭示了甲基化CpG位点(mCpG)的未知机制。 SRA-DNA复合物具有几个显着的结构特征,包括一个可容纳从双链DNA翻转出来的5-甲基胞嘧啶的结合袋。两个专门的环从主沟和次沟穿过DNA中形成的缺口,以读取CpG双链体的其他三个碱基。主要的凹槽环既赋予了CpG二核苷酸特异性,又赋予了互补链脱氧胞苷甲基化能力。该结构以及诱变数据表明,UHRF1如何通过识别表观遗传的基本单位mCpG充当DNMT1维持甲基化的关键因素。

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