Yang V W, Jeffries T W
Institute for Microbial and Biochemical Technology, Forest Products Laboratory, Madison, WI 53705-2398, USA.
Appl Biochem Biotechnol. 1997 Spring;63-65:97-108. doi: 10.1007/BF02920416.
This research examined the titers of hexokinase (HK), phosphofructokinase (PFK), and xylulokinase (XUK) in Saccharomyces cerevisiae and two xylose fermenting yeasts, Pachysolen tannophilus and Candida shehatae, following shifts in carbon source and aeration. Xylose-grown C. shehatae, glucose-grown P. tannophilus, and glucose-grown S. cerevisiae, had the highest specific activities of XUK, HK, and PFK, respectively. XUK was induced by xylose to moderate levels in both P. tannophilus and C. shehatae, but was present only in trace levels in S. cerevisiae. HK activities in P. tannophilus were two to three fold higher when cells were grown on glucose than when grown on xylose, but HK levels were less inducible in C. shehatae. The PFK activities in S. cerevisiae were 1.5 to 2 times higher than in the two xylose-fermenting yeasts. Transfer from glucose to xylose rapidly inactivated HK in P. tannophilus, and transfer from xylose to glucose inactivated XUK in C. shehatae. The patterns of induction and inactivation indicate that the basic regulatory mechanisms differ in the two xylose fermenting yeasts.
本研究检测了酿酒酵母以及两种木糖发酵酵母嗜鞣管囊酵母和嗜杀假丝酵母在碳源和通气条件改变后,己糖激酶(HK)、磷酸果糖激酶(PFK)和木酮糖激酶(XUK)的效价。以木糖生长的嗜杀假丝酵母、以葡萄糖生长的嗜鞣管囊酵母和以葡萄糖生长的酿酒酵母,分别具有最高的XUK、HK和PFK比活性。在嗜鞣管囊酵母和嗜杀假丝酵母中,木糖均可诱导XUK达到中等水平,但在酿酒酵母中仅以痕量存在。嗜鞣管囊酵母在葡萄糖上生长时的HK活性比在木糖上生长时高两到三倍,但在嗜杀假丝酵母中HK水平的诱导性较低。酿酒酵母中的PFK活性比两种木糖发酵酵母高1.5至2倍。从葡萄糖转移到木糖会迅速使嗜鞣管囊酵母中的HK失活,而从木糖转移到葡萄糖会使嗜杀假丝酵母中的XUK失活。诱导和失活模式表明,两种木糖发酵酵母的基本调节机制不同。