Pappas A, Park T S, Carman G M
Department of Food Science, Cook College, New Jersey Agricultural Experiment Station, Rutgers University, New Brunswick, New Jersey 08901, USA.
Biochemistry. 1999 Dec 14;38(50):16671-7. doi: 10.1021/bi9920127.
CTP synthetase [EC 6.3.4.2, UTP:ammonia ligase (ADP-forming)] from the yeast Saccharomyces cerevisiae catalyzes the ATP-dependent transfer of the amide nitrogen from glutamine to the C-4 position of UTP to form CTP. In this work, we demonstrated that CTP synthetase utilized dUTP as a substrate to synthesize dCTP. The dUTP-dependent activity was linear with time and with enzyme concentration. Maximum dUTP-dependent activity was dependent on MgCl(2) (4 mM) and GTP (K(a) = 14 microM) at a pH optimum of 8.0. The apparent K(m) values for dUTP, ATP, and glutamine were 0.18, 0.25, and 0.41 mM, respectively. dUTP promoted the tetramerization of CTP synthetase, and the extent of enzyme tetramerization correlated with dUTP-dependent activity. dCTP was a poor inhibitor of dUTP-dependent activity, whereas CTP was a potent inhibitor of this activity. The enzyme catalyzed the synthesis of dCTP and CTP when dUTP and UTP were used as substrates together. CTP was the major product synthesized when dUTP and UTP were present at saturating concentrations. When dUTP and UTP were present at concentrations near their K(m) values, the synthesis of dCTP increased relative to that of CTP. The synthesis of dCTP was favored over the synthesis of CTP when UTP was present at a concentration near its K(m) value and dUTP was varied from subsaturating to saturating concentrations. These data suggested that the dUTP-dependent synthesis of dCTP by CTP synthetase activity may be physiologically relevant.
来自酿酒酵母的CTP合成酶[EC 6.3.4.2,UTP:氨连接酶(形成ADP)]催化谷氨酰胺中酰胺氮向UTP的C-4位的ATP依赖性转移,形成CTP。在这项工作中,我们证明CTP合成酶利用dUTP作为底物合成dCTP。dUTP依赖性活性与时间和酶浓度呈线性关系。最大dUTP依赖性活性在最适pH 8.0时取决于MgCl₂(4 mM)和GTP(Kₐ = 14 μM)。dUTP、ATP和谷氨酰胺的表观Kₘ值分别为0.18、0.25和0.41 mM。dUTP促进CTP合成酶的四聚化,酶四聚化程度与dUTP依赖性活性相关。dCTP是dUTP依赖性活性的弱抑制剂,而CTP是该活性的有效抑制剂。当dUTP和UTP一起用作底物时,该酶催化dCTP和CTP的合成。当dUTP和UTP以饱和浓度存在时,CTP是合成的主要产物。当dUTP和UTP以接近其Kₘ值的浓度存在时,dCTP的合成相对于CTP增加。当UTP以接近其Kₘ值的浓度存在且dUTP从亚饱和浓度变化到饱和浓度时,dCTP的合成比CTP的合成更受青睐。这些数据表明,CTP合成酶活性依赖dUTP合成dCTP可能具有生理相关性。