Grupo de Enzimología, Departamento de Bioquímica y Biología Molecular y Genética, Facultad de Medicina, Universidad de Extremadura, Badajoz, Spain.
PLoS One. 2012;7(7):e42249. doi: 10.1371/journal.pone.0042249. Epub 2012 Jul 27.
The ADPRibase-Mn-like protein family, that belongs to the metallo-dependent phosphatase superfamily, has different functional and structural prototypes. The functional one is the Mn(2+)-dependent ADP-ribose/CDP-alcohol diphosphatase from Rattus norvegicus, which is essentially inactive with Mg(2+) and active with low micromolar Mn(2+) in the hydrolysis of the phosphoanhydride linkages of ADP-ribose, CDP-alcohols and cyclic ADP-ribose (cADPR) in order of decreasing efficiency. The structural prototype of the family is a Danio rerio protein with a known crystallographic structure but functionally uncharacterized. To estimate the structure-function correlation with the same protein, the activities of zebrafish ADPRibase-Mn were studied. Differences between zebrafish and rat enzymes are highlighted. The former showed a complex activity dependence on Mn(2+), significant (≈25%) Mg(2+)-dependent activity, but was almost inactive on cADPR (150-fold less efficient than the rat counterpart). The low cADPR hydrolase activity agreed with the zebrafish genome lacking genes coding for proteins with significant homology with cADPR-forming enzymes. Substrate-docking to zebrafish wild-type protein, and characterization of the ADPRibase-Mn H97A mutant pointed to a role of His-97 in catalysis by orientation, and to a bidentate water bridging the dinuclear metal center as the potential nucleophile. Finally, three structural elements that delimit the active site entrance in the zebrafish protein were identified as unique to the ADPRibase-Mn-like family within the metallo-dependent phosphatase superfamily.
ADPRibase-Mn 样蛋白家族属于金属依赖磷酸酶超家族,具有不同的功能和结构原型。功能原型是来自挪威褐鼠的 Mn(2+)-依赖的 ADP-核糖/CDP-醇二磷酸酶,它在水解 ADP-核糖、CDP-醇和环状 ADP-核糖(cADPR)的磷酸酐键时,本质上无活性的 Mg(2+)和低微摩尔 Mn(2+)下具有活性,活性依次降低。该家族的结构原型是一种具有已知晶体结构但功能未被表征的 Danio rerio 蛋白。为了估计与同一蛋白的结构-功能相关性,研究了斑马鱼 ADPRibase-Mn 的活性。突出了斑马鱼和大鼠酶之间的差异。前者显示出对 Mn(2+)的复杂活性依赖性,显著的(≈25%)Mg(2+)-依赖性活性,但对 cADPR 的活性几乎没有(比大鼠对应物的效率低 150 倍)。低 cADPR 水解酶活性与斑马鱼基因组缺乏编码与 cADPR 形成酶具有显著同源性的蛋白的基因一致。底物对接至斑马鱼野生型蛋白,并对 ADPRibase-Mn H97A 突变体进行了表征,指出 His-97 通过定向在催化中起作用,并通过双齿水桥接双核金属中心作为潜在的亲核试剂。最后,鉴定了三个结构元素,它们将活性位点入口限定在斑马鱼蛋白中,这在金属依赖磷酸酶超家族中的 ADPRibase-Mn 样家族中是独特的。