de Boer J G, Ripley L S
Proc Natl Acad Sci U S A. 1984 Sep;81(17):5528-31. doi: 10.1073/pnas.81.17.5528.
The in vivo production of frameshift and base-substitution mutations predicted as a consequence of the metabolic processing of misaligned quasipalindromic DNA sequences has been confirmed. Spontaneous frameshift mutations of the T4 rII gene that had been genetically mapped to quasipalindromic DNA sequences were sequenced. Some of the mutant sequences are exactly those predicted by a mutational model based on misaligned quasipalindromes. Furthermore, these sequences are distinct from those predicted by the classical frameshift model based on misaligned repeated sequences. The rII frameshift mutant sequences reported here result from the deletion of a specific base or bases that would remain looped out should the quasipalindromes assume a hairpin secondary structure. One hairpin predicted not only the deletion of two bases (a frameshift) but the concomitant production of nearby but noncontiguous base substitutions. The substitution of as many as three bases as well as the frameshift were predicted to arise as a consequence of a single mutational event in the palindrome. Two independent examples of the predicted deletion frameshift were found among the small sample of sequenced spontaneous frameshifts examined and both were associated with the predicted transversion and transition base substitutions.
因未对齐的准回文DNA序列代谢加工而预测的移码突变和碱基置换突变的体内产生已得到证实。对已通过遗传定位到准回文DNA序列的T4 rII基因的自发移码突变进行了测序。一些突变序列正是基于未对齐准回文的突变模型所预测的。此外,这些序列与基于未对齐重复序列的经典移码模型所预测的序列不同。此处报道的rII移码突变序列是由于特定碱基的缺失导致的,如果准回文形成发夹二级结构,这些碱基将保持成环状态。一种发夹结构不仅预测了两个碱基的缺失(移码),还预测了附近但不相邻的碱基置换的同时产生。多达三个碱基的置换以及移码预计是由回文中的单个突变事件引起的。在所检测的少量测序自发移码样本中发现了两个预测缺失移码的独立例子,并且两者都与预测的颠换和转换碱基置换相关。