Kane J F, Fiske M J
J Bacteriol. 1985 Mar;161(3):963-6. doi: 10.1128/jb.161.3.963-966.1985.
In the red yeast Rhodotorula glutinis, phenylalanine ammonia lyase (PAL) was induced 10-fold during carbon starvation even in the absence of exogenous phenylalanine, although maximal induction occurred when phenylalanine was the nitrogen (40-fold) or carbon (100-fold) source. Apparent regulatory mutations that affected the expression of PAL were isolated by selecting mutants resistant to the analog p-fluoro-D,L-phenylalanine (PFP). One such mutant, designated FP1, could use phenylalanine as a nitrogen source but not as a carbon source. Similarly, FP1 failed to utilize intermediates of the phenylalanine degradative pathway, namely, benzoate, p-hydroxybenzoate, or 3,4-dihydroxybenzoate, as carbon sources. Although the PFP-resistant mutant contained a low level of PAL, no increase was found when it was grown with phenylalanine as the nitrogen source. A derivative of FP1, FP1a, was isolated that simultaneously regained an inducible PAL and the ability to use phenylalanine, benzoate, p-hydroxybenzoate, and 3,4-dihydroxybenzoate as carbon sources. In addition, when p-hydroxybenzoate was the carbon source, PAL was induced in the mutant FP1a but not in the PFP-sensitive parental strain. We propose that the mutation to PFP resistance occurred in a regulatory gene that controls the entire phenylalanine degradative pathway. Secondary mutations at this locus, as found in strain FP1a, not only restored expression of this pathway, but also altered the induction of PAL by metabolites of this pathway.
在红酵母粘红酵母中,即使在没有外源苯丙氨酸的情况下,碳饥饿期间苯丙氨酸解氨酶(PAL)也会被诱导10倍,尽管当苯丙氨酸作为氮源(40倍)或碳源(100倍)时会出现最大诱导。通过选择对类似物对氟-D,L-苯丙氨酸(PFP)具有抗性的突变体,分离出影响PAL表达的明显调控突变。一个这样的突变体,命名为FP1,可以将苯丙氨酸用作氮源,但不能用作碳源。同样,FP1无法利用苯丙氨酸降解途径的中间体,即苯甲酸、对羟基苯甲酸或3,4-二羟基苯甲酸作为碳源。尽管抗PFP突变体中PAL水平较低,但当以苯丙氨酸作为氮源生长时,未发现其增加。分离出FP1的一个衍生物FP1a,它同时恢复了可诱导的PAL以及使用苯丙氨酸、苯甲酸、对羟基苯甲酸和3,4-二羟基苯甲酸作为碳源的能力。此外,当以对羟基苯甲酸作为碳源时,突变体FP1a中诱导了PAL,而在对PFP敏感的亲本菌株中未诱导。我们提出,对PFP抗性的突变发生在一个控制整个苯丙氨酸降解途径的调控基因中。在FP1a菌株中发现的该位点的二次突变不仅恢复了该途径的表达,还改变了该途径代谢物对PAL的诱导。