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Single nucleotide polymorphisms in DNA repair genes and putative cancer risk

机译:DNA修复基因中的单核苷酸多态性和可能的​​癌症风险

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摘要

Single nucleotide polymorphisms (SNPs) are the most frequent type of genetic alterations between individuals. An SNP located within the coding sequence of a gene may lead to an amino acid substitution and in turn might alter protein function. Such a change in protein sequence could be functionally relevant and therefore might be associated with susceptibility to human diseases, such as cancer. DNA repair mechanisms are known to play an important role in cancer development, as shown in various human cancer syndromes, which arise due to mutations in DNA repair genes. This leads to the question whether subtle genetic changes such as SNPs in DNA repair genes may contribute to cancer susceptibility. In numerous epidemiological studies, efforts have been made to associate specific SNPs in DNA repair genes with altered DNA repair and cancer. The present review describes some of the common and most extensively studied SNPs in DNA repair genes and discusses whether they are functionally relevant and subsequently increase the likelihood that cancer will develop.
机译:单核苷酸多态性(SNP)是个体之间最常见的遗传变异类型。位于基因编码序列内的SNP可能导致氨基酸取代,进而可能改变蛋白质功能。蛋白质序列的这种改变可能与功能相关,因此可能与人类疾病(如癌症)的易感性有关。众所周知,DNA修复机制在癌症发展中起着重要作用,正如各种人类癌症综合症所表明的那样,这是由于DNA修复基因的突变而引起的。这引发了一个疑问,即DNA修复基因中的细微遗传变化(例如SNP)是否可能导致癌症易感性。在许多流行病学研究中,已经做出努力使DNA修复基因中的特定SNP与改变的DNA修复和癌症相关联。本综述描述了DNA修复基因中一些常见且研究最广泛的SNP,并讨论了它们是否在功能上相关,并随后增加了癌症发展的可能性。

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