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首页> 外文期刊>Biochemistry >Chemistry with an Artificial Primer of Polyhydroxybutyrate Synthase Suggests a Mechanism for Chain Termination
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Chemistry with an Artificial Primer of Polyhydroxybutyrate Synthase Suggests a Mechanism for Chain Termination

机译:化学与人工引物的聚羟基丁酸合酶的化学提示链终止的机制。

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Polyhydroxybutyrate (PHB) synthases (PhaCs) catalyze the conversion of 3-(R)-hydroxybutyryl CoA (HBCoA) to PHB, which is deposited as granules in the cytoplasm of microorganisms. The class I PhaC from Caulobacter crescentus (PhaC(Cc)) is a highly soluble protein with a turnover number of 75 s(-1) and no lag phase in coenzyme A (CoA) release. Studies with [1-14C]HBCoA and PhaC(Cc) monitored by sodium dodecyl sulfatepolyacrylamide gel electrophoresis (SDS-PAGE) and autoradiography reveal that the rate of elongation is much faster than the rate of initiation. Priming with the artificial primer [H-3](s)TCoA and monitoring for CoA release reveal a single CoA/PhaC, suggesting that the protein is uniformly loaded and that the elongation process could be studied. Reaction of sT-PhaC(Cc) with [1-C-14]HBCoA revealed that priming with sTCoA increased the uniformity of elongation, allowing distinct polymerization species to be observed by SDSPAGE and autoradiography. However, in the absence of HBCoA, [H-3](s)T-PhaC unexpectedly generates [H-3](s)DCoA with a rate constant of 0.017 s(-1). We propose that the [H-3](s)DCoA forms via attack of CoA on the oxoester of the [H-3](s)T-PhaC chain, leaving the synthase attached to a single HB unit. Comparison of the relative rate constants of thiolysis by CoA and elongation by PhaC(Cc), and the size of the PHB polymer generated in vivo, suggests a mechanism for chain termination and reinitiation.
机译:聚羟基丁酸酯(PHB)合成酶(PhaCs)催化3-(R)-羟基丁酰CoA(HBCoA)向PHB的转化,PHB以颗粒形式沉积在微生物的细胞质中。来自新月形杆菌(Caulobacter crescentus)的I类PhaC(PhaC(Cc))是一种高度可溶的蛋白质,周转数为75 s(-1),辅酶A(CoA)释放没有滞后阶段。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)和放射自显影对[1-14C] HBCoA和PhaC(Cc)进行的研究表明,伸长速率比起始速率快得多。人工引物[H-3](s)TCoA的引发和CoA释放的监测揭示了一个单一的CoA / PhaC,这表明该蛋白质被均匀地加载并且可以研究延伸过程。 sT-PhaC(Cc)与[1-C-14] HBCoA的反应表明,用sTCoA引发增加了伸长的均匀性,从而可以通过SDSPAGE和放射自显影观察到独特的聚合物种。但是,在不存在HBCoA的情况下,[H-3](s)T-PhaC意外地生成了速率常数为0.017 s(-1)的[H-3](s)DCoA。我们提出[H-3](s)DCoA通过攻击[H-3] T-PhaC链含氧酸酯的CoA形成,而使合酶附着在单个HB单元上。 CoA硫解相对速率常数和PhaC(Cc)延伸速率的相对速率常数,以及体内生成的PHB聚合物的大小的比较表明,链终止和重新初始化的机制。

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