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通过对谷氨酸492和精氨酸480进行突变,制备酵母胞质醛脱氢酶的东方等效物以及在辅酶结合方面具有正协同性的该酶。

Making an Oriental equivalent of the yeast cytosolic aldehyde dehydrogenase as well as making one with positive cooperativity in coenzyme binding by mutations of glutamate 492 and arginine 480.

作者信息

Wei B, Weiner H

机构信息

Department of Biochemistry, 1153 Biochemistry Building, Purdue University, 47907-1153, West Lafayette, IN, USA.

出版信息

Chem Biol Interact. 2001 Jan 30;130-132(1-3):173-9. doi: 10.1016/s0009-2797(00)00232-5.

Abstract

Yeast has at least three partially characterized aldehyde dehydrogenases. Previous studies by gene disrupted in our laboratory revealed that the Saccharomyces cerevisiae cytosol ALDH1 played an important role in ethanol metabolism as did the class 2 mitochondrial enzyme. To date, few mutagenesis studies have been performed with the yeast enzymes. An important human variant of ALDH is one found in Asian People. In it, the glutamate at position 487 is replaced by a lysine. This glutamate interacts with an arginine (475) that is located in the subunit that makes up the dimer pair in the tetrameric enzyme. Sequence alignment shows that these two residues are located at positions 492 and 480, respectively, in the yeast class 1 enzyme which shares just 45% sequence identity with the human enzymes. Mutating glutamate 492 to lysine produced an enzyme with altered kinetic properties when compared to the wild-type glutamate-enzyme. The K(m) for NADP of E492K increased to nearly 3600 microM compare to 40 microM for wild-type enzyme. The specific activity decreased more than 10-fold with respect to the recombinant wild-type yeast enzyme. Moreover, substituting a glutamine for a glutamate was not detrimental in that the E492Q had wild-type-like K(m) for NADP and V(max). These properties were similar to the changes found with the human class 2 E487K mutant form. Further, mutating arginine 480 to glutamine produced an enzyme that exhibited positive cooperativity in NADP binding. The K(m) for NADP increased 11-fold with a Hill coefficient of 1.6. The NADP-dependent activity of R480Q mutant was 60% of wild-type enzyme. Again, these results are very similar to what we recently showed to occur with the human enzyme [Biochemistry 39 (2000) 5295-5302]. These findings show that the even though the glutamate and arginine residues are not conserved, similar changes occur in both the human and the yeast enzyme when either is mutated.

摘要

酵母至少有三种部分特性已被阐明的醛脱氢酶。我们实验室之前通过基因敲除进行的研究表明,酿酒酵母胞质醛脱氢酶1(ALDH1)在乙醇代谢中发挥着重要作用,线粒体2类酶也是如此。迄今为止,针对酵母酶的诱变研究很少。醛脱氢酶一个重要的人类变体存在于亚洲人群中。在该变体中,第487位的谷氨酸被赖氨酸取代。这个谷氨酸与位于构成四聚体酶中二聚体对的亚基中的精氨酸(475)相互作用。序列比对显示,在与人类酶仅具有45%序列同一性的酵母1类酶中,这两个残基分别位于第492位和第480位。与野生型谷氨酸酶相比,将第492位的谷氨酸突变为赖氨酸会产生一种动力学性质改变的酶。E492K对NADP的K(m)增加到近3600微摩尔,而野生型酶为40微摩尔。相对于重组野生型酵母酶,比活性下降了10倍以上。此外,用谷氨酰胺取代谷氨酸并无不利影响,因为E492Q对NADP具有类似野生型的K(m)和V(max)。这些特性与人类2类E487K突变体形式的变化相似。此外,将第480位的精氨酸突变为谷氨酰胺会产生一种在NADP结合中表现出正协同性的酶。对NADP的K(m)增加了11倍,希尔系数为1.6。R480Q突变体的NADP依赖性活性是野生型酶的60%。同样,这些结果与我们最近在人类酶中发现的情况非常相似[《生物化学》39 (2000) 5295 - 5302]。这些发现表明,尽管谷氨酸和精氨酸残基不保守,但当其中任何一个发生突变时,人类和酵母酶都会发生类似的变化。

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