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The complete mitochondrial DNA sequence from Kazachstania sinensis reveals a general+1C frameshift mechanism in CTGY codons

机译:来自Kazachstania Sinensis的完整线粒体DNA序列揭示了CTGY密码子中的一般+ 1C架构机制

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The complete mitochondrial DNA (mtDNA) sequence from Kazachstania sinensis was analysed and compared to mtDNA from related yeasts. It contained the same set of genes; however, it only contained 23 tRNAs, as the trnR2 gene was absent. Most of the 12 introns within cox1, cob and ml genes were inserted in the same sites as in other yeasts; however, two introns in rnl were in unusual positions. Traits such as gene order and GC cluster number were more related to Saccharomyces than to the other Kazachstania or linked clades. The most exceptional feature was the +1 frameshift in cox3, atp6 and cob open reading frames that was also found in other Kazachstania, Nakaseomyces delphensis and Candida glabrata. Comparison of DNA and protein sequences revealed the universal sites of +1C frameshifts were either CTGT or CTGC sequences. Moreover, an A -& G substitution was found at position 37 in the anticodon stem loop tRNA gene for cysteine in all species with frameshifts but not in other sibling yeasts. This substitution allowed strong Watson-Crick base-pairing between an unmodified G (ACG) and the skipped C in the CTGY, leading to this quadruplet being read as cysteine.
机译:分析来自Kazachstania Sinensis的完全线粒体DNA(MTDNA)序列,并与来自相关酵母的MTDNA进行比较。它含有相同的基因组;然而,它只含有23个TrNA,因为不存在TRNR2基因。将12个内含子中的大多数内含子在与其他酵母相同的位点中插入与其他酵母相同的位点中;然而,RNL中的两个内含子是不寻常的位置。诸如基因阶和GC簇数等特征与酿酒酵母更相关,而不是对另一个Kazachstania或相关的枝条。最卓越的特征是Cox3,ATP6和COB开放阅读框架中也发现的+1架构,也发现在其他Kazachstania,Nakaceomyces Delphensis和Candida Glabrata中。 DNA和蛋白质序列的比较揭示了+ 1C架构的通用位点是CTGT或CTGC序列。此外,A - & 在抗oconon茎环TrNA基因的第37位发现替代替代在所有物种中的胎儿素,但不在其他兄弟酵母中。这种替换允许在CTGY中未修改的G(ACG)和跳过的CT的强烈Watson-Crick基础配对,导致该四分之一被读为半胱氨酸。

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