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ori序列侧翼区域会影响来自酵母的ori+小菌落突变体线粒体基因组的复制效率。

Regions flanking ori sequences affect the replication efficiency of the mitochondrial genome of ori+ petite mutants from yeast.

作者信息

Rayko E, Goursot R, Cherif-Zahar B, Melis R, Bernardi G

机构信息

Laboratoire de Génétique Moléculaire, Institut Jacques Monod, Paris, France.

出版信息

Gene. 1988 Mar 31;63(2):213-26. doi: 10.1016/0378-1119(88)90526-4.

Abstract

The mitochondrial genomes of progenies from 26 crosses between 17 cytoplasmic, spontaneous, suppressive, ori+ petite mutants of Saccharomyces cerevisiae have been studied by electrophoresis of restriction fragments. Only parental genomes (or occasionally, genomes derived from them by secondary excisions) were found in the progenies of the almost 500 diploids investigated; no evidence for illegitimate, site-specific mitochondrial recombination was detected. One of the parental genomes was always found to be predominate over the other one, although to different extents in different crosses. This predominance appears to be due to a higher replication efficiency, which is correlated with a greater density of ori sequences on the mitochondrial genome (and with a shorter repeat unit size of the latter). Exceptions to the 'repeat-unit-size rule' were found, however, even when the parental mitochondrial genomes carried the same ori sequence. This indicates that noncoding, intergenic sequences outside ori sequences also play a role in modulating replication efficiency. Since in different petites such sequences differ in primary structure, size, and position relative to ori sequences, this modulation is likely to take place through an indirect effect on DNA and nucleoid structure.

摘要

通过对限制性片段进行电泳,研究了酿酒酵母17种细胞质、自发、抑制性、ori + 小菌落突变体之间26个杂交组合子代的线粒体基因组。在所研究的近500个二倍体子代中,仅发现亲本基因组(偶尔也有通过二次切除衍生自它们的基因组);未检测到非正规的、位点特异性线粒体重组的证据。总是发现其中一个亲本基因组比另一个占优势,尽管在不同杂交组合中优势程度不同。这种优势似乎归因于更高的复制效率,这与线粒体基因组上ori序列的更高密度相关(并且与后者较短的重复单元大小相关)。然而,即使亲本线粒体基因组携带相同的ori序列,也发现了“重复单元大小规则”的例外情况。这表明ori序列之外的非编码基因间序列在调节复制效率方面也起作用。由于在不同的小菌落中,此类序列在一级结构、大小以及相对于ori序列的位置方面存在差异,这种调节可能是通过对DNA和类核结构的间接影响来实现的。

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