Wills C, Kratofil P, Martin T
Basic Life Sci. 1982;19:305-29. doi: 10.1007/978-1-4684-4142-0_24.
Selection of petite strains of yeast (that is, strains unable to respire aerobically) on media containing allyl alcohol will result in enrichment for mutants at the ADC1 locus. This locus codes for the constitutive alcohol dehydrogenase, ADH-I, which is primarily responsible for the production of ethanol in yeast. The mutant enzymes are functional, and confer resistance to allyl alcohol on the cell by shifting the NAD-NADH balance in the direction of NADH. These mutants exhibit altered Km's for cofactor, substrate, or both, and often have altered Vmax's. In this paper, the methodology for obtaining these mutants and for determining the amino acid substitutions responsible for these changes is presented. Several new mutants have been at least approximately localized, and one, DB-AA3-N15, has been shown to be due to the substitution of an arginine for a tryptophan at position 54. This substitution would be expected, by analogy with the known tertiary structure of the horse liver alcohol dehydrogenase, to decrease the hydrophobic environment of the active site pocket. The substitution has a pronounced effect on the Km for ethanol, but far less on that for acetaldehyde. The current status of investigation of other classes of functional mutants of this enzyme, and the potential both for selection of useful variants of this molecule and for an increase understanding of its function are discussed.
在含有烯丙醇的培养基上选择酵母小菌落菌株(即不能进行有氧呼吸的菌株),将导致在ADC1基因座上富集突变体。该基因座编码组成型乙醇脱氢酶ADH-I,它主要负责酵母中乙醇的产生。突变酶具有功能,通过将NAD-NADH平衡向NADH方向转移,赋予细胞对烯丙醇的抗性。这些突变体对辅因子、底物或两者的Km值发生改变,且Vmax值常常也发生改变。本文介绍了获得这些突变体以及确定导致这些变化的氨基酸取代的方法。几个新突变体已至少大致定位,其中一个突变体DB-AA3-N15已被证明是由于第54位的色氨酸被精氨酸取代所致。根据马肝乙醇脱氢酶已知的三级结构类推,这种取代预计会减少活性位点口袋的疏水环境。该取代对乙醇的Km值有显著影响,但对乙醛的Km值影响较小。本文还讨论了该酶其他功能突变体类别的研究现状,以及选择该分子有用变体和增进对其功能理解的潜力。