Programa de Pós-graduação em Bioquímica, Departamento de Bioquímica, Instituto de Ciências Básicas da Saúde, Universidade Federal do Rio Grande do Sul. Rua Ramiro Barcelos 2600-Anexo, 90035-003, Porto Alegre, RS, Brazil.
Comp Biochem Physiol B Biochem Mol Biol. 2010 Mar;155(3):230-40. doi: 10.1016/j.cbpb.2009.11.005. Epub 2009 Nov 14.
The nucleoside triphosphate diphosphohydrolase (NTPDase) family cleaves tri- and diphosphonucleosides to monophosphonucleosides and is responsible for terminating purinergic transmission. Since the NTPDase family in zebrafish is poorly understood, here we evaluated the nucleotide hydrolysis in three tissues of adult zebrafish (brain, liver, and heart), confirmed the presence of distinct NTPDase members by a phylogenetic analysis and verified their relative gene expression profiles in the respective tissues. A different profile of ATP and ADP hydrolysis in the brain, liver, and heart as a function of time and protein concentration was observed. Sodium azide (20mM), ARL 67156 (300 microM) and Suramin (300 microM) differently altered the nucleotide hydrolysis in zebrafish tissues, suggesting the contribution of distinct NTPDase activities. Homology-based searches identified the presence of NTPDase1-6 and NTPDase8 orthologs and the phylogeny also grouped three NTPDase2 and two NTPDase5 paralogs. The deduced amino acid sequences share the apyrase conserved regions, conserved cysteine residues, putative N-glycosylation, phosphorylation, N-acetylation sites, and different numbers of transmembrane domains. RT-PCR experiments revealed the existence of a distinct relative entpd1-6 and entpd8 expression profile in brain, liver, and heart. Taken together, these results indicate that several NTPDase members might contribute to a tight regulation of nucleotide hydrolysis in zebrafish tissues.
核苷三磷酸二磷酸水解酶(NTPDase)家族将三磷酸核苷和二磷酸核苷水解为单磷酸核苷,并负责终止嘌呤能传递。由于斑马鱼中的 NTPDase 家族了解甚少,因此我们在这里评估了成年斑马鱼三种组织(脑、肝和心脏)中的核苷酸水解,通过系统发生分析证实了存在不同的 NTPDase 成员,并在各自组织中验证了它们的相对基因表达谱。观察到脑、肝和心脏中 ATP 和 ADP 水解的不同时间和蛋白浓度的特征。20mM 叠氮化钠(NaN3)、300μM ARL 67156 和 300μM 苏拉明(suramin)不同地改变了斑马鱼组织中的核苷酸水解,表明存在不同的 NTPDase 活性。基于同源性搜索鉴定出 NTPDase1-6 和 NTPDase8 同源物,系统发生分析还将三个 NTPDase2 和两个 NTPDase5 基因聚为一组。推断的氨基酸序列共享脱氨酶保守区、保守半胱氨酸残基、潜在的 N-糖基化、磷酸化、N-乙酰化位点和不同数量的跨膜结构域。RT-PCR 实验显示,脑、肝和心脏中存在独特的相对 entpd1-6 和 entpd8 表达谱。总之,这些结果表明,几个 NTPDase 成员可能有助于斑马鱼组织中核苷酸水解的紧密调节。