Parpinello G, Berardi E, Strabbioli R
Laboratorio di Genetica Microbica, Dipartimento di Biotecnologie, Università degli Studi di Ancona, Ancona, Italy.
J Bacteriol. 1998 Jun;180(11):2958-67. doi: 10.1128/JB.180.11.2958-2967.1998.
Mutant LGM-128 of Hansenula polymorpha harbors the recessive mutation glr2-1 which confers a complex pleiotropic phenotype, the major feature of which is the metabolically unnecessary induction of methanol utilization metabolism (C1 metabolism) during growth on glucose, whether or not methanol is in the medium. Therefore, in this mutant, peroxisomes are formed and proliferate upon cultivation in glucose-containing media. In these media, LGM-128 shows induction levels of C1 metabolism that are similar to those observed in methanol-containing media. This indicates that GLR2 controls the repression-derepression process stimulated by glucose and that the induction process triggered by methanol plays only a minor role in activating C1 metabolism. Cultivating LGM-128 in methanol and then transferring it to glucose media revealed that active degradative processes occur, leading to the disappearance of C1 metabolism. This observation suggests that, although stimulated by glucose, the two processes are controlled by elements which are, at least in part, distinct. Finally, glr2-1 does not affect ethanol repression, suggesting that in H. polymorpha the two repressing circuits are separated.
多形汉逊酵母的突变体LGM - 128携带隐性突变glr2 - 1,该突变赋予了复杂的多效性表型,其主要特征是在葡萄糖培养基中生长时,无论培养基中是否含有甲醇,都会出现代谢上不必要的甲醇利用代谢(C1代谢)诱导现象。因此,在这个突变体中,过氧化物酶体在含葡萄糖的培养基中培养时形成并增殖。在这些培养基中,LGM - 128显示出的C1代谢诱导水平与在含甲醇培养基中观察到的相似。这表明GLR2控制着由葡萄糖刺激的阻遏 - 去阻遏过程,而由甲醇触发的诱导过程在激活C1代谢中仅起次要作用。在甲醇中培养LGM - 128,然后将其转移到葡萄糖培养基中,结果显示发生了活跃的降解过程,导致C1代谢消失。这一观察结果表明,尽管受葡萄糖刺激,但这两个过程至少部分受不同的因素控制。最后,glr2 - 1不影响乙醇阻遏,这表明在多形汉逊酵母中,这两个阻遏回路是分开的。