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A protein architecture guided screen for modification dependent restriction endonucleases

机译:蛋白质结构指导的修饰依赖性限制性核酸内切酶筛选

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摘要

Modification dependent restriction endonucleases (MDREs) often have separate catalytic and modification dependent domains. We systematically looked for previously uncharacterized fusion proteins featuring a PUA or DUF3427 domain and HNH or PD-(D/E)XK catalytic domain. The enzymes were clustered by similarity of their putative modification sensing domains into several groups. The TspA15I (VcaM4I, CmeDI), ScoA3IV (MsiJI, VcaCI) and YenY4I groups, all featuring a PUA superfamily domain, preferentially cleaved DNA containing 5-methylcytosine or 5-hydroxymethylcytosine. ScoA3V, also featuring a PUA superfamily domain, but of a different clade, exhibited 6-methyladenine stimulated nicking activity. With few exceptions, ORFs for PUA-superfamily domain containing endonucleases were not close to DNA methyltransferase ORFs, strongly supporting modification dependent activity of the endonucleases. DUF3427 domain containing fusion proteins had very little or no endonuclease activity, despite the presence of a putative PD-(D/E)XK catalytic domain. However, their expression potently restricted phage T4gt in Escherichia coli cells. In contrast to the ORFs for PUA domain containing endonucleases, the ORFs for DUF3427 fusion proteins were frequently found in defense islands, often also featuring DNA methyltransferases.
机译:修饰依赖性限制性核酸内切酶(MDRE)通常具有分开的催化和修饰依赖性域。我们系统地寻找特征为PUA或DUF3427域以及HNH或PD-(D / E)XK催化域的以前未表征的融合蛋白。通过推定的修饰感测域的相似性将酶聚类为几组。 TspA15I(VcaM4I,CmeDI),ScoA3IV(MsiJI,VcaCI)和YenY4I基团均具有PUA超家族结构域,优先切割包含5-甲基胞嘧啶或5-羟甲基胞嘧啶的DNA。 ScoA3V也具有PUA超家族结构域,但具有不同的进化枝,表现出6-甲基腺嘌呤刺激的切刻活性。除极少数情况外,含有PUA超家族结构域的核酸内切酶的ORF与DNA甲基转移酶ORF并不接近,强烈支持核酸内切酶的修饰依赖性活性。尽管存在推定的PD-(D / E)XK催化结构域,但包含DUF3427结构域的融合蛋白却几乎没有或没有核酸内切酶活性。然而,它们的表达有效地限制了大肠杆菌细胞中的噬菌体T4gt。与含有PUA域的核酸内切酶的ORF相反,DUF3427融合蛋白的ORF经常在防御岛中发现,通常还具有DNA甲基转移酶。

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