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首页> 外文期刊>Nucleic Acids Research >THE GERMLINE GENE ENCODING DNA POLYMERASE ALPHA IN THE HYPOTRICHOUS CILIATE OXYTRICHA NOVA IS EXTREMELY SCRAMBLED
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THE GERMLINE GENE ENCODING DNA POLYMERASE ALPHA IN THE HYPOTRICHOUS CILIATE OXYTRICHA NOVA IS EXTREMELY SCRAMBLED

机译:高度腐烂的柠檬氧化的NOVA中编码DNA聚合酶α的胚芽基因极其混乱。

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摘要

We report the structure of the micronuclear (germline) gene encoding the large catalytic subunit of DNA polymerase alpha (DNA pol alpha) in the ciliate Oxytricha nova. It contains 44 internal eliminated segments (IESs) that divide the gene into 45 macronuclear-destined segments (MDSs) that are in a non-randomly scrambled order with an inversion near the gene center. Odd numbered MDSs 29-43, containing 230 bp out of a total of 4938 bp of macronuclear sequence, are missing from the 14 kb cloned gene. The missing MDSs have not been located but are at least several kilobases from the main body of the gene. The remarkably scrambled DNA pol alpha gene must be extensively cut, re-ordered and spliced and an inversion must occur to produce an unscrambled, functional version of the gene during development of a new macronucleus. Unscrambling is hypothesized to occur by a homologous recombination mechanism guided by repeat sequences at MDS ends.
机译:我们报告了纤毛的Oxytricha nova中编码DNA聚合酶α(DNA pol alpha)的大型催化亚基的微核(胚系)基因的结构。它包含44个内部消除的区段(IESs),这些区段将基因分为45个大核目标区段(MDS),这些区段以非随机的顺序排列,并且在基因中心附近发生了倒置。从14 kb克隆的基因中缺失了奇数编号的MDS 29-43,在总共4938 bp的大核序列中包含230 bp。丢失的MDS尚未找到,但距离基因的主体至少几千个碱基。必须对广泛混乱的DNA pol alpha基因进行大量切割,重新排序和剪接,并且在新的大核发育过程中必须发生反转,以产生该基因的完整版本。假设通过在MDS末端的重复序列指导的同源重组机制发生了加扰。

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