CLONING AND CHARACTERIZATION OF THE CYS3 (CYI1) GENE OF SACCHAROMYCES-CEREVISIAE

被引:41
作者
ONO, BI
TANAKA, K
NAITO, K
HEIKE, C
SHINODA, S
YAMAMOTO, S
OHMORI, S
OSHIMA, T
TOHE, A
机构
[1] OKAYAMA UNIV,FAC PHARMACEUT SCI,PHYSIOL CHEM LAB,OKAYAMA 700,JAPAN
[2] UNIV TOKYO,DEPT BOT,TOKYO 113,JAPAN
[3] SUNTORY BIOPHARMA TECH CTR,TOKYO,GUNMA 37005,JAPAN
关键词
D O I
10.1128/jb.174.10.3339-3347.1992
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
A DNA fragment containing the Saccharomyces cerevisiae CYS3 (CYI1) gene was cloned. The clone had a single open reading frame of 1,182 bp (394 amino acid residues). By comparison of the deduced amino acid sequence with the N-terminal amino acid sequence of cystathionine gamma-lyase, CYS3 (CYI1) was concluded to be the structural gene for this enzyme. In addition, the deduced sequence showed homology with the following enzymes: rat cystathionine gamma-lyase (41%), Escherichia coli cystathionine gamma-synthase (36%), and cystathionine beta-lyase (25%). The N-terminal half of it was homologous (39%) with the N-terminal half of S. cerevisiae O-acetylserine and O-acetylhomoserine sulfhydrylase. The cloned CYS3 (CYI1) gene marginally complemented the E. coli metB mutation (cystathionine gamma-synthase deficiency) and conferred cystathionine gamma-synthase activity as well as cystathionine gamma-lyase activity to E. coli; cystathionine gamma-synthase activity was detected when O-succinylhomoserine but not O-acetylhomoserine was used as substrate. We therefore conclude that S. cerevisiae cystathionine gamma-lyase and E. coli cystathionine gamma-synthase are homologous in both structure and in vitro function and propose that their different in vivo functions are due to the unavailability of O-succinylhomoserine in S. cerevisiae and the scarceness of cystathionine in E. coli.
引用
收藏
页码:3339 / 3347
页数:9
相关论文
共 45 条
[1]   EVOLUTION IN BIOSYNTHETIC PATHWAYS - 2 ENZYMES CATALYZING CONSECUTIVE STEPS IN METHIONINE BIOSYNTHESIS ORIGINATE FROM A COMMON ANCESTOR AND POSSESS A SIMILAR REGULATORY REGION [J].
BELFAIZA, J ;
PARSOT, C ;
MARTEL, A ;
DELATOUR, CB ;
MARGARITA, D ;
COHEN, GN ;
SAINTGIRONS, I .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1986, 83 (04) :867-871
[2]   RECOGNITION SEQUENCE OF A RESTRICTION ENZYME [J].
BIGGER, CH ;
MURRAY, K ;
MURRAY, NE .
NATURE-NEW BIOLOGY, 1973, 244 (131) :7-10
[3]  
BROACH JR, 1979, GENE, V8, P121, DOI 10.1016/0378-1119(79)90012-X
[4]  
BRYNE CR, 1988, J BACTERIOL, V170, P3150
[5]   MOLECULAR-GENETICS OF MET17 AND MET25 MUTANTS OF SACCHAROMYCES-CEREVISIAE - INTRAGENIC COMPLEMENTATION BETWEEN MUTATIONS OF A SINGLE STRUCTURAL GENE [J].
DANDREA, R ;
SURDINKERJAN, Y ;
PURE, G ;
CHEREST, H .
MOLECULAR & GENERAL GENETICS, 1987, 207 (01) :165-170
[6]  
DUCHANGE N, 1983, J BIOL CHEM, V258, P4868
[7]   SEQUENCE OF CDNA FOR RAT CYSTATHIONINE GAMMA-LYASE AND COMPARISON OF DEDUCED AMINO-ACID-SEQUENCE WITH RELATED ESCHERICHIA-COLI ENZYMES [J].
ERICKSON, PF ;
MAXWELL, IH ;
SU, LJ ;
BAUMANN, M ;
GLODE, LM .
BIOCHEMICAL JOURNAL, 1990, 269 (02) :335-340
[8]  
FLAVIN M, 1964, J BIOL CHEM, V239, P2220
[9]  
GIOVANELLI J, 1987, METHOD ENZYMOL, V143, P419
[10]  
GRIFFITH OW, 1987, METHOD ENZYMOL, V143, P366