Cabezas Alicia, Ribeiro João Meireles, Rodrigues Joaquim Rui, López-Villamizar Iralis, Fernández Ascensión, Canales José, Pinto Rosa María, Costas María Jesús, Cameselle José Carlos
Grupo de Enzimología, Departamento de Bioquímica y Biología Molecular y Genética, Facultad de Medicina, Universidad de Extremadura, Badajoz, Spain.
Escola Superior de Tecnologia e Gestão, Instituto Politécnico de Leiria, Leiria, Portugal.
PLoS One. 2015 Feb 18;10(2):e0118680. doi: 10.1371/journal.pone.0118680. eCollection 2015.
Among metallo-dependent phosphatases, ADP-ribose/CDP-alcohol diphosphatases form a protein family (ADPRibase-Mn-like) mainly restricted, in eukaryotes, to vertebrates and plants, with preferential expression, at least in rodents, in immune cells. Rat and zebrafish ADPRibase-Mn, the only biochemically studied, are phosphohydrolases of ADP-ribose and, somewhat less efficiently, of CDP-alcohols and 2´,3´-cAMP. Furthermore, the rat but not the zebrafish enzyme displays a unique phosphohydrolytic activity on cyclic ADP-ribose. The molecular basis of such specificity is unknown. Human ADPRibase-Mn showed similar activities, including cyclic ADP-ribose phosphohydrolase, which seems thus common to mammalian ADPRibase-Mn. Substrate docking on a homology model of human ADPRibase-Mn suggested possible interactions of ADP-ribose with seven residues located, with one exception (Cys253), either within the metallo-dependent phosphatases signature (Gln27, Asn110, His111), or in unique structural regions of the ADPRibase-Mn family: s2s3 (Phe37 and Arg43) and h7h8 (Phe210), around the active site entrance. Mutants were constructed, and kinetic parameters for ADP-ribose, CDP-choline, 2´,3´-cAMP and cyclic ADP-ribose were determined. Phe37 was needed for ADP-ribose preference without catalytic effect, as indicated by the increased ADP-ribose Km and unchanged kcat of F37A-ADPRibase-Mn, while the Km values for the other substrates were little affected. Arg43 was essential for catalysis as indicated by the drastic efficiency loss shown by R43A-ADPRibase-Mn. Unexpectedly, Cys253 was hindering for cADPR phosphohydrolase, as indicated by the specific tenfold gain of efficiency of C253A-ADPRibase-Mn with cyclic ADP-ribose. This allowed the design of a triple mutant (F37A+L196F+C253A) for which cyclic ADP-ribose was the best substrate, with a catalytic efficiency of 3.5´104 M-1s-1 versus 4´103 M-1s-1 of the wild type.
在金属依赖性磷酸酶中,ADP-核糖/CDP-醇二磷酸酶形成了一个蛋白家族(类ADPRibase-Mn),在真核生物中主要局限于脊椎动物和植物,至少在啮齿动物中,在免疫细胞中优先表达。大鼠和斑马鱼的ADPRibase-Mn是仅有的经过生物化学研究的,它们是ADP-核糖的磷酸水解酶,对CDP-醇和2´,3´-环磷酸腺苷(2´,3´-cAMP)的催化效率稍低。此外,大鼠的这种酶而非斑马鱼的酶对环ADP-核糖具有独特的磷酸水解活性。这种特异性的分子基础尚不清楚。人类的ADPRibase-Mn表现出类似的活性,包括环ADP-核糖磷酸水解酶活性,因此这似乎是哺乳动物ADPRibase-Mn的共同特征。将底物对接至人类ADPRibase-Mn的同源模型表明,ADP-核糖可能与七个残基相互作用,其中一个例外(Cys253),这些残基要么位于金属依赖性磷酸酶特征序列内(Gln27、Asn110、His111),要么位于ADPRibase-Mn家族的独特结构区域:活性位点入口周围的s2s3(Phe37和Arg43)和h7h8(Phe21)。构建了突变体,并测定了ADP-核糖、CDP-胆碱、2´,3´-cAMP和环ADP-核糖的动力学参数。F37A-ADPRibase-Mn的ADP-核糖米氏常数(Km)增加而催化常数(kcat)不变,这表明Phe37是ADP-核糖偏好所必需的,但无催化作用,而其他底物的Km值受影响较小。R43A-ADPRibase-Mn显示出效率大幅损失,这表明Arg43对催化至关重要。出乎意料的是,Cys253对环ADP-核糖磷酸水解酶有阻碍作用,这从C253A-ADPRibase-Mn对环ADP-核糖的效率特异性提高了十倍可以看出。这使得设计出一种三重突变体成为可能(F37A+L196F+C253A),对于该突变体,环ADP-核糖是最佳底物,其催化效率为3.5×104 M-1s-1,而野生型为4×103 M-1s-1。