Biological Science Laboratories, KAO Corp., 1334 Minato, Wakayama-shi, Wakayama, 640-8580, Japan.
Department of Mathematical and Life Sciences, Graduate School of Science, Hiroshima University, 1-3-1 Kagamiyama, Higashi Hiroshima-shi, Hiroshima, Japan.
FEMS Yeast Res. 2019 Mar 1;19(2). doi: 10.1093/femsyr/foz012.
The yeast Starmerella bombicola NBRC10243 is an excellent producer of sophorolipids, which are among the most useful biosurfactants. The primary alcoholic metabolic pathway of S. bombicola has been elucidated using alcohol oxidase FAO1, but the secondary alcohol metabolic pathway remains unknown. Although the FAO1 mutant was unable to grow with secondary alcohols and seemed to be involved in the secondary alcohol metabolism pathway of S. bombicola, it had very low activity toward secondary alcohols. By analyzing the products of secondary alcohol metabolism, alkyl polyglucosides hydroxylated at the ω position in the alkyl chain of the secondary alcohol were observed in the FAO1 mutant, but not in the wild-type yeast. In the double mutant of FAO1 and UGTA1, accumulation of 1,13-tetradecandiol and 2,13-tetradecandiol was observed. The above results indicated that hydroxylation occurred first at the ω and ω-1 positions in the secondary alcohol metabolism of S. bombicola, followed by primary alcohol oxidation.
酵母星油脂单胞菌 NBRC10243 是非常出色的槐糖脂生产菌,槐糖脂是最有用的生物表面活性剂之一。利用醇氧化酶 FAO1 阐明了 S. bombicola 的主要醇代谢途径,但次要醇代谢途径仍不清楚。虽然 FAO1 突变体不能利用次级醇生长,并且似乎参与 S. bombicola 的次级醇代谢途径,但它对次级醇的活性非常低。通过分析次级醇代谢产物,在 FAO1 突变体中观察到次级醇烷基链的ω位羟基化的烷基多葡糖苷,但在野生型酵母中没有观察到。在 FAO1 和 UGTA1 的双突变体中,积累了 1,13-十四烷二醇和 2,13-十四烷二醇。上述结果表明,在 S. bombicola 的次级醇代谢中,羟基首先在ω和 ω-1 位置发生,然后进行伯醇氧化。