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Stripped-down DNA repair in a highly reduced parasite

机译:减少寄生虫的DNA修复

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摘要

BackgroundEncephalitozoon cuniculi is a member of a distinctive group of single-celled parasitic eukaryotes called microsporidia, which are closely related to fungi. Some of these organisms, including E. cuniculi, also have uniquely small genomes that are within the prokaryotic range. Thus, E. cuniculi has undergone a massive genome reduction which has resulted in a loss of genes from diverse biological pathways, including those that act in DNA repair.DNA repair is essential to any living cell. A loss of these mechanisms invariably results in accumulation of mutations and/or cell death. Six major pathways of DNA repair in eukaryotes include: non-homologous end joining (NHEJ), homologous recombination repair (HRR), mismatch repair (MMR), nucleotide excision repair (NER), base excision repair (BER) and methyltransferase repair. DNA polymerases are also critical players in DNA repair processes.Given the close relationship between microsporidia and fungi, the repair mechanisms present in E. cuniculi were compared to those of the yeast Saccharomyces cerevisiae to ascertain how the process of genome reduction has affected the DNA repair pathways.
机译:背景钩端脑病是一种独特的单细胞寄生性真核生物,称为微孢子虫,与真菌密切相关。这些生物中的一些,包括cu。cuniculi,也具有在原核生物范围内的独特小基因组。因此,中华绒螯蟹已经经历了大规模的基因组减少,导致各种生物途径(包括那些在DNA修复中起作用的)的基因丢失.DNA修复对于任何活细胞都是必不可少的。这些机制的丧失总是导致突变的积累和/或细胞死亡。真核生物中DNA修复的六个主要途径包括:非同源末端连接(NHEJ),同源重组修复(HRR),错配修复(MMR),核苷酸切除修复(NER),碱基切除修复(BER)和甲基转移酶修复。 DNA聚合酶在DNA修复过程中也起着至关重要的作用。鉴于小孢子虫和真菌之间的密切关系,将cu.cuniculi中存在的修复机制与酿酒酵母进行了比较,以确定基因组还原过程如何影响DNA修复。途径。

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