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酿酒酵母甲羟戊酸二磷酸脱羧酶对细胞存活至关重要,保守序列中的单个亮氨酸到脯氨酸突变会导致温度敏感性。

The Saccharomyces cerevisiae mevalonate diphosphate decarboxylase is essential for viability, and a single Leu-to-Pro mutation in a conserved sequence leads to thermosensitivity.

作者信息

Bergès T, Guyonnet D, Karst F

机构信息

Faculté des Sciences, Institut de Biologie Moléculaire et d'Ingénierie Génétique, Université de Poitiers, France.

出版信息

J Bacteriol. 1997 Aug;179(15):4664-70. doi: 10.1128/jb.179.15.4664-4670.1997.

Abstract

The mevalonate diphosphate decarboxylase is an enzyme which converts mevalonate diphosphate to isopentenyl diphosphate, the building block of isoprenoids. We used the Saccharomyces cerevisiae temperature-sensitive mutant defective for mevalonate diphosphate decarboxylase previously described (C. Chambon, V. Ladeveve, M. Servouse, L. Blanchard, C. Javelot, B. Vladescu, and F. Karst, Lipids 26:633-636, 1991) to characterize the mutated allele. We showed that a single change in a conserved amino acid accounts for the temperature-sensitive phenotype of the mutant. Complementation experiments were done both in the erg19-mutated background and in a strain in which the ERG19 gene, which was shown to be an essential gene for yeast, was disrupted. Epitope tagging of the wild-type mevalonate diphosphate decarboxylase allowed us to isolate the enzyme in an active form by a versatile one-step immunoprecipitation procedure. Furthermore, during the course of this study, we observed that a high level of expression of the wild-type ERG19 gene led to a lower sterol steady-state accumulation compared to that of a wild-type strain, suggesting that this enzyme may be a key enzyme in mevalonate pathway regulation.

摘要

甲羟戊酸二磷酸脱羧酶是一种将甲羟戊酸二磷酸转化为异戊烯基二磷酸的酶,而异戊烯基二磷酸是类异戊二烯的组成成分。我们使用了先前描述的甲羟戊酸二磷酸脱羧酶缺陷型酿酒酵母温度敏感突变体(C. Chambon、V. Ladeveve、M. Servouse、L. Blanchard、C. Javelot、B. Vladescu和F. Karst,《脂质》26:633 - 636,1991年)来表征突变等位基因。我们表明,一个保守氨基酸的单一变化导致了该突变体的温度敏感表型。在erg19突变背景和ERG19基因(已证明是酵母的必需基因)被破坏的菌株中都进行了互补实验。野生型甲羟戊酸二磷酸脱羧酶的表位标签使我们能够通过通用的一步免疫沉淀程序以活性形式分离该酶。此外,在本研究过程中,我们观察到与野生型菌株相比,野生型ERG19基因的高水平表达导致甾醇稳态积累较低,这表明该酶可能是甲羟戊酸途径调控中的关键酶。

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