首页> 外文OA文献 >FadD from Pseudomonas putida CA-3 Is a True Long-Chain Fatty Acyl Coenzyme A Synthetase That Activates Phenylalkanoic and Alkanoic Acids▿ †
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FadD from Pseudomonas putida CA-3 Is a True Long-Chain Fatty Acyl Coenzyme A Synthetase That Activates Phenylalkanoic and Alkanoic Acids▿ †

机译:来自恶臭假单胞菌CA-3的FadD是一种真正的长链脂肪酰基辅酶,一种合成酶,可激活苯基链烷酸和链烷酸▿†

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摘要

A fatty acyl coenzyme A synthetase (FadD) from Pseudomonas putida CA-3 is capable of activating a wide range of phenylalkanoic and alkanoic acids. It exhibits the highest rates of reaction and catalytic efficiency with long-chain aromatic and aliphatic substrates. FadD exhibits higher kcat and Km values for aromatic substrates than for the aliphatic equivalents (e.g., 15-phenylpentadecanoic acid versus pentadecanoic acid). FadD is inhibited noncompetitively by both acrylic acid and 2-bromooctanoic acid. The deletion of the fadD gene from P. putida CA-3 resulted in no detectable growth or polyhydroxyalkanoate (PHA) accumulation with 10-phenyldecanoic acid, decanoic acid, and longer-chain substrates. The results suggest that FadD is solely responsible for the activation of long-chain phenylalkanoic and alkanoic acids. While the CA-3ΔfadD mutant could grow on medium-chain substrates, a decrease in growth yield and PHA accumulation was observed. The PHA accumulated by CA-3ΔfadD contained a greater proportion of short-chain monomers than did wild-type PHA. Growth of CA-3ΔfadD was unaffected, but PHA accumulation decreased modestly with shorter-chain substrates. The complemented mutant regained 70% to 90% of the growth and PHA-accumulating ability of the wild-type strain depending on the substrate. The expression of an extra copy of fadD in P. putida CA-3 resulted in increased levels of PHA accumulation (up to 1.6-fold) and an increase in the incorporation of longer-monomer units into the PHA polymer.
机译:来自恶臭假单胞菌CA-3的脂肪酰基辅酶A合成酶(FadD)能够活化多种苯基链烷酸和链烷酸。它与长链芳香族和脂肪族底物的反应速率和催化效率最高。 FadD对于芳族底物表现出比其脂肪族等价物更高的kcat和Km值(例如15-苯基十五碳二烯酸与十五烷酸)。 FadD被丙烯酸和2-溴辛酸非竞争性抑制。 fadD基因从恶臭假单胞菌CA-3中的缺失导致没有可检测到的生长或聚羟基链烷酸酯(PHA)与10-苯基癸酸,癸酸和较长链底物的积累。结果表明,FadD完全负责长链苯基链烷酸和链烷酸的活化。虽然CA-3ΔfadD突变体可以在中链底物上生长,但观察到生长产量和PHA积累的下降。与野生型PHA相比,CA-3ΔfadD积累的PHA所含的短链单体比例更高。 CA-3ΔfadD的生长不受影响,但PHA的积累在短链底物的作用下适度下降。取决于底物,互补的突变体恢复了野生型菌株的生长和PHA积累能力的70%至90%。 fadD额外副本在恶臭假单胞菌CA-3中的表达导致PHA积累水平提高(最高1.6倍),并且更长的单体单元并入PHA聚合物的数量也增加。

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