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Insertion of a homing endonuclease creates a genes-in-pieces ribonucleotide reductase that retains function

机译:归巢内切核酸酶的插入产生保留功能的逐个基因核糖核苷酸还原酶

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In bacterial and phage genomes, coding regions are sometimes interrupted by self-splicing introns or inteins, which can encode mobility-promoting homing endonucleases. Homing endonuclease genes are also found free-standing (not intron- or intein-encoded) in phage genomes where they are inserted in intergenic regions. One example is the HNH family endonuclease, mobE, inserted between the large (nrdA) and small (nrdB) subunit genes of aerobic ribonucleotide reductase (RNR) of T-even phages T4, RB2, RB3, RB15, and LZ7. Here, we describe an insertion of mobE into the nrdA gene of Aeromonas hydrophila phage Aeh1. The insertion creates a unique genes-in-pieces arrangement, where nrdA is split into two independent genes, nrdA-a and nrdA-b, each encoding cysteine residues that correspond to the active-site residues of uninterrupted NrdA proteins. Remarkably, the mobE insertion does not inactivate NrdA function, although the insertion is not a self-splicing intron or intein. We copurified the NrdA-a, NrdA-b, and NrdB proteins as complex from Aeh1-infected cells and also showed that a reconstituted complex has RNR activity. Class Ⅰ RNR activity in phage Aeh1 is thus assembled from separate proteins that interact to form a composite active site, demonstrating that the mobE insertion is phenotypically neutral in that its presence as an intervening sequence does not disrupt the function of the surrounding gene.
机译:在细菌和噬菌体基因组中,编码区有时会被自我剪接的内含子或内含子打断,这些内含子或内含子可以编码促进运动的归巢内切核酸酶。在噬菌体基因组中插入归巢核酸内切酶基因也是独立的(非内含子或内含肽编码的),它们被插入基因间区域。一个例子是HNH家族核酸内切酶mobE,插入在T-even噬菌体T4,RB2,RB3,RB15和LZ7的好氧核糖核苷酸还原酶(RNR)的大(nrdA)和小(nrdB)亚基基因之间。在这里,我们描述了mobE插入嗜水气单胞菌噬菌体Aeh1的nrdA基因。该插入产生了独特的片段式基因排列方式,其中nrdA分为两个独立的基因nrdA-a和nrdA-b,每个基因编码的半胱氨酸残基对应于不间断的NrdA蛋白的活性位点残基。值得注意的是,尽管mobE插入不是自剪接的内含子或内含子,但不会使NrdA功能失活。我们从被Aeh1感染的细胞中共纯化NrdA-a,NrdA-b和NrdB蛋白为复合物,并且还表明重组的复合物具有RNR活性。因此,噬菌体Aeh1中的Ⅰ类RNR活性由相互作用形成复合活性位点的单独蛋白质组装而成,这表明mobE插入在表型上是中性的,因为它作为中间序列存在并不破坏周围基因的功能。

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