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SET和转座酶结构域蛋白Metnase增强染色体解连环:自甲基化调控。

The SET and transposase domain protein Metnase enhances chromosome decatenation: regulation by automethylation.

作者信息

Williamson Elizabeth A, Rasila Kanwaldeep Kaur, Corwin Lori Kwan, Wray Justin, Beck Brian D, Severns Virginia, Mobarak Charlotte, Lee Suk-Hee, Nickoloff Jac A, Hromas Robert

机构信息

Division of Hematology-Oncology, Cancer Research and Treatment Center, Department of Medicine, University of New Mexico Health Science Center, Albuquerque, NM 87131, USA.

出版信息

Nucleic Acids Res. 2008 Oct;36(18):5822-31. doi: 10.1093/nar/gkn560. Epub 2008 Sep 12.

Abstract

Metnase is a human SET and transposase domain protein that methylates histone H3 and promotes DNA double-strand break repair. We now show that Metnase physically interacts and co-localizes with Topoisomerase IIalpha (Topo IIalpha), the key chromosome decatenating enzyme. Metnase promotes progression through decatenation and increases resistance to the Topo IIalpha inhibitors ICRF-193 and VP-16. Purified Metnase greatly enhanced Topo IIalpha decatenation of kinetoplast DNA to relaxed circular forms. Nuclear extracts containing Metnase decatenated kDNA more rapidly than those without Metnase, and neutralizing anti-sera against Metnase reversed that enhancement of decatenation. Metnase automethylates at K485, and the presence of a methyl donor blocked the enhancement of Topo IIalpha decatenation by Metnase, implying an internal regulatory inhibition. Thus, Metnase enhances Topo IIalpha decatenation, and this activity is repressed by automethylation. These results suggest that cancer cells could subvert Metnase to mediate clinically relevant resistance to Topo IIalpha inhibitors.

摘要

Metnase是一种人类SET和转座酶结构域蛋白,可使组蛋白H3甲基化并促进DNA双链断裂修复。我们现在发现,Metnase与关键的染色体解连环酶拓扑异构酶IIα(Topo IIα)发生物理相互作用并共定位。Metnase促进解连环进程,并增加对Topo IIα抑制剂ICRF - 193和VP - 16的抗性。纯化的Metnase极大地增强了动质体DNA向松弛环状形式的Topo IIα解连环作用。含有Metnase的核提取物比不含Metnase的核提取物更快地解连环kDNA,并且针对Metnase的中和抗血清逆转了解连环增强作用。Metnase在K485处自动甲基化,并且甲基供体的存在阻断了Metnase对Topo IIα解连环的增强作用,这意味着存在内部调节抑制。因此,Metnase增强Topo IIα解连环作用,并且这种活性被自动甲基化所抑制。这些结果表明癌细胞可能利用Metnase介导对Topo IIα抑制剂的临床相关抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeaa/2566874/119b51423e28/gkn560f1.jpg

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