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多形汉逊酵母乙醇氧化酶黄素腺嘌呤二核苷酸结合结构域中的突变。

Mutations in the FAD-binding fold of alcohol oxidase from Hansenula polymorpha.

作者信息

de Hoop M, Asgeirsdottir S, Blaauw M, Veenhuis M, Cregg J, Gleeson M, Geert A B

机构信息

Laboratory of Biochemistry, University of Groningen, The Netherlands.

出版信息

Protein Eng. 1991 Oct;4(7):821-9. doi: 10.1093/protein/4.7.821.

Abstract

Alcohol oxidase of methylotrophic yeast is an FAD-containing enzyme. When in its active form, the enzyme is an octamer and located in the peroxisomes. To study the importance of FAD-binding on the activity, octamerization and intracellular localization of the enzyme, alcohol oxidase of Hansenula polymorpha was mutated in its presumed nucleotide-binding domain, which is formed by the N-terminal sequence. Whereas mutations of a glutamic acid residue (E42) reduced the stability of the octamer, it hardly affected enzyme activity and expression. However, replacements of three conserved glycines (G13, G15 and G18) and a conserved glutamic acid (E39) within the fold had severe effects. The mutations not only resulted in loss of enzyme activity but in reduced protein levels as well, probably due to decreased stability of the mutant alcohol oxidase. However, octamerization of the protein still occurred. The existence of inactive octameric proteins provides information about the formation pathway of this octameric flavoprotein.

摘要

甲基营养型酵母的乙醇氧化酶是一种含黄素腺嘌呤二核苷酸(FAD)的酶。处于活性形式时,该酶为八聚体,位于过氧化物酶体中。为了研究FAD结合对该酶活性、八聚体化及细胞内定位的重要性,多形汉逊酵母的乙醇氧化酶在其假定的核苷酸结合结构域(由N端序列形成)中发生了突变。谷氨酸残基(E42)的突变降低了八聚体的稳定性,但对酶活性和表达影响不大。然而,结构域内三个保守甘氨酸(G13、G15和G18)以及一个保守谷氨酸(E39)的替换产生了严重影响。这些突变不仅导致酶活性丧失,还使蛋白质水平降低,这可能是由于突变型乙醇氧化酶稳定性下降所致。不过,该蛋白仍能形成八聚体。无活性八聚体蛋白的存在为这种八聚体黄素蛋白的形成途径提供了信息。

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