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Characterization of the phosphotransacetylase-acetate kinase pathway for ATP production in Porphyromonas gingivalis

机译:牙龈卟啉单胞菌中磷酸转乙酰酶乙酸酯激酶途径的ATP合成

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ABSTRACT Acetyl phosphate (AcP) is generally produced from acetyl coenzyme A by phosphotransacetylase (Pta), and subsequent reaction with ADP, catalyzed by acetate kinase (Ack), produces ATP. The mechanism of ATP production in Porphyromonas gingivalis is poorly understood. The aim of this study was to explore the molecular basis of the Pta-Ack pathway in this microorganism. Pta and Ack from P. gingivalis ATCC 33277 were enzymatically and structurally characterized. Structural and mutational analyses suggest that Pta is a dimer with two substrate-binding sites in each subunit. Ack is also dimeric, with a catalytic cleft in each subunit, and structural analysis indicates a dramatic domain motion that opens and closes the cleft during catalysis. ATP formation by Ack proceeds via a sequential mechanism. Reverse transcription-PCR analysis demonstrated that the pta ( PGN_1179 ) and ack ( PGN_1178 ) genes, tandemly located in the genome, are cotranscribed as an operon. Inactivation of pta or ack in P. gingivalis by homologous recombination was successful only when the inactivated gene was expressed in trans . Therefore, both pta and ack genes are essential for this microorganism. Insights into the Pta-Ack pathway reported herein would be helpful to understand the energy acquisition in P. gingivalis .
机译:摘要磷酸乙酰乙酸酯(AcP)通常是通过磷酸转乙酰酶(Pta)由乙酰辅酶A产生的,随后在乙酸激酶(Ack)的催化下与ADP反应生成ATP。牙龈卟啉单胞菌中ATP产生的机制知之甚少。这项研究的目的是探索这种微生物中Pta-Ack途径的分子基础。在酶学和结构上表征了来自牙龈卟啉单胞菌ATCC 33277的Pta和Ack。结构和突变分析表明,Pta是一个二聚体,每个亚基中都有两个底物结合位点。 Ack也是二聚体,每个亚基中都有一个催化裂隙,结构分析表明,在催化过程中,开裂和闭合裂隙的剧烈区域运动。 Ack通过顺序机制进行ATP形成。逆转录-PCR分析表明,位于基因组中的pta(PGN_1179)和ack(PGN_1178)基因被共转录为操纵子。只有当灭活的基因在反式表达时,同源重组才能使牙龈卟啉菌pta或ack失活。因此,pta和ack基因对于该微生物都是必不可少的。对本文报道的Pta-Ack途径的深入了解将有助于理解牙龈卟啉单胞菌的能量获取。

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