In vitro models of mutagenesis.

B S Strauss, K Larson, D Sagher, S Rabkin, R Shenkar, J Sahm
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Abstract

The bypass of lesions in DNA with insertion of nucleotides opposite damaged bases has been studied as a model for mutagenesis in an in vitro system. Lesions introduced by dimethyl sulfate at adenines and by ultraviolet light at pyrimidine dimers act as termination sites on both double- and single-stranded DNA templates. Base selection opposite noninformational lesions is, in part, a property of the polymerases: different polymerases have different selectivities although all polymerases tested seem to prefer purines. The ability to insert "incorrect" bases is determined in part by the sequence 5' to the lesion on the template strand. The hypothesis that damaged purines tend to result in transversions can be applied to published data on activation of the c-ras oncogene.

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体外诱变模型。
在体外系统中,通过插入与受损碱基相反的核苷酸来绕过DNA中的病变已被研究作为一种诱变模型。硫酸二甲酯在腺嘌呤和嘧啶二聚体上引入的病变作为双链和单链DNA模板的终止位点。与非信息性病变相反的碱基选择部分是聚合酶的特性:不同的聚合酶具有不同的选择性,尽管所有的聚合酶似乎都倾向于嘌呤。插入“错误”碱基的能力部分取决于模板链上病变的5'序列。受损嘌呤倾向于导致转化的假设可以应用于已发表的c-ras癌基因激活的数据。
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