Heterologous expression in Saccharomyces cerevisiae of an Arabidopsis thaliana cDNA encoding mevalonate diphosphate decarboxylase

被引:47
作者
Cordier, H
Karst, F
Bergès, T
机构
[1] Inst Biol Mol & Ingn Genet, CNRS, Lab Genet Physiol & Mol, ERS 6099, F-86022 Poitiers, France
[2] INRA, F-68000 Colmar, France
关键词
Arabidopsis thaliana; heterologous expression; isoprenoids; mevalonate diphosphate decarboxylase; sterols; Saccharomyces cerevisiae;
D O I
10.1023/A:1006181720100
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Sequence comparison with the mevalonate diphosphate decarboxylase (MVD) amino acid sequence of Saccharomyces cerevisiae identified an EST clone corresponding to a cDNA that may encode Arabidopsis thaliana MVD (AtMVD1). This enzyme catalyses the synthesis of isopentenyl diphosphate, the building block of sterol and isoprenoid biosynthesis, and uses mevalonate diphosphate as a substrate. Sequencing of the full-length cDNA was performed. The predicted amino acid sequence presents about 55% identity with the yeast, human and rat MVDs. The sequence of the genomic region of A. thaliana MVD was also obtained and Southern blot analysis on genomic DNA showed that A. thaliana could have at least one homologous MVD gene. In order to allow heterologous expression in S. cerevisiae, the MVD open reading frame (ORF) was then cloned under the control of the yeast PMA1 strong promoter. When expressed in yeast, the A. thaliana cDNA complemented both the thermosensitive MN19-34 strain deficient in MVD, and the lethal phenotype of an ERG19 deleted strain. However, the wild-type sterol content was not fully restored suggesting that the A. thaliana MVD activity may not be optimal in yeast. A two-hybrid assay was also performed to evaluate homodimer formation of the A. thaliana MVD and heterodimer formation between the plant and yeast heterologous enzymes.
引用
收藏
页码:953 / 967
页数:15
相关论文
共 27 条
[1]   SOME NEW ASPECTS OF ISOPRENOID BIOSYNTHESIS IN PLANTS - A REVIEW [J].
BACH, TJ .
LIPIDS, 1995, 30 (03) :191-202
[2]   The Saccharomyces cerevisiae mevalonate diphosphate decarboxylase is essential for viability, and a single Leu-to-Pro mutation in a conserved sequence leads to thermosensitivity [J].
Berges, T ;
Guyonnet, D ;
Karst, F .
JOURNAL OF BACTERIOLOGY, 1997, 179 (15) :4664-4670
[3]   THE MECHANISM OF ACTION OF MEVALONATE-5-PYROPHOSPHATE DECARBOXYLASE [J].
CARDEMIL, E ;
JABALQUINTO, AM .
TRENDS IN BIOCHEMICAL SCIENCES, 1983, 8 (01) :7-7
[4]   STEROL PATHWAY IN YEAST - IDENTIFICATION AND PROPERTIES OF MUTANT STRAINS DEFECTIVE IN MEVALONATE DIPHOSPHATE DECARBOXYLASE AND FARNESYL DIPHOSPHATE SYNTHETASE [J].
CHAMBON, C ;
LADEVEZE, V ;
SERVOUSE, M ;
BLANCHARD, L ;
JAVELOT, C ;
VLADESCU, B ;
KARST, F .
LIPIDS, 1991, 26 (08) :633-636
[5]   BIOCHEMISTRY AND MOLECULAR-BIOLOGY OF THE ISOPRENOID BIOSYNTHETIC-PATHWAY IN PLANTS [J].
CHAPPELL, J .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1995, 46 :521-547
[6]   Arabidopsis thaliana contains two differentially expressed farnesyl-diphosphate synthase genes [J].
Cunillera, N ;
Arro, M ;
Delourme, D ;
Karst, F ;
Boronat, A ;
Ferrer, A .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (13) :7774-7780
[7]   IMPROVED METHOD FOR HIGH-EFFICIENCY TRANSFORMATION OF INTACT YEAST-CELLS [J].
GIETZ, D ;
STJEAN, A ;
WOODS, RA ;
SCHIESTL, RH .
NUCLEIC ACIDS RESEARCH, 1992, 20 (06) :1425-1425
[8]   REGULATION OF THE MEVALONATE PATHWAY [J].
GOLDSTEIN, JL ;
BROWN, MS .
NATURE, 1990, 343 (6257) :425-430
[9]  
GUTHRIE C, 1991, METHOD ENZYMOL, V194, P310
[10]   PHYSIOLOGICAL-ASPECTS AND MECHANISM OF ACTION OF MEVALONATE 5-DIPHOSPHATE DECARBOXYLASE [J].
JABALQUINTO, AM ;
ALVEAR, M ;
CARDEMIL, E .
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY B-BIOCHEMISTRY & MOLECULAR BIOLOGY, 1988, 90 (04) :671-677