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中国仓鼠卵巢细胞EM9突变体中DNA连接酶III活性的改变。

Altered DNA ligase III activity in the CHO EM9 mutant.

作者信息

Ljungquist S, Kenne K, Olsson L, Sandström M

机构信息

Institute of Environmental Medicine, Karolinska Institutet, Stockholm, Sweden.

出版信息

Mutat Res. 1994 Mar;314(2):177-86. doi: 10.1016/0921-8777(94)90081-7.

Abstract

Delayed joining of DNA strand breaks and a high spontaneous level of sister-chromatid exchanges (SCEs) are characteristics of the mutant cell strain EM9 of Chinese hamster ovary (CHO) cells. The introduction of the human gene XRCC1 into EM9 cells reverts the phenotypic properties of EM9 to those of the wild type. We have investigated both DNA ligase activities and a protein which stimulates DNA ligase activity in mutant EM9 cells, XRCC1-transfectant H9T3-7-1 cells and wild-type AA8 cells. Our results, which demonstrate both a decreased DNA ligase activity in EM9 cells using poly(rA).oligo(dT) as substrate and a decreased ability of DNA ligase III to form a covalent DNA ligase III-adenylate intermediate with AMP, clearly indicate an altered DNA ligase III activity in the mutant. Furthermore, the AMP-binding capacity of DNA ligase III and its enzymatic activity with the synthetic polymer were restored after transfection of EM9 with the human XRCC1 gene. Immunoblotting data suggest that the XRCC1 gene does not code for DNA ligase III. In conclusion, the data indicate that the EM9 cell strain has an altered DNA ligase III activity that can be restored by the XRCC1 gene product.

摘要

DNA链断裂连接延迟以及姐妹染色单体交换(SCE)的自发水平较高是中国仓鼠卵巢(CHO)细胞突变株EM9的特征。将人类基因XRCC1导入EM9细胞可使EM9的表型特性恢复为野生型。我们研究了突变型EM9细胞、转染XRCC1的H9T3 - 7 - 1细胞和野生型AA8细胞中的DNA连接酶活性以及一种刺激DNA连接酶活性的蛋白质。我们的结果表明,以聚(rA)·寡聚(dT)为底物时,EM9细胞中的DNA连接酶活性降低,并且DNA连接酶III与AMP形成共价DNA连接酶III - 腺苷酸中间体的能力下降,这清楚地表明突变体中DNA连接酶III的活性发生了改变。此外,用人类XRCC1基因转染EM9后,DNA连接酶III的AMP结合能力及其对合成聚合物的酶活性得以恢复。免疫印迹数据表明XRCC1基因不编码DNA连接酶III。总之,数据表明EM9细胞株的DNA连接酶III活性发生了改变,而XRCC1基因产物可使其恢复。

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