López-Villamizar Iralis, Cabezas Alicia, Pinto Rosa María, Canales José, Ribeiro João Meireles, Cameselle José Carlos, Costas María Jesús
Grupo de Enzimología, Departamento de Bioquímica y Biología Molecular y Genética, Facultad de Medicina, Universidad de Extremadura, Badajoz, Spain.
PLoS One. 2016 Jun 13;11(6):e0157308. doi: 10.1371/journal.pone.0157308. eCollection 2016.
Endogenous cyclic diadenylate phosphodiesterase activity was accidentally detected in lysates of Escherichia coli BL21. Since this kind of activity is uncommon in Gram-negative bacteria, its identification was undertaken. After partial purification and analysis by denaturing gel electrophoresis, renatured activity correlated with a protein identified by fingerprinting as CpdB (cpdB gene product), which is annotated as 3´-nucleotidase / 2´,3´-cyclic-mononucleotide phosphodiesterase, and it is synthesized as a precursor protein with a signal sequence removable upon export to the periplasm. It has never been studied as a recombinant protein. The coding sequence of mature CpdB was cloned and expressed as a GST fusion protein. The study of the purified recombinant protein, separated from GST, confirmed CpdB annotation. The assay of catalytic efficiencies (kcat/Km) for a large substrate set revealed novel CpdB features, including very high efficiencies for 3´-AMP and 2´,3´-cyclic mononucleotides, and previously unknown activities on cyclic and linear dinucleotides. The catalytic efficiencies of the latter activities, though low in relative terms when compared to the major ones, are far from negligible. Actually, they are perfectly comparable to those of the 'average' enzyme and the known, bona fide cyclic dinucleotide phosphodiesterases. On the other hand, CpdB differs from these enzymes in its extracytoplasmic location and in the absence of EAL, HD and DHH domains. Instead, it contains the domains of the 5´-nucleotidase family pertaining to the metallophosphoesterase superfamily, although CpdB lacks 5´-nucleotidase activity. The possibility that the extracytoplasmic activity of CpdB on cyclic dinucleotides could have physiological meaning is discussed.
在大肠杆菌BL21的裂解物中意外检测到内源性环二腺苷酸磷酸二酯酶活性。由于这种活性在革兰氏阴性菌中并不常见,因此对其进行了鉴定。经过部分纯化并通过变性凝胶电泳分析后,复性活性与通过指纹识别鉴定为CpdB(cpdB基因产物)的一种蛋白质相关,该蛋白质注释为3'-核苷酸酶/2',3'-环单核苷酸磷酸二酯酶,它以前体蛋白的形式合成,带有一个在输出到周质时可去除的信号序列。它从未作为重组蛋白进行过研究。成熟CpdB的编码序列被克隆并表达为GST融合蛋白。对从GST中分离出的纯化重组蛋白的研究证实了CpdB的注释。对大量底物的催化效率(kcat/Km)测定揭示了CpdB的新特性,包括对3'-AMP和2',3'-环单核苷酸的极高效率,以及对环和线性二核苷酸的先前未知活性。后一种活性的催化效率,尽管与主要活性相比相对较低,但远非可以忽略不计。实际上,它们与“普通”酶和已知的、真正的环二核苷酸磷酸二酯酶的催化效率完全可比。另一方面,CpdB在其胞外定位以及缺乏EAL、HD和DHH结构域方面与这些酶不同。相反,它包含属于金属磷酸酯酶超家族的5'-核苷酸酶家族的结构域,尽管CpdB缺乏5'-核苷酸酶活性。讨论了CpdB对环二核苷酸的胞外活性可能具有生理意义的可能性。