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构建一种高亲和力的甲基化CpG结合蛋白。

Engineering a high-affinity methyl-CpG-binding protein.

作者信息

Jørgensen Helle F, Adie Karen, Chaubert Pascal, Bird Adrian P

机构信息

The Wellcome Trust Centre for Cell Biology, University of Edinburgh, King's Buildings, Mayfield Road, Edinburgh EH9 3JR, UK.

出版信息

Nucleic Acids Res. 2006 Aug 7;34(13):e96. doi: 10.1093/nar/gkl527.

Abstract

Core members of the MBD protein family (MeCP2, MBD1, MBD2 and MBD4) share a methyl-CpG-binding domain that has a specific affinity for methylated CpG sites in double-stranded DNA. By multimerizing the MDB domain of Mbd1, we engineered a poly-MBD protein that displays methyl-CpG-specific binding in vitro with a dissociation constant that is >50-fold higher than that of a monomeric MBD. Poly-MBD proteins also localize to methylated foci in cells and can deliver a functional domain to reporter constructs in vivo. We propose that poly-MBD proteins are sensitive reagents for the detection of DNA methylation levels in isolated native DNA and for cytological detection of chromosomal CpG methylation.

摘要

MBD蛋白家族的核心成员(MeCP2、MBD1、MBD2和MBD4)共享一个甲基化CpG结合结构域,该结构域对双链DNA中的甲基化CpG位点具有特异性亲和力。通过使Mbd1的MDB结构域多聚化,我们构建了一种多聚MBD蛋白,该蛋白在体外表现出甲基化CpG特异性结合,其解离常数比单体MBD高50倍以上。多聚MBD蛋白也定位于细胞中的甲基化位点,并且可以在体内将功能结构域递送至报告构建体。我们提出,多聚MBD蛋白是用于检测分离的天然DNA中DNA甲基化水平以及用于染色体CpG甲基化细胞学检测的灵敏试剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6bd/1540740/9c88a18c355d/gkl527f1.jpg

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