RRC ID 47559
著者 Hasegawa S, Uematsu K, Natsuma Y, Suda M, Hiraga K, Jojima T, Inui M, Yukawa H.
タイトル Improvement of the redox balance increases L-valine production by Corynebacterium glutamicum under oxygen deprivation conditions.
ジャーナル Appl Environ Microbiol
Abstract Production of L-valine under oxygen deprivation conditions by Corynebacterium glutamicum lacking the lactate dehydrogenase gene ldhA and overexpressing the L-valine biosynthesis genes ilvBNCDE was repressed. This was attributed to imbalanced cofactor production and consumption in the overall L-valine synthesis pathway: two moles of NADH was generated and two moles of NADPH was consumed per mole of L-valine produced from one mole of glucose. In order to solve this cofactor imbalance, the coenzyme requirement for L-valine synthesis was converted from NADPH to NADH via modification of acetohydroxy acid isomeroreductase encoded by ilvC and introduction of Lysinibacillus sphaericus leucine dehydrogenase in place of endogenous transaminase B, encoded by ilvE. The intracellular NADH/NAD(+) ratio significantly decreased, and glucose consumption and L-valine production drastically improved. Moreover, L-valine yield increased and succinate formation decreased concomitantly with the decreased intracellular redox state. These observations suggest that the intracellular NADH/NAD(+) ratio, i.e., reoxidation of NADH, is the primary rate-limiting factor for L-valine production under oxygen deprivation conditions. The L-valine productivity and yield were even better and by-products derived from pyruvate further decreased as a result of a feedback resistance-inducing mutation in the acetohydroxy acid synthase encoded by ilvBN. The resultant strain produced 1,470 mM L-valine after 24 h with a yield of 0.63 mol mol of glucose(-1), and the L-valine productivity reached 1,940 mM after 48 h.
巻・号 78(3)
ページ 865-75
公開日 2012-2-1
DOI 10.1128/AEM.07056-11
PII AEM.07056-11
PMID 22138982
PMC PMC3264131
MeSH Anaerobiosis Bacillaceae / enzymology Bacillaceae / genetics Corynebacterium glutamicum / enzymology Corynebacterium glutamicum / genetics Corynebacterium glutamicum / metabolism* Energy Metabolism Glucose / metabolism Metabolic Engineering* NAD / metabolism NADP / metabolism Oxidation-Reduction Oxygen / metabolism* Succinic Acid / metabolism Valine / metabolism*
IF 4.016
引用数 73
WOS 分野 BIOTECHNOLOGY & APPLIED MICROBIOLOGY MICROBIOLOGY
リソース情報
一般微生物 JCM 12072