Mörtberg M, Neujahr H Y
J Bacteriol. 1985 Feb;161(2):615-9. doi: 10.1128/jb.161.2.615-619.1985.
The soil yeast Trichosporon cutaneum, which is distinguished by having a strictly oxidative metabolism, can be induced to utilize phenol as a sole carbon source. The present paper shows that such phenol-induced cells contain a specific, energy-dependent uptake system for phenol. Phenol uptake is not directly linked to its o-hydroxylation inside the cell, the first step of phenol metabolism. The Km for uptake is 235 +/- 30 microM, that for hydroxylation only 4.5 +/- 0.5 microM. Further, the phenol analog 2,6-dimethylphenol, which can not be hydroxylated, competes with phenol for the uptake system. The pH dependence of uptake indicates that phenolate is an essential form during the uptake process. The energy requirement for phenol uptake is indicated by effects of various inhibitors of energy generation, including proton-conducting uncouplers. Direct monitoring of proton movements in a pH-stat during phenol uptake indicates a phenol-proton symport. One proton is cotransported with every phenol molecule. Phenol competes with the uptake of sucrose and glycerol by cells grown on these substrates. Under such conditions the uptake of phenol seems to proceed through a different system, with lower affinity for phenol than in phenol-grown cells.
土壤酵母皮状丝孢酵母具有严格的氧化代谢特征,可被诱导利用苯酚作为唯一碳源。本文表明,这种苯酚诱导的细胞含有一种特定的、依赖能量的苯酚摄取系统。苯酚摄取与细胞内苯酚代谢的第一步——邻位羟基化并无直接关联。摄取的米氏常数为235±30微摩尔,而羟基化的米氏常数仅为4.5±0.5微摩尔。此外,无法进行羟基化的苯酚类似物2,6 - 二甲基苯酚会与苯酚竞争摄取系统。摄取对pH的依赖性表明酚盐是摄取过程中的一种必需形式。包括质子传导解偶联剂在内的各种能量生成抑制剂的作用表明了苯酚摄取对能量的需求。在苯酚摄取过程中,通过pH计直接监测质子运动表明存在苯酚 - 质子同向转运。每一个苯酚分子伴随一个质子共转运。苯酚会与在这些底物上生长的细胞摄取蔗糖和甘油相互竞争。在这种条件下,苯酚的摄取似乎通过一个不同的系统进行,该系统对苯酚的亲和力低于在苯酚培养基中生长的细胞。