Gabriel A, Willems M, Mules E H, Boeke J D
Department of Molecular Biology and Biochemistry, Rutgers University, Piscataway, NJ 08855, USA.
Proc Natl Acad Sci U S A. 1996 Jul 23;93(15):7767-71. doi: 10.1073/pnas.93.15.7767.
Retroviruses undergo a high frequency of genetic alterations during the process of copying their RNA genomes. However, little is known about the replication fidelity of other elements that transpose via reverse transcription of an RNA intermediate. The complete sequence of 29 independently integrated copies of the yeast retrotransposon Ty1 (173,043 nt) was determined, and the mutation rate during a single cycle of replication was calculated. The observed base substitution rate of 2.5 x 10(-5) bp per replication cycle suggests that this intracellular element can mutate as rapidly as retroviruses. The pattern and distribution of errors in the Ty1 genome is nonrandom and provides clues to potential in vivo molecular mechanisms of reverse transcriptase-mediated error generation, including heterogeneous RNase H cleavage of Ty1 RNA, addition of terminal nontemplated bases, and transient dislocation and realignment of primer-templates. Overall, analysis of errors generated during Ty1 replication underscores the utility of a genetically tractable model system for the study of reverse transcriptase fidelity.
逆转录病毒在复制其RNA基因组的过程中会发生高频的基因改变。然而,对于通过RNA中间体逆转录进行转座的其他元件的复制保真度却知之甚少。测定了酵母逆转录转座子Ty1(173,043 nt)29个独立整合拷贝的完整序列,并计算了单个复制周期中的突变率。每个复制周期观察到的碱基替换率为2.5×10⁻⁵ bp,这表明这种细胞内元件的突变速度与逆转录病毒一样快。Ty1基因组中错误的模式和分布是非随机的,为逆转录酶介导的错误产生的潜在体内分子机制提供了线索,包括Ty1 RNA的异质性核糖核酸酶H切割、末端非模板化碱基的添加以及引物模板的瞬时错位和重新排列。总体而言,对Ty1复制过程中产生的错误的分析强调了一个易于遗传操作的模型系统在研究逆转录酶保真度方面的实用性。