Title Saccharomyces cerevisiae의 nonmitochondrial citrate synthase 분리 및 특성
Author 조남석 · 김광수 * · 맹필재
Address 충남대학교 자연과학대학 미생물학과
Bibliography Korean Journal of Microbiology, 29(4),230-237, 1991
DOI
Key Words Nonmitochondrial citrate synthase, Mitochondrial citrate synthase, Purification, Saccharomyces cerevisiae
Abstract Citrate synthase 1 (mitochondrial) and citrate synthase 2 (nonmitochondrial) were purified from Saccharomyces cerevisiae. The physical and enzymatic characteristics of citrate synthase 2 were ananlyzed in comparison with citrate synthase 1. Both isoenzymes were shown to be dimeric proteins of identical subunits, and the molecular weights of the subunits were estimated to be 48.3kDa for citrate synthase 1 and 47.0kDa for citrate synthase 2, respectively. The optimal pH value for enzyme activity was pH 7.5 for both isoenzymes. However, the optimal temperature for the activity was strikingly different; while the activity of citrate synthase 1 reached its peak at 65℃, that of citrate synthase 2 was maximal at 40℃. Citrate synthase 2 showed much lower thermal and pH stability than citrate synthase 1. In addition, citrate synthase 2 was affected much more by the metal ions such as Zn^2+, Mn^2+, and Co^2+ than citrate synthase 1. Among the several possible regulatory metabolites tested, ATP showed the strongest inhibitory effect on both enzymes. ADP and NADH were found to have greater effect on citrate synthase 2 than on citrate synthase 1. Kinetic analysis revealed that citrate synthase 2 has approximately 7- and 3.5-fold lower affinity to acetyl CoA and to oxaloacetate, respectively, than citrate synthase 1.
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