DeFrank J J, Ribbons D W
J Bacteriol. 1977 Mar;129(3):1356-64. doi: 10.1128/jb.129.3.1356-1364.1977.
Initial reactions of the p-cymene pathway induced in Pseudomonas putida PL have been reinvestigated. Oxidation of the methyl group attached to the nucleus occurs in three steps to give p-cumic acid. The substrate for the ring cleavage of 2,3-dihydroxy-p-cumate is formed from p-cumate in two reactions via a dihydrodiol intermediate (2,3-dihydroxy-4-isopropylcyclohexa-4,6-dienoate) and not as previously postulated via 3-hydroxy-p-cumate. There are three pieces of evidence for the physiological role of the dihydrodiol intermediate. (i) a mutant of P. putida PL-pT-11/43, which is unable to grow with p-cumate, accumulates a compound from p-cumate, which was identified as 2,3-dihydroxy-4-isopropylcyclohexa-4,6-dienoate. (II) This metabolite is enzymically oxidized by a nicotinamide adenine dinucleotide-dependent dehydrogenase that is present in crude extracts of the wild type and a revertant strain (PL-pT-11/43-R1) but not in the mutant. (iii) 3-Hydroxy-p-cumate does not support growth of P . putida PL-W, and it is not oxidized by cells or extracts. 3-Hydroxy-p-cumate was readily isolated as before from culture supernatants, due to its ready formation from the dihydrodiol in acid solution. Mass spectral analysis of the dihydrodiol accumulated in 18O2-enriched atmospheres showed that both hydroxyl atoms are derived from the same molecule of O2. The formation and absorbance maxima of dihydrodiols that accumulated during the growth of the mutant PL-pT-11/43 in the presence of various benzoates (or toluenes) that have substituents at the carbon 4 atom also is reported.
对恶臭假单胞菌PL中诱导的对伞花烃途径的初始反应进行了重新研究。与核相连的甲基氧化分三步进行,生成对异丙基苯甲酸。2,3-二羟基对异丙基苯甲酸环裂解的底物由对异丙基苯甲酸通过二氢二醇中间体(2,3-二羟基-4-异丙基环己-4,6-二烯酸)经两步反应形成,而不是如先前假设的通过3-羟基对异丙基苯甲酸形成。有三条证据支持二氢二醇中间体的生理作用。(i)恶臭假单胞菌PL-pT-11/43的一个突变体,它不能利用对异丙基苯甲酸生长,积累了一种由对异丙基苯甲酸形成的化合物,该化合物被鉴定为2,3-二羟基-4-异丙基环己-4,6-二烯酸。(ii)这种代谢物被野生型和回复菌株(PL-pT-11/43-R1)的粗提物中存在的一种烟酰胺腺嘌呤二核苷酸依赖性脱氢酶酶促氧化,但在突变体中不存在。(iii)3-羟基对异丙基苯甲酸不支持恶臭假单胞菌PL-W的生长,并且它不被细胞或提取物氧化。由于它在酸性溶液中容易由二氢二醇形成,所以如前所述,3-羟基对异丙基苯甲酸很容易从培养上清液中分离出来。在富含18O2的气氛中积累的二氢二醇的质谱分析表明,两个羟基原子都来自同一个O2分子。还报道了在突变体PL-pT-11/43在碳4原子上有取代基的各种苯甲酸(或甲苯)存在下生长期间积累的二氢二醇的形成和吸收最大值。