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首页> 外文期刊>Biochemistry >Kinetic, Dynamic, Ligand Binding Properties, and Structural Models of a Dual-Substrate Specific Nudix Hydrolase from Schizosaccharomyces pombe
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Kinetic, Dynamic, Ligand Binding Properties, and Structural Models of a Dual-Substrate Specific Nudix Hydrolase from Schizosaccharomyces pombe

机译:粟酒裂殖酵母双底物特异性Nudix水解酶的动力学,动态,配体结合特性和结构模型

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摘要

Schizosaccharomyces pombe Aps1 is a nudix hydrolase that catalyzes the hydrolysis of both diadenosine 5′,5′′′-P1,Pn-oligophosphates and diphosphoinositol polyphosphates in vitro. Nudix hydrolases act upon a wide variety of substrates, despite having a common 23 amino acid catalytic motif; hence, the residues responsible for substrate specificity are considered to reside outside the common catalytic nudix motif. The specific residues involved in binding each substrate of S. pombe Aps1 are unknown. In this study, we have conducted mutational and kinetic studies in combination with structural homology modeling and NMR spectroscopic analyses to identify potential residues involved in binding each class of substrates. This study demonstrates several major findings with regard to Aps1. First, the determination of the kinetic parameters of Km and kcat indicated that the initial 31 residues of Aps1 are not involved in substrate binding or catalysis with respect to Ap6A. Second, NMR spectroscopic analyses revealed the secondary structure and three dynamic backbone regions, one of which corresponds to a large insert in Aps1 as compared to other putative fungal orthologues. Third, two structural models of Aps1Δ2−19, based on the crystal structures of human DIPP1 and T. thermophilus Ndx1, were generated using homology modeling. The structural models were in excellent agreement with the NMR-derived secondary structure of Aps1Δ2−19. Fourth, NMR chemical shift mapping in conjunction with structural homology models indicated several residues outside the catalytic nudix motif that are involved in specific binding of diphosphoinositol polyphosphate or diadenosine oligophosphate ligands
机译:Schizosaccharomyces pombe Aps1是一种nudix水解酶,可在体外催化尿苷5',5''-P1,Pn-低聚磷酸盐和二磷酸肌醇多磷酸盐的水解。尽管具有常见的23个氨基酸催化基元,但Nudix水解酶仍可作用于多种底物。因此,负责底物特异性的残基被认为位于常见的催化纳迪克斯基序之外。结合S. pombe Aps1的每个底物所涉及的特定残基是未知的。在这项研究中,我们结合结构同源性建模和NMR光谱分析进行了突变和动力学研究,以鉴定参与结合每种底物的潜在残基。这项研究表明有关Aps1的几个主要发现。首先,Km和kcat动力学参数的确定表明Aps1的最初31个残基不参与底物结合或对Ap6A的催化作用。其次,NMR光谱分析揭示了二级结构和三个动态主链区域,与其他推定的真菌直向同源物相比,其中一个对应于Aps1中的大插入片段。第三,通过同源性建模,建立了基于人DIPP1和嗜热链球菌Ndx1的晶体结构的Aps1Δ2-1-19的两个结构模型。结构模型与NMR衍生的Aps1Δ2-1-19的二级结构非常吻合。第四,NMR化学位移图谱与结构同源性模型相结合,表明催化的nudix基序之外的多个残基与二磷酸肌醇多磷酸酯或二腺苷低聚磷酸配体的特异性结合有关

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