多诺瓦利什曼原虫腺苷酸激酶2基因的分子和功能分析。

Héctor Villa, Yolanda Pérez-Pertejo, Carlos García-Estrada, Rosa M Reguera, José María Requena, Babu L Tekwani, Rafael Balaña-Fouce, David Ordóñez
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引用次数: 28

摘要

ATP再生酶可能在维持寄生原生动物线粒体样动质体细胞器和糖体ATP水平中起重要作用。腺苷酸激酶(AK) (ATP:AMP磷酸转移酶)催化γ -磷酸基团从ATP可逆转移到AMP,释放两分子ADP。本研究报道了多诺瓦利什曼原虫基因组文库中AK2基因的克隆和功能特征,以及该基因在促生利什曼原虫培养中的表达。AK2作为一个单拷贝基因定位在约1.9 mb的染色体带上。L. donovani AK2基因表达为一个1.9 kb的mRNA转录本,在早期log期受发育调控和积累。L. donovani AKgene在大肠杆菌中的过表达产生了一个26 kda的多肽,该多肽可以被折叠成具有AK活性的功能蛋白。重组蛋白纯化后均质性明显。动力学分析表明,纯化的L. donovani AK对ATP和AMP均表现出双曲行为,Km值分别为104和74微米。最大酶活(Vmax)为0.18 micromol.min(-1).mg(-1) protein。P1,P5-(双腺苷)-5'-五磷酸(Ap5A), AK特异性抑制剂,竞争性抑制重组酶的活性,估计Ki值分别为190 nM和160 nM。Ap5A对L. donovani promastigotes的体外生长也有抑制作用,ADP只能部分逆转这种抑制作用。因此,高度调控AK2的存在,可能在L. donovani中维持ADP/ATP水平中起作用,已被证实。
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Molecular and functional characterization of adenylate kinase 2 gene from Leishmania donovani.

ATP-regenerating enzymes may have an important role in maintaining ATP levels in mitochondria-like kinetoplast organelle and glycosomes in parasitic protozoa. Adenylate kinase (AK) (ATP:AMP phosphotransferase) catalyses the reversible transfer of the gamma-phosphate group from ATP to AMP, releasing two molecules of ADP. This study describes cloning and functional characterization of the gene encoding AK2 from a genomic library of Leishmania donovani and also its expression in leishmania promastigote cultures. AK2 was localized on an approximately 1.9-Mb chromosomal band as a single copy gene. L. donovani AK2 gene is expressed as a single 1.9-kb mRNA transcript that is developmentally regulated and accumulated during the early log phase. The overexpression of L. donovani AKgene in Escherichia coli yielded a 26-kDa polypeptide that could be refolded to a functional protein with AK activity. The recombinant protein was purified to apparent homogeneity. Kinetic analysis of purified L. donovani AK showed hyperbolic behaviour for both ATP and AMP, with Km values of 104 and 74 microM, respectively. The maximum enzyme activity (Vmax) was 0.18 micromol.min(-1).mg(-1) protein. P1,P5-(bis adenosine)-5'-pentaphosphate (Ap5A), the specific inhibitor of AK, competitively inhibited activity of the recombinant enzymes with estimated Ki values of 190 nM and 160 nM for ATP and AMP, respectively. Ap5A also inhibited the growth of L. donovani promastigotes in vitro which could be only partially reversed by the addition of ADP. Thus, presence of a highly regulated AK2, which may have role in maintenance of ADP/ATP levels in L. donovani, has been demonstrated.

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