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首页> 外文期刊>The Journal of Biochemistry >The amino-terminus of mouse DNA methyltransferase 1 forms an independent domain and binds to DNA with the sequence involving PCNA binding motif.
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The amino-terminus of mouse DNA methyltransferase 1 forms an independent domain and binds to DNA with the sequence involving PCNA binding motif.

机译:小鼠DNA甲基转移酶1的氨基 - 末端形成独立结构域,并与涉及PCNA结合基序的序列结合DNA。

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摘要

DNA methylation patterns in genome are maintained during replication by a DNA methyltransferase Dnmt1. Mouse Dnmt1 is a 180 kDa protein comprising the N-terminal regulatory domain, which covers 2/3 of the molecule, and the rest C-terminal catalytic domain. In the present study, we demonstrated that the limited digestion of full-length Dnmt1 with different proteases produced a common N-terminal fragment, which migrated along with Dnmt1 (1-248) in SDS-polyacrylamide gel electrophoresis. Digestion of the N-terminal domains larger than Dnmt1 (1-248) with chymotrypsin again produced the fragment identical to the size of Dnmt1 (1-248). These results indicate that the N-terminal domain of 1-248 forms an independent domain. This N-terminal domain showed DNA binding activity, and the responsible sequence was narrowed to the 79 amino acid residues involving the proliferating cell nuclear antigen (PCNA) binding motif. The DNA binding activity did not distinguish between DNA methylated and non-methylated states, but preferred to bind to the minor groove of AT-rich sequence. The DNA binding activity of the N-terminal domain competed with the PCNA binding. We propose that DNA binding activity of the N-terminal domain contributes to the localization of Dnmt1 to AT-rich sequence such as Line 1, satellite, and the promoter of tissue-specific silent genes.
机译:通过DNA甲基转移酶DNMT1在复制期间保持基因组中的DNA甲基化模式。小鼠DNMT1是一种180kDa蛋白,其包含N-末端调节结构域,其覆盖分子的2/3,以及其余C末端催化结构域。在本研究中,我们证明,具有不同蛋白酶的全长DNMT1的有限消化产生了普通的N-末端片段,其在SDS-聚丙烯酰胺凝胶电泳中迁移了DNMT1(1-248)。用Chymotrypsin的DNMT1(1-248)的N-末端结构域的消化再次产生与DNMT1(1-248)的尺寸相同的片段。这些结果表明,1-248的N末端结构域形成独立的域。该N-末端结构域显示DNA结合活性,并且负责序列缩小到涉及增殖细胞核抗原(PCNA)结合基序的79个氨基酸残基。 DNA结合活性没有区分DNA甲基化和非甲基化态,但优选与富含富含份的缩小槽结合。 N-末端结构域的DNA结合活性与PCNA结合竞争。我们提出N-末端结构域的DNA结合活性有助于DNMT1的定位,例如富含富含的碱化序列,例如3号线,卫星和组织特异性静音基因的启动子。

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