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在dCMP脱氨酶缺陷型噬菌体T4感染期间测定的脱氧核糖核苷三磷酸库失衡和自发突变率。

Imbalanced deoxyribonucleoside triphosphate pools and spontaneous mutation rates determined during dCMP deaminase-defective bacteriophage T4 infections.

作者信息

Sargent R G, Mathews C K

出版信息

J Biol Chem. 1987 Apr 25;262(12):5546-53.

PMID:3553179
Abstract

DNA precursor imbalances are known to be mutagenic in both eukaryotic and prokaryotic systems. Almost certainly, such mutagenesis involves competition between correctly and incorrectly base-paired precursors at replication sites. Since other factors may be involved, it is important to identify specific mutations induced by specific pool imbalances. Using bacteriophage T4, we have developed a system for such analysis. We prepare double mutants of T4; one mutation affects a phage-coded enzyme of deoxyribonucleoside triphosphate (dNTP) metabolism, while the second is an rII mutation known to revert along a specific pathway. We determine dNTP pools in infection by such a mutant and measure both the spontaneous reversion rate of the rII mutation and, in some cases, the nucleotide sequence at the mutant site. In this paper we analyze mutations induced by a deficiency of T4-encoded deoxycytidylate deaminase. This causes pools of 5-hydroxymethyl-dCTP to expand some 30-fold, while dTTP pools contract. This specifically stimulates AT-to-GC reversion. One of the four AT-to-GC reverters tested, rIIUV215, increases its reversion rate at least 1000-fold under these pool-imbalance conditions, while the other mutants tested show increases of only about 10-fold. Therefore, factors other than dNTP competition, including local DNA sequence environment, must be invoked to fully explain mechanisms of dNTP pool imbalance-induced mutagenesis. We discuss models for this, and we also report unexpected effects of the dCMP deaminase deficiency upon pools of ribonucleoside triphosphates.

摘要

已知DNA前体失衡在真核生物和原核生物系统中都具有致突变性。几乎可以肯定的是,这种诱变作用涉及复制位点上正确和错误碱基配对的前体之间的竞争。由于可能涉及其他因素,因此识别由特定库失衡诱导的特定突变非常重要。利用噬菌体T4,我们开发了一种用于此类分析的系统。我们制备了T4的双突变体;一种突变影响噬菌体编码的脱氧核苷三磷酸(dNTP)代谢酶,而另一种是已知沿特定途径回复的rII突变。我们确定这种突变体感染时的dNTP库,并测量rII突变的自发回复率,在某些情况下,还测量突变位点的核苷酸序列。在本文中,我们分析了由T4编码的脱氧胞苷酸脱氨酶缺乏引起的突变。这导致5-羟甲基-dCTP库扩大约30倍,而dTTP库收缩。这特别刺激了AT到GC的回复。在这些库失衡条件下,测试的四个AT到GC回复体之一rIIUV215的回复率至少增加了1000倍,而测试的其他突变体仅增加了约10倍。因此,必须引入dNTP竞争以外的因素,包括局部DNA序列环境,以充分解释dNTP库失衡诱导的诱变机制。我们讨论了对此的模型,并且我们还报告了dCMP脱氨酶缺乏对核糖核苷三磷酸库的意外影响。

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