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与大肠杆菌核酸外切酶III同源的人APEX核酸酶的cDNA克隆、测序、表达及可能的结构域结构

cDNA cloning, sequencing, expression and possible domain structure of human APEX nuclease homologous to Escherichia coli exonuclease III.

作者信息

Seki S, Hatsushika M, Watanabe S, Akiyama K, Nagao K, Tsutsui K

机构信息

Department of Molecular Biology, Okayama University Medical School, Japan.

出版信息

Biochim Biophys Acta. 1992 Jul 15;1131(3):287-99. doi: 10.1016/0167-4781(92)90027-w.

Abstract

cDNA encoding the human homologue of mouse APEX nuclease was isolated from a human bone-marrow cDNA library by screening with cDNA for mouse APEX nuclease. The mouse enzyme has been shown to possess four enzymatic activities, i.e., apurinic/apyrimidinic endonuclease, 3'-5' exonuclease, DNA 3'-phosphatase and DNA 3' repair diesterase activities. The cDNA for human APEX nuclease was 1420 nucleotides long, consisting of a 5' terminal untranslated region of 205 nucleotide long, a coding region of 954 nucleotide long encoding 318 amino acid residues, a 3' terminal untranslated region of 261 nucleotide long, and a poly(A) tail. Determination of the N-terminal amino acid sequence of APEX nuclease purified from HeLa cells showed that the mature enzyme lacks the N-terminal methionine. The amino acid sequence of human APEX nuclease has 94% sequence identity with that of mouse APEX nuclease, and shows significant homologies to those of Escherichia coli exonuclease III and Streptococcus pneumoniae ExoA protein. The coding sequence of human APEX nuclease was cloned into the pUC18 SmaI site in the control frame of the lacZ promoter. The construct was introduced into BW2001 (xth-11, nfo-2) strain and BW9109 (delta xth) strain cells of E. coli. The transformed cells expressed a 36.4 kDa polypeptide (the 317 amino acid sequence of APEX nuclease headed by the N-terminal decapeptide derived from the part of pUC18 sequence), and were less sensitive to methylmethanesulfonate and tert-butyl-hydroperoxide than the parent cells. The N-terminal regions of the constructed protein and APEX nuclease were cleaved frequently during the extraction and purification processes of protein to produce the 31, 33 and 35 kDa C-terminal fragments showing priming activities for DNA polymerase on acid-depurinated DNA and bleomycin-damaged DNA. Formation of such enzymatically active fragments of APEX nuclease may be a cause of heterogeneity of purified preparations of mammalian AP endonucleases. Based on analyses of the deduced amino acid sequence and the active fragments of APEX nuclease, it is suggested that the enzyme is organized into two domains, a 6 kDa N-terminal domain having nuclear location signals and 29 kDa C-terminal, catalytic domain.

摘要

通过用小鼠APEX核酸酶的cDNA进行筛选,从人骨髓cDNA文库中分离出编码小鼠APEX核酸酶人类同源物的cDNA。已证明小鼠酶具有四种酶活性,即脱嘌呤/脱嘧啶内切核酸酶、3'-5'外切核酸酶、DNA 3'-磷酸酶和DNA 3'修复二酯酶活性。人APEX核酸酶的cDNA长1420个核苷酸,由一个205个核苷酸长的5'末端非翻译区、一个954个核苷酸长的编码区(编码318个氨基酸残基)、一个261个核苷酸长的3'末端非翻译区和一个聚腺苷酸尾组成。对从HeLa细胞中纯化的APEX核酸酶的N端氨基酸序列进行测定表明,成熟酶缺少N端甲硫氨酸。人APEX核酸酶的氨基酸序列与小鼠APEX核酸酶的氨基酸序列具有94%的序列同一性,并且与大肠杆菌外切核酸酶III和肺炎链球菌ExoA蛋白的氨基酸序列具有显著同源性。将人APEX核酸酶的编码序列克隆到lacZ启动子控制框架内的pUC18 SmaI位点。将构建体导入大肠杆菌的BW2001(xth-11,nfo-2)菌株和BW9109(delta xth)菌株细胞中。转化后的细胞表达一种36.4 kDa的多肽(APEX核酸酶的317个氨基酸序列,由源自pUC18序列部分的N端十肽引导),并且比亲本细胞对甲磺酸甲酯和叔丁基过氧化氢的敏感性更低。在蛋白质的提取和纯化过程中,构建蛋白和APEX核酸酶的N端区域经常被切割,产生31 kDa、33 kDa和35 kDa的C端片段,这些片段对酸脱嘌呤DNA和博来霉素损伤的DNA上的DNA聚合酶具有引发活性。APEX核酸酶这种酶活性片段的形成可能是哺乳动物AP内切核酸酶纯化制剂异质性的一个原因。基于对APEX核酸酶推导氨基酸序列和活性片段的分析,提示该酶由两个结构域组成,一个具有核定位信号的6 kDa N端结构域和一个29 kDa的C端催化结构域。

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