Engineering of Escherichia coli Glyceraldehyde-3-Phosphate Dehydrogenase with Dual NAD+/NADP+ Cofactor Specificity for Improving Amino Acid Production

被引:6
|
作者
Slivinskaya, Ekaterina A. [1 ]
Plekhanova, Natalia S. [1 ]
Altman, Irina B. [1 ]
Yampolskaya, Tatiana A. [1 ]
机构
[1] Ajinomoto Genetika Res Inst, Moscow 117545, Russia
关键词
glyceraldehyde-3-phosphate dehydrogenase; NAD(+); NADP(+); cofactor specificity; l-threonine; l-lysine; l-proline; COENZYME SPECIFICITY; CORYNEBACTERIUM-GLUTAMICUM; PATHWAY; METABOLISM; LYSINE; GENES; BIOSYNTHESIS; NAD(+);
D O I
10.3390/microorganisms10050976
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is a key enzyme in the central metabolism of microbial cells. GAPDHs differ in cofactor specificity and use NAD(+), NADP(+), or both cofactors, reducing them to NADH and NADPH, respectively. Sufficient NADPH supply is one of the critical factors required for synthesis of the amino acids l-lysine, l-threonine, and l-proline in industrially important Escherichia coli-based producer strains. E. coli cells have NAD(+)-dependent glycolytic GAPDH. One reasonable approach to increase NADPH formation in cells is to change the specificity of the GAPDH from NAD(+) to NADP(+). In this study, we modified the cofactor specificity of E. coli GAPDH by amino acid substitutions at positions 34, 188 and 189. Several mutant enzymes with dual NAD(+)/NADP(+) cofactor specificity were obtained, and their kinetic parameters were determined. Overexpression of the genes encoding the resulting mutant GAPDHs with dual cofactor specificity in cells of l-lysine-, l-threonine-, and l-proline-producing E. coli strains led to a marked increase in the accumulation of the corresponding amino acid in the culture medium. This effect was more pronounced when cultivating on xylose as a carbon source. Other possible applications of the mutant enzymes are discussed.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Characterization and structure of glyceraldehyde-3-phosphate dehydrogenase type 1 from Escherichia coli
    Zhang, L.
    Liu, M. R.
    Yao, Y. C.
    Bostrom, I. K.
    Wang, Y. D.
    Chen, A. Q.
    Li, J. X.
    Gu, S. H.
    Ji, C. N.
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS, 2020, 76 : 406 - 413
  • [32] SECRETION OF RICINUS-COMMUNIS GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE BY ESCHERICHIA-COLI
    HEKMAN, WE
    DENNIS, DT
    MIERNYK, JA
    MOLECULAR MICROBIOLOGY, 1990, 4 (08) : 1363 - 1369
  • [33] Dual coenzyme specificity of photosynthetic glyceraldehyde-3-phosphate dehydrogenase interpreted by the crystal structure of A4 isoform complexed with NAD
    Falini, G
    Fermani, S
    Ripamonti, A
    Sabatino, P
    Sparla, F
    Pupillo, P
    Trost, P
    BIOCHEMISTRY, 2003, 42 (16) : 4631 - 4639
  • [34] LIGHT-INDUCED ACTIVATION OF NADP+ -DEPENDENT GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE .9. REACTION IN ISOLATED CHLOROPLASTS
    MULLER, B
    ZIEGLER, H
    PLANTA, 1969, 85 (01) : 96 - &
  • [35] AMINO-ACID ACTIVATION OF GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE FROM CHLORELLA
    TOMOVA, N
    SETCHENSKA, M
    DETCHEV, G
    CHRISTOVA, Y
    KRUSTEVA, N
    ZEITSCHRIFT FUR PFLANZENPHYSIOLOGIE, 1972, 67 (02): : 113 - +
  • [36] COMMENTS TO THE AMINO-ACID-SEQUENCE OF YEAST GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE
    BAYNE, S
    MARTIN, B
    SVENDSEN, I
    CARLSBERG RESEARCH COMMUNICATIONS, 1980, 45 (03) : 195 - 200
  • [37] Improvement of NADPH bioavailability in Escherichia coli by replacing NAD+-dependent glyceraldehyde-3-phosphate dehydrogenase GapA with NADP+-dependent GapB from Bacillus subtilis and addition of NAD kinase
    Wang, Yipeng
    San, Ka-Yiu
    Bennett, George N.
    JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2013, 40 (12) : 1449 - 1460
  • [38] PURIFICATION, MOLECULAR-WEIGHT, AND SUBUNIT STRUCTURE OF NAD(NADP)-DEPENDENT GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE FROM CHLORELLA
    KRYSTEVA, NG
    GEORGIEVA, MA
    TOMOVA, NG
    BIOCHEMISTRY-MOSCOW, 1981, 46 (10) : 1367 - 1373
  • [39] CONTENT AND REACTIVITY OF SULFHYDRYL-GROUPS OF NAD NADP-DEPENDENT GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE FROM CHLORELLA
    KRUSTEVA, NG
    TOMOVA, NG
    GEORGIEVA, MA
    DOKLADI NA BOLGARSKATA AKADEMIYA NA NAUKITE, 1981, 34 (04): : 545 - 548
  • [40] Improving the production of NAD+ via multi-strategy metabolic engineering in Escherichia coli
    Yang, Linyan
    Mu, Xiaoqing
    Nie, Yao
    Xu, Yan
    METABOLIC ENGINEERING, 2021, 64 (64) : 122 - 133