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Two Archaeal RecJ Nucleases from Methanocaldococcus jannaschii Show Reverse Hydrolysis Polarity: Implication to Their Unique Function in Archaea

机译:詹氏甲烷球菌的两个古细菌RecJ核酸酶显示逆水解极性:暗示其在古细菌中的独特功能

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Bacterial nuclease RecJ, which exists in almost all bacterial species, specifically degrades single-stranded (ss) DNA in the 5′ to 3′ direction. Some archaeal phyla, except Crenarchaea, also encode RecJ homologs. Compared with bacterial RecJ, archaeal RecJ exhibits a largely different amino acid sequence and domain organization. Archaeal RecJs from Thermococcus kodakarensis and Pyrococcus furiosus show 5′→3′ exonuclease activity on ssDNA. Interestingly, more than one RecJ exists in some Euryarchaeota classes, such as Methanomicrobia, Methanococci, Methanomicrobia, Methanobacteria, and Archaeoglobi. Here we report the biochemical characterization of two RecJs from Methanocaldococcus jannaschii , the long RecJ1 (MJ0977) and short RecJ2 (MJ0831) to understand their enzymatic properties. RecJ1 is a 5′→3′ exonuclease with a preference to ssDNA; however, RecJ2 is a 3′→5′ exonuclease with a preference to ssRNA. The 5′ terminal phosphate promotes RecJ1 activity, but the 3′ terminal phosphate inhibits RecJ2 nuclease. Go-Ichi-Ni-San (GINS) complex does not interact with two RecJs and does not promote their nuclease activities. Finally, we discuss the diversity, function, and molecular evolution of RecJ in archaeal taxonomy. Our analyses provide insight into the function and evolution of conserved archaeal RecJ/eukaryotic Cdc45 protein.
机译:几乎所有细菌物种中都存在的细菌核酸酶RecJ,可在5'至3'方向特异性降解单链(ss)DNA。除Crenarchaea外,一些古细菌门也编码RecJ同源物。与细菌RecJ相比,古细菌RecJ表现出很大的氨基酸序列和域结构。来自柯达热球菌和激烈热球菌的古细菌RecJs对ssDNA表现出5'→3'核酸外切酶活性。有趣的是,在某些Euryarchaeota类中存在多个RecJ,例如Methanomicrobia,Methanococci,Methanomicrobia,Methanobacteria和Archeeoglobi。在这里,我们报告了来自詹氏甲烷球菌的两个RecJ的生化特征,长的RecJ1(MJ0977)和短的RecJ2(MJ0831)了解它们的酶学特性。 RecJ1是5'→3'核酸外切酶,优先于ssDNA;但是,RecJ2是3'→5'核酸外切酶,优先于ssRNA。 5'末端磷酸酯促进RecJ1活性,但是3'末端磷酸酯抑制RecJ2核酸酶。 Go-Ichi-Ni-San(GINS)复合物不会与两个RecJ相互作用,也不会促进其核酸酶活性。最后,我们讨论了古细菌分类学中RecJ的多样性,功能和分子进化。我们的分析提供了保守的古细菌RecJ /真核Cdc45蛋白的功能和进化的见解。

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