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肽适体模拟 BRCA2 的 RAD51 结合域抑制布鲁氏锥虫的 DNA 损伤修复和存活。

Peptide aptamer mimicking RAD51-binding domain of BRCA2 inhibits DNA damage repair and survival in Trypanosoma brucei.

机构信息

Department of Microbiology and Immunology, Meharry Medical College, Nashville, TN 37208, USA.

出版信息

Microb Pathog. 2011 May;50(5):252-62. doi: 10.1016/j.micpath.2010.11.007. Epub 2011 Feb 3.

Abstract

The eukaryotic DNA recombination repair protein BRCA2 is functional in the parasitic protozoan Trypanosoma brucei. The mechanism of the involvement of BRCA2 in homologous recombination includes its interaction with the DNA recombinase proteins of the RAD51 family. BRCA2 is known to interact with RAD51 through its unique and essential BRC sequence motifs. T. brucei BRCA2 homolog (TbBRCA2) has fifteen repeating BRC motifs as compared to mammalian BRCA2 that has only eight. We report here our yeast 2-hybrid analysis studies on the interactions of TbBRCA2 BRC motifs with five different RAD51 paralogues of T. brucei. Our study revealed that a single BRC motif is sufficient to bind to these RAD51 paralogues. To test the possibility whether a single 44 amino acid long repeating unit of the TbBRCA2 BRC motif may be exploited as an inhibitor of T. brucei growth, we ectopically expressed this peptide segment in the procyclic form of the parasite and evaluated its effects on cell survival as well as the sensitivity of these cells to the DNA damaging agent methyl methane sulfonate (MMS). Expression of a single BRC motif led to MMS sensitivity and inhibited cellular proliferation in T. brucei.

摘要

真核生物 DNA 重组修复蛋白 BRCA2 在寄生原生动物布氏锥虫中具有功能。BRCA2 参与同源重组的机制包括其与 RAD51 家族的 DNA 重组酶蛋白的相互作用。BRCA2 已知通过其独特且必需的 BRC 序列基序与 RAD51 相互作用。与仅具有 8 个 BRC 基序的哺乳动物 BRCA2 相比,T. brucei BRCA2 同源物(TbBRCA2)具有十五个重复的 BRC 基序。我们在此报告了我们对 TbBRCA2 BRC 基序与 T. brucei 的五个不同 RAD51 旁系同源物相互作用的酵母 2 杂交分析研究。我们的研究表明,单个 BRC 基序足以与这些 RAD51 旁系同源物结合。为了测试单个 44 个氨基酸长的 TbBRCA2 BRC 基序重复单元是否可能被用作抑制 T. brucei 生长的抑制剂,我们在寄生虫的前鞭毛体形式中外源表达了该肽段,并评估了它对细胞存活的影响以及这些细胞对 DNA 损伤剂甲磺酸甲酯(MMS)的敏感性。单个 BRC 基序的表达导致 MMS 敏感性并抑制 T. brucei 中的细胞增殖。

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