Cloning of genes coding for L-sorbose and L-sorbosone dehydrogenases from Gluconobacter oxydans and microbial production of 2-Keto-L-Gulonate, a precursor of L-ascorbic acid, in a recombinant G-oxydans strain

被引:94
作者
Saito, Y [1 ]
Ishii, Y [1 ]
Hayashi, H [1 ]
Imao, Y [1 ]
Akashi, T [1 ]
Yoshikawa, K [1 ]
Noguchi, Y [1 ]
Soeda, S [1 ]
Yoshida, M [1 ]
Niwa, M [1 ]
Hosoda, J [1 ]
Shimomura, K [1 ]
机构
[1] FUJISAWA PHARMACEUT CO LTD, FERMENTAT DEV RES LABS, OSAKA 532, JAPAN
关键词
D O I
10.1128/AEM.63.2.454-460.1997
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
We have purified L-sorbose dehydrogenase (SDH) and L-sorbosone dehydrogenase (SNDH) from Gluconobacter oxydans T-100 that showed an ability to convert D-sorbitol to 2-keto-L-gulonate (2-KLGA). A genomic library of Gluconobacter oxydans T-100 was screened with a probe, a 180-bp PCR product which was obtained from degenerate oligodeoxyribonucleotides based on the elucidated sequence of the purified SDH (used as primers) and the genomic DNA of G. oxydans T-100 (used as a template). From sequencing of the DNA from a clone positive to the probe, the SNDH and the SDH were estimated to be coded in sequential open reading frames with 1,497 and 1,599 nucleotides, respectively, which was confirmed by expression of the DNA in Escherichia coli that showed both enzymatic activities. The DNA was introduced to a shuttle vector which was prepared from a plasmid of G. oxydans T-100 and pHSG298 to obtain an expression vector designated pSDH155. The production of 2-KLGA by pSDH155 in G. oxydans G624, an L-sorbose-accumulating strain, was improved to 230% compared to that of G. oxydans T-100. Chemical mutation of the host strain to suppress the L-idonate pathway and replacement of the original promoter with that of E. coli tufB resulted in improving the production of 2-KLGA. Consequently, high-level production from D-sorbitol to 2-KLGA (130 mg/ml) was achieved by simple fermentation of the recombinant Gluconobacter.
引用
收藏
页码:454 / 460
页数:7
相关论文
共 34 条
[1]   THE NUCLEOTIDE-SEQUENCE OF TUFB AND 4 NEARBY TRANSFER-RNA STRUCTURAL GENES OF ESCHERICHIA-COLI [J].
AN, G ;
FRIESEN, JD .
GENE, 1980, 12 (1-2) :33-39
[2]   PRODUCTION OF 2-KETO-L-GULONATE, AN INTERMEDIATE IN L-ASCORBATE SYNTHESIS, BY A GENETICALLY MODIFIED ERWINIA-HERBICOLA [J].
ANDERSON, S ;
MARKS, CB ;
LAZARUS, R ;
MILLER, J ;
STAFFORD, K ;
SEYMOUR, J ;
LIGHT, D ;
RASTETTER, W ;
ESTELL, D .
SCIENCE, 1985, 230 (4722) :144-149
[3]  
ANDRESEN PA, 1988, J GEN MICROBIOL, V134, P1737
[4]   MICROBIAL PROCESSES FOR ASCORBIC-ACID BIOSYNTHESIS - A REVIEW [J].
BOUDRANT, J .
ENZYME AND MICROBIAL TECHNOLOGY, 1990, 12 (05) :322-329
[5]   CHARACTERIZATION OF AN ESCHERICHIA-COLI GENE ENCODING BETAINE ALDEHYDE DEHYDROGENASE (BADH) - STRUCTURAL SIMILARITY TO MAMMALIAN ALDHS AND A PLANT BADH [J].
BOYD, LA ;
ADAM, L ;
PELCHER, LE ;
MCHUGHEN, A ;
HIRJI, R ;
SELVARAJ, G .
GENE, 1991, 103 (01) :45-52
[6]   CONVERSION OF GLUCOSE TO 2-KETO-L-GULONATE, AN INTERMEDIATE IN L-ASCORBATE SYNTHESIS, BY A RECOMBINANT STRAIN OF ERWINIA-CITREUS [J].
GRINDLEY, JF ;
PAYTON, MA ;
VANDEPOL, H ;
HARDY, KG .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1988, 54 (07) :1770-1775
[7]   COMPILATION AND ANALYSIS OF ESCHERICHIA-COLI PROMOTER DNA-SEQUENCES [J].
HAWLEY, DK ;
MCCLURE, WR .
NUCLEIC ACIDS RESEARCH, 1983, 11 (08) :2237-2255
[8]  
HERSTRIN S, 1949, J BIOL CHEM, V180, P249
[9]   METABOLIC PATHWAY FOR 2-KETO-L-GULONIC ACID FORMATION IN GLUCONOBACTER-MELANOGENUS IFO-3293 [J].
HOSHINO, T ;
SUGISAWA, T ;
TAZOE, M ;
SHINJOH, M ;
FUJIWARA, A .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1990, 54 (05) :1211-1218
[10]   ISOLATION AND CHARACTERIZATION OF NAD(P)-DEPENDENT L-SORBOSONE DEHYDROGENASE FROM GLUCONOBACTER-MELANOGENUS UV10 [J].
HOSHINO, T ;
SUGISAWA, T ;
FUJIWARA, A .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1991, 55 (03) :665-670