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大肠杆菌polB基因座与DNA聚合酶II的结构基因dinA相同。从polB突变体中纯化的Pol II的特性。

The Escherichia coli polB locus is identical to dinA, the structural gene for DNA polymerase II. Characterization of Pol II purified from a polB mutant.

作者信息

Qiu Z, Goodman M F

机构信息

Department of Biological Sciences, Hedco Molecular Biology Laboratories, University of Southern California, Los Angeles, California 90089-1340, USA.

出版信息

J Biol Chem. 1997 Mar 28;272(13):8611-7. doi: 10.1074/jbc.272.13.8611.

Abstract

Escherichia coli DNA polymerase II (Pol II) is a member of the group B, "alpha-like" family of DNA polymerases. Pol II is encoded by the damage-inducible dinA gene and exhibits SOS induction under the control of Lex A repressor. The polB gene was originally designated as the structural gene for Pol II based on the absence of detectable Pol II activity in cell lysates prepared from a strain containing the mutant polB100 allele. Because polB and dinA mapped at different chromosomal locations, it remained an open question whether polB, in addition to lexA, might be involved in regulating the expression of Pol II. We have cloned and sequenced the polB100 mutant allele, including adjacent surrounding sequences, and have expressed the mutant dinA gene from Pol B100 on a high copy number plasmid. Our sequence data reveal that polB and dinA represent the same gene and that the original transduction mapping of polB was inaccurate. We purified the mutant Pol B100 polymerase and show that it retains 5 to 10% of the wild-type level of polymerase activity. The Pol B100 mutation, Gly401 --> Asp401, is not located within any of the five conserved domains that define group B polymerases. Pol B100 retains a wild-type level of 3' --> 5' exonuclease activity. We suggest that the normal level of exonucleolytic proofreading associated with the mutant Pol B100 enzyme may explain the repeated failures, over the past two decades, to detect phenotypes in polB mutant strains.

摘要

大肠杆菌DNA聚合酶II(Pol II)是B族“α样”DNA聚合酶家族的成员。Pol II由损伤诱导型dinA基因编码,并在Lex A阻遏物的控制下表现出SOS诱导。基于从含有突变polB100等位基因的菌株制备的细胞裂解物中未检测到Pol II活性,polB基因最初被指定为Pol II的结构基因。由于polB和dinA定位于不同的染色体位置,除lexA外,polB是否可能参与调节Pol II的表达仍是一个悬而未决的问题。我们克隆并测序了polB100突变等位基因,包括相邻的周边序列,并在高拷贝数质粒上表达了来自Pol B100的突变dinA基因。我们的序列数据表明,polB和dinA代表同一个基因,并且polB最初的转导定位是不准确的。我们纯化了突变型Pol B100聚合酶,并表明它保留了野生型聚合酶活性水平的5%至10%。Pol B100突变,即甘氨酸401突变为天冬氨酸401,并不位于定义B族聚合酶的五个保守结构域中的任何一个内。Pol B100保留了野生型水平的3'→5'核酸外切酶活性。我们认为,与突变型Pol B100酶相关的正常水平的核酸外切校正可能解释了在过去二十年中在polB突变菌株中未能检测到表型的反复失败。

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