Ikeda M, Iwai K
J Nutr Sci Vitaminol (Tokyo). 1976;22(5):365-73. doi: 10.3177/jnsv.22.365.
Dihydrofolate synthetase (EC 6.3.2.12) from Serratia indica IFO 3759 require a divalent cation and a univalent cation for its activity. The divalent cation requirement was satisified by magnesium ion, manganese ion or ferrous ion. High activity was obtained with 5 mM of magnesium ion. The effect of manganese ion was weak. The univalent cation requirement was satisfied by potassium ion, ammonium ion or rubidium ion, and high activity was obtained with 100 mM of each univalent cation. Increase in the potassium concentration lowered Km values for dihydropteroate and L-glutamate, and raised V max for ATP and dihydropteroate. Potassium ion had little effect on Km value for ATP. These results suggest that potassium ion may function on the affinities of dihydropteroate and L-glutamate to the enzyme. Dihydrofolate synthetase was inhibited by the addition of reduced forms of homopteroic acid. Stronger inhibition was observed by dihydrohomopteroate than by tetrahydrohomopteroate.
来自印度沙雷氏菌IFO 3759的二氢叶酸合成酶(EC 6.3.2.12)的活性需要一种二价阳离子和一种单价阳离子。二价阳离子需求可由镁离子、锰离子或亚铁离子满足。在5 mM镁离子存在下可获得高活性。锰离子的作用较弱。单价阳离子需求可由钾离子、铵离子或铷离子满足,每种单价阳离子在100 mM时可获得高活性。钾离子浓度的增加降低了二氢蝶酸和L-谷氨酸的Km值,并提高了ATP和二氢蝶酸的Vmax。钾离子对ATP的Km值影响很小。这些结果表明钾离子可能对二氢蝶酸和L-谷氨酸与该酶的亲和力起作用。添加还原型同型蝶酸会抑制二氢叶酸合成酶。二氢高蝶酸比四氢高蝶酸表现出更强的抑制作用。