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Mechanistic insights into the manganese-dependent phosphodiesterase activity of yeast Dbr1 with bis-p-nitrophenylphosphate and branched RNA substrates

机译:机械的洞察力与双对硝基苯基磷酸酯和分支的RNA底物的酵母Dbr1锰依赖的磷酸二酯酶活性。

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摘要

Saccharomyces cerevisiae Dbr1 is a manganese-dependent RNA debranching enzyme that cleaves the 2'-5' phosphodiester bond of the lariat introns formed during pre-mRNA splicing. Dbr1 is a member of the binuclear metallophosphoesterase enzyme superfamily. We showed previously via alanine scanning that RNA debranching in vivo and in vitro depends on conserved active site residues His13, Asp40, Asn85, His86, His179, His231, and His233. Here, by extending the alanine scan, we added Cys11 to the ensemble of essential active site components. We report that Dbr1 has a vigorous manganese-dependent phosphodiesterase activity with the non-RNA substrate bis-p-nitrophenylphosphate. Whereas RNA debranching requires His86, bis-p-nitrophenylphosphatase activity does not. We interpret these and other structure-activity relations reported here in light of the crystal structures of Entamoeba Dbr1 and other homologous binuclear metallophosphodiesterases. Our results suggest that (i) Dbr1 adheres to the two-metal mechanism of the enzyme superfamily, but is distinguished by its reliance on a Cys11-Xaa-His13 motif to engage one of the catalytic metals instead of the Asp-Xaa-His element typical of other clades within the superfamily; (ii) His86 is a general acid catalyst that protonates the O2' leaving group of the RNA 2'-5' phosphodiester; and (iii) the favorable pK(a) of p-nitrophenol elides the strict need for a general acid during hydrolysis of bis-p-nitrophenylphosphate. The Dbr1 bis-p-nitrophenylphosphatase activity is well suited for high-throughput screening for inhibitors of debranching.
机译:酿酒酵母Dbr1是一种锰依赖性RNA解支酶,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。 Dbr1是双核金属磷酸酯酶酶超家族的成员。我们以前通过丙氨酸扫描显示,体内和体外的RNA脱支依赖于保守的活性位点残基His13,Asp40,Asn85,His86,His179,His231和His233。在这里,通过扩展丙氨酸扫描,我们将Cys11添加到基本活性位点组件的集合中。我们报告说Dbr1具有非RNA底物双对硝基苯基磷酸酯具有旺盛的锰依赖性磷酸二酯酶活性。 RNA脱支需要His86,而双对硝基苯基磷酸酶活性则不需要。我们根据Entamoeba Dbr1和其他同源双核金属磷酸二酯酶的晶体结构解释这里报道的这些和其他结构活性关系。我们的研究结果表明(i)Dbr1坚持酶超家族的双金属机制,但其特征在于它依赖于Cys11-Xaa-His13图案来接合一种催化金属而不是Asp-Xaa-His元素。超家族中其他分支的典型特征; (ii)His86是一种通用的酸催化剂,可质子化RNA 2'-5'磷酸二酯的O2'离开基团; (iii)对硝基苯酚的有利的pK(a)在双-对硝基苯基磷酸酯的水解过程中严格要求通用酸。 Dbr1双-对-硝基苯基磷酸酶的活性非常适合高通量筛选脱支抑制剂。

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