首页> 美国卫生研究院文献>Journal of Bacteriology >Purification and properties of the physically associated meta-cleavage pathway enzymes 4-hydroxy-2-ketovalerate aldolase and aldehyde dehydrogenase (acylating) from Pseudomonas sp. strain CF600.
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Purification and properties of the physically associated meta-cleavage pathway enzymes 4-hydroxy-2-ketovalerate aldolase and aldehyde dehydrogenase (acylating) from Pseudomonas sp. strain CF600.

机译:假单胞菌属的物理相关的元切割途径酶4-羟基-2-酮戊酸醛缩酶和醛脱氢酶(酰化)的纯化和性质。菌株CF600。

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摘要

The final two steps in the dmp operon-encoded meta-cleavage pathway for phenol degradation in Pseudomonas sp. strain CF600 involve conversion of 4-hydroxy-2-ketovalerate to pyruvate and acetyl coenzyme A (acetyl-CoA) by the enzymes 4-hydroxy-2-ketovalerate aldolase and aldehyde dehydrogenase (acylating) [acetaldehyde:NAD+ oxidoreductase (CoA acetylating), EC 1.2.1.10]. A procedure for purifying these two enzyme activities to homogeneity is reported here. The two activities were found to copurify through five different chromatography steps and ammonium sulfate fractionation, resulting in a preparation that contained approximately equal proportions of two polypeptides with molecular masses of 35 and 40 kDa. Amino-terminal sequencing revealed that the first six amino acids of each polypeptide were those deduced from the previously determined nucleotide sequences of the corresponding dmp operon-encoded genes. The isolated complex had a native molecular mass of 148 kDa, which is consistent with the presence of two of each polypeptide per complex. In addition to generating acetyl-CoA from acetaldehyde, CoA, and NAD+, the dehydrogenase was shown to acylate propionaldehyde, which would be generated by action of the meta-cleavage pathway enzymes on the substrates 3,4-dimethylcatechol and 4-methylcatechol. 4-Hydroxy-2-ketovalerate aldolase activity was stimulated by the addition of Mn2+ and, surprisingly, NADH to assay mixtures. The possible significance of the close physical association between these two polypeptides in ensuring efficient metabolism of the short-chain aldehyde generated by this pathway is discussed.
机译:dmp操纵子编码的Pseudomonas sp中苯酚降解的元裂解途径的最后两个步骤。 CF600菌株涉及通过4-羟基-2-酮戊酸醛缩酶和醛脱氢酶(酰化)[乙醛:NAD +氧化还原酶(CoA乙酰化),将4-羟基-2-酮戊酸转化为丙酮酸和乙酰辅酶A(乙酰辅酶A), EC 1.2.1.10]。本文报道了纯化这两种酶活性至均一性的方法。发现这两种活性通过五个不同的色谱步骤和硫酸铵分级分离而共纯化,从而得到一种制剂,该制剂含有大约相等比例的两种分子量为35和40 kDa的多肽。氨基末端测序表明,每个多肽的前六个氨基酸是从相应dmp操纵子编码基因的先前确定的核苷酸序列中推导出的。分离的复合物具有148kDa的天然分子量,这与每个复合物中每种多肽存在两个一致。除从乙醛,CoA和NAD +生成乙酰辅酶A外,脱氢酶还显示出丙醛酰化丙醛,这是通过在基质3,4-二甲基邻苯二酚和4-甲基邻苯二酚上的间位裂解途径酶的作用而产生的。通过添加Mn2 +和令人惊讶的NADH来刺激4-Hydroxy-2-ketovalerate醛缩酶活性。讨论了在确保由该途径产生的短链醛的有效代谢方面,这两种多肽之间紧密物理缔合的可能意义。

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