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Structure–function analysis of yeast RNA debranching enzyme (Dbr1) a manganese-dependent phosphodiesterase

机译:酵母RNA脱支酶(Dbr1)一种锰依赖性磷酸二酯酶的结构-功能分析

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摘要

Saccharomyces cerevisiae Dbr1 is a 405-amino acid RNA debranching enzyme that cleaves the 2′-5′ phosphodiester bonds of the lariat introns formed during pre-mRNA splicing. Debranching appears to be a rate-limiting step for the turnover of intronic RNA, insofar as the steady-state levels of lariat introns are greatly increased in a Δdbr1 strain. To gain insight to the requirements for yeast Dbr1 function, we performed a mutational analysis of 28 amino acids that are conserved in Dbr1 homologs from other organisms. We identified 13 residues (His13, Asp40, Arg45, Asp49, Tyr68, Tyr69, Asn85, His86, Glu87, His179, Asp180, His231 and His233) at which alanine substitutions resulted in lariat intron accumulation in vivo. Conservative replacements at these positions were introduced to illuminate structure–activity relationships. Residues important for Dbr1 function include putative counterparts of the amino acids that comprise the active site of the metallophosphoesterase superfamily, exemplified by the DNA phosphodiesterase Mre11. Using natural lariat RNAs and synthetic branched RNAs as substrates, we found that mutation of Asp40, Asn85, His86, His179, His231 or His233 to alanine abolishes or greatly diminishes debranching activity in vitro. Dbr1 sediments as a monomer and requires manganese as the metal cofactor for debranching.
机译:酿酒酵母Dbr1是一种405个氨基酸的RNA脱支酶,可裂解在mRNA前剪接过程中形成的套索内含子的2'-5'磷酸二酯键。就Δdbr1菌株中套索状内含子的稳态水平大大提高而言,去分支似乎是内含子RNA更新的限速步骤。为了深入了解酵母Dbr1功能的要求,我们对其他生物的Dbr1同源物中保守的28个氨基酸进行了突变分析。我们鉴定了13个残基(His13,Asp40,Arg45,Asp49,Tyr68,Tyr69,Asn85,His86,Glu87,His179,Asp180,His231和His233),在这些残基处丙氨酸取代导致套索内含子在体内积累。在这些位置引入了保守替代物以阐明结构与活性之间的关系。对于Dbr1功能重要的残基包括构成金属磷酸酯酶超家族活性位点的氨基酸的假定对应物,例如DNA磷酸二酯酶Mre11。使用天然套索RNA和合成分支RNA作为底物,我们发现Asp40,Asn85,His86,His179,His231或His233突变为丙氨酸可消除或大大降低体外脱支活性。 Dbr1作为单体沉淀,需要锰作为金属辅助因子进行脱支。

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