Hoede Claire, Denamur Erick, Tenaillon Olivier
INSERM U722 and Université Paris 7--Denis Diderot, Faculté de Médecine, Site Xavier Bichat, Paris, France.
PLoS Genet. 2006 Nov 3;2(11):e176. doi: 10.1371/journal.pgen.0020176. Epub 2006 Sep 1.
Single-stranded DNA is more subject to mutation than double stranded. During transcription, DNA is transiently single stranded and therefore subject to higher mutagenesis. However, if local intra-strand secondary structures are formed, some bases will be paired and therefore less sensitive to mutation than unpaired bases. Using complete genome sequences of Escherichia coli, we show that local intra-strand secondary structures can, as a consequence, be used to define an index of transcription-driven mutability. At gene level, we show that natural selection has favoured a reduced transcription-driven mutagenesis via the higher than expected frequency of occurrence of intra-strand secondary structures. Such selection is stronger in highly expressed genes and suggests a sequence-dependent way to control mutation rates and a novel form of selection affecting the evolution of synonymous mutations.
单链DNA比双链DNA更容易发生突变。在转录过程中,DNA会短暂地形成单链,因此更容易发生诱变。然而,如果形成了局部链内二级结构,一些碱基会配对,因此比未配对的碱基对突变的敏感性更低。利用大肠杆菌的完整基因组序列,我们表明,局部链内二级结构因此可用于定义转录驱动的可突变性指数。在基因水平上,我们表明,自然选择通过高于预期的链内二级结构出现频率,促进了转录驱动诱变的降低。这种选择在高表达基因中更强,表明存在一种依赖序列的方式来控制突变率,以及一种影响同义突变进化的新型选择形式。