首页> 外文OA文献 >Isolated Poly(3-Hydroxybutyrate) (PHB) Granules Are Complex Bacterial Organelles Catalyzing Formation of PHB from Acetyl Coenzyme A (CoA) and Degradation of PHB to Acetyl-CoA▿
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Isolated Poly(3-Hydroxybutyrate) (PHB) Granules Are Complex Bacterial Organelles Catalyzing Formation of PHB from Acetyl Coenzyme A (CoA) and Degradation of PHB to Acetyl-CoA▿

机译:分离的聚(3-羟基丁酸)(PHB)颗粒是催化细菌从乙酰辅酶A(CoA)形成PHB并将PHB降解为乙酰CoA▿的复杂细菌细胞器。

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摘要

Poly(3-hydroxybutyrate) (PHB) granules isolated in native form (nPHB granules) from Ralstonia eutropha catalyzed formation of PHB from 14C-labeled acetyl coenzyme A (CoA) in the presence of NADPH and concomitantly released CoA, revealing that PHB biosynthetic proteins (acetoacetyl-CoA thiolase, acetoacetyl-CoA reductase, and PHB synthase) are present and active in isolated nPHB granules in vitro. nPHB granules also catalyzed thiolytic cleavage of PHB in the presence of added CoA, resulting in synthesis of 3-hydroxybutyryl-CoA (3HB-CoA) from PHB. Synthesis of 3HB-CoA was also shown by incubation of artificial (protein-free) PHB with CoA and PhaZa1, confirming that PhaZa1 is a PHB depolymerase catalyzing the thiolysis reaction. Acetyl-CoA was the major product detectable after incubation of nPHB granules in the presence of NAD+, indicating that downstream mobilizing enzyme activities were also present and active in isolated nPHB granules. We propose that intracellular concentrations of key metabolites (CoA, acetyl-CoA, 3HB-CoA, NAD+/NADH) determine whether a cell accumulates or degrades PHB. Since the degradation product of PHB is 3HB-CoA, the cells do not waste energy by synthesis and degradation of PHB. Thus, our results explain the frequent finding of simultaneous synthesis and breakdown of PHB.
机译:在NADPH存在下从富营养小球藻(Ralstonia eutropha)分离得到的天然形式(nPHB颗粒)的聚(3-羟基丁酸)(PHB)颗粒催化了14C标记的乙酰辅酶A(CoA)形成的PHB,并伴随释放了CoA,表明PHB是生物合成蛋白(乙酰乙酰基-CoA硫解酶,乙酰乙酰基-CoA还原酶和PHB合酶)存在且在体外分离的nPHB颗粒中具有活性。在添加的CoA的存在下,nPHB颗粒还催化了PHB的硫解裂解,从而由PHB合成了3-羟基丁酰-CoA(3HB-CoA)。通过将人工(无蛋白)PHB与CoA和PhaZa1孵育也显示了3HB-CoA的合成,证实了PhaZa1是催化硫解反应的PHB解聚酶。乙酰辅酶A是在NAD +存在下孵育nPHB颗粒后可检测到的主要产物,表明在分离的nPHB颗粒中还存在下游动员酶活性并具有活性。我们建议关键代谢产物(CoA,乙酰-CoA,3HB-CoA,NAD + / NADH)的细胞内浓度确定细胞是否积累或降解PHB。由于PHB的降解产物是3HB-CoA,因此细胞不会因PHB的合成和降解而浪费能量。因此,我们的结果解释了PHB同时合成和分解的常见发现。

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