Porter D J, Austin E A
Division of Experimental Therapy, Wellcome Research Laboratories, Research Triangle Park, North Carolina 27709.
J Biol Chem. 1993 Nov 15;268(32):24005-11.
Cytosine deaminase (CDase, EC 3.5.4.1) isolated from Escherichia coli contains a catalytically essential divalent metal ion. Fe2+ was efficiently removed from the enzyme with o-phenanthroline to yield an apoenzyme with less than 5% of the catalytic activity of native enzyme. The time courses for inactivation and for removal of Fe2+ from the enzyme by o-phenanthroline were similar. Apoenzyme reconstituted with Fe2+, Mn2+, Co2+, or Zn2+ (M2+CDase) had kcat values of 185, 88, 50, and 32 s-1, respectively. The Km values of these M2+CDases for cytosine were similar (0.22-0.39 mM). Cytosine potently inhibited reconstitution of the apoenzyme with Fe2+. Fe2+CDase was rapidly inactivated by 1 mM H2O2 (t1/2 < 1 s), whereas Mn2+CDase, Co2+CDase, and Zn2+CDase were not inactivated by H2O2. CDase was also inhibited by excess divalent cations. Cu2+ and Zn2+ reversibly inhibited Fe2+CDase activity with inhibition constants of 1.8 and 5.8 microM, respectively. Cu2+ dissociated slowly from the secondary binding on CDase with a rate constant of 2 x 10(-3) s-1.
从大肠杆菌中分离出的胞嘧啶脱氨酶(CDase,EC 3.5.4.1)含有一个催化必需的二价金属离子。用邻菲罗啉可有效地从该酶中去除Fe2+,从而产生一种脱辅基酶,其催化活性不到天然酶的5%。邻菲罗啉使酶失活以及从酶中去除Fe2+的时间进程相似。用Fe2+、Mn2+、Co2+或Zn2+重构的脱辅基酶(M2+CDase)的kcat值分别为185、88、50和32 s-1。这些M2+CDase对胞嘧啶的Km值相似(0.22 - 0.39 mM)。胞嘧啶强烈抑制脱辅基酶与Fe2+的重构。Fe2+CDase被1 mM H2O2迅速失活(t1/2 < 1 s),而Mn2+CDase、Co2+CDase和Zn2+CDase不被H2O2失活。CDase也受到过量二价阳离子的抑制。Cu2+和Zn2+可逆地抑制Fe2+CDase的活性,抑制常数分别为1.8和5.8 microM。Cu2+从CDase的二级结合位点缓慢解离,解离速率常数为2×10(-3) s-1。