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TREX2核酸外切酶缺陷型细胞表现出双链断裂和染色体片段,但没有罗伯逊易位。

TREX2 exonuclease defective cells exhibit double-strand breaks and chromosomal fragments but not Robertsonian translocations.

作者信息

Dumitrache Lavinia C, Hu Lingchuan, Hasty Paul

机构信息

Department of Molecular Medicine, Institute of Biotechnology, The University of Texas Health Science Center at San Antonio, 15355 Lambda Drive, San Antonio, TX 78245-3207, USA.

出版信息

Mutat Res. 2009 Mar 9;662(1-2):84-7. doi: 10.1016/j.mrfmmm.2008.11.012. Epub 2008 Nov 27.

Abstract

TREX2 is a 3'-->5' exonuclease that binds to DNA and removes 3' mismatched nucleotides. By an in vitro structure function analysis, we found a single amino acid change (H188A) completely ablates exonuclease activity and impairs DNA binding by about 60% while another change (R167A) impairs DNA binding by about 85% without impacting exonuclease activity. For a biological analysis, we generated trex2null cells by deleting the entire Trex2 coding sequences in mouse embryonic stem (ES) cells. We found Trex2 deletion caused high levels of Robertsonian translocations (RbTs) showing Trex2 is important for chromosomal maintenance. Here we evaluate the exonuclease and DNA binding domains by expressing in trex2(null) cells coding sequences for wild type human TREX2 (Trex2hTX2) or human TREX2 with the H188A change (Trex2H188A) or the R167A change (Trex2R167A). These cDNAs are positioned adjacent to the mouse Trex2 promoter by Cre-mediated knock-in. By observing metaphase spreads, we found Trex2H188A cells exhibited high levels of double-strand breaks (DSBs) and chromosomal fragments. Therefore, TREX2 may suppress spontaneous DSBs or exonuclease defective TREX2 may induce them in a dominate-negative manner. We also found Trex2hTX2, hTrex2H188A and hTrex2R167A cells did not exhibit RbTs. Thus, neither the exonuclease nor DNA binding domains suppress RbTs suggesting TREX2 possesses additional biochemical activities.

摘要

TREX2是一种3'→5'核酸外切酶,它与DNA结合并去除3'端错配的核苷酸。通过体外结构功能分析,我们发现单个氨基酸变化(H188A)完全消除了核酸外切酶活性,并使DNA结合能力受损约60%,而另一个变化(R167A)使DNA结合能力受损约85%,但不影响核酸外切酶活性。为了进行生物学分析,我们通过删除小鼠胚胎干细胞(ES细胞)中的整个Trex2编码序列,生成了trex2缺失细胞。我们发现Trex2缺失导致高水平的罗伯逊易位(RbTs),表明Trex2对染色体维持很重要。在这里,我们通过在trex2(缺失)细胞中表达野生型人类TREX2(Trex2hTX2)或具有H188A变化(Trex2H188A)或R167A变化(Trex2R167A)的人类TREX2的编码序列,来评估核酸外切酶和DNA结合结构域。这些cDNA通过Cre介导的敲入定位在小鼠Trex2启动子附近。通过观察中期染色体铺展,我们发现Trex2H188A细胞表现出高水平的双链断裂(DSBs)和染色体片段。因此,TREX2可能抑制自发的DSBs,或者核酸外切酶缺陷的TREX2可能以显性负性方式诱导它们。我们还发现Trex2hTX2、hTrex2H188A和hTrex2R167A细胞没有表现出RbTs。因此,核酸外切酶和DNA结合结构域都不能抑制RbTs表明TREX2具有额外的生化活性。

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