Conyers G B, Wu G, Bessman M J, Mildvan A S
Departments of Biology and Biophysics and the McCollum-Pratt Institute, The Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, USA.
Biochemistry. 2000 Mar 7;39(9):2347-54. doi: 10.1021/bi992458n.
Recombinant IalA protein from Bartonella bacilliformis is a monomeric adenosine 5'-tetraphospho-5'-adenosine (Ap4A) pyrophosphatase of 170 amino acids that catalyzes the hydrolysis of Ap4A, Ap5A, and Ap6A by attack at the delta-phosphorus, with the departure of ATP as the leaving group [Cartwright et al. (1999) Biochem. Biophys. Res. Commun. 256, 474-479]. When various divalent cations were tested over a 300-fold concentration range, Mg2+, Mn2+, and Zn2+ ions were found to activate the enzyme, while Ca2+ did not. Sigmoidal activation curves were observed with Mn2+ and Mg2+ with Hill coefficients of 3.0 and 1.6 and K0.5 values of 0.9 and 5.3 mM, respectively. The substrate M2+ x Ap4A showed hyperbolic kinetics with Km values of 0.34 mM for both Mn2+ x Ap4A and Mg2+ x Ap4A. Direct Mn2+ binding studies by electron paramagnetic resonance (EPR) and by the enhancement of the longitudinal relaxation rate of water protons revealed two Mn2+ binding sites per molecule of Ap4A pyrophosphatase with dissociation constants of 1.1 mM, comparable to the kinetically determined K0.5 value of Mn2+. The enhancement factor of the longitudinal relaxation rate of water protons due to bound Mn2+ (epsilon b) decreased with increasing site occupancy from a value of 12.9 with one site occupied to 3.3 when both are occupied, indicating site-site interaction between the two enzyme-bound Mn2+ ions. Assuming the decrease in epsilon(b) to result from cross-relaxation between the two bound Mn2+ ions yields an estimated distance of 5.9 +/- 0.4 A between them. The substrate Ap4A binds one Mn2+ (Kd = 0.43 mM) with an epsilon b value of 2.6, consistent with the molecular weight of the Mn2+ x Ap4A complex. Mg2+ binding studies, in competition with Mn2+, reveal two Mg2+ binding sites on the enzyme with Kd values of 8.6 mM and one Mg2+ binding site on Ap4A with a Kd of 3.9 mM, values that are comparable to the K0.5 for Mg2+. Hence, with both Mn2+ and Mg2+, a total of three metal binding sites were found-two on the enzyme and one on the substrate-with dissociation constants comparable to the kinetically determined K0.5 values, suggesting a role in catalysis for three bound divalent cations. Ca2+ does not activate Ap4A pyrophosphatase but inhibits the Mn2+-activated enzyme competitively with a Ki = 1.9 +/- 1.3 mM. Ca2+ binding studies, in competition with Mn2+, revealed two sites on the enzyme with dissociation constants (4.3 +/- 1.3 mM) and one on Ap4A with a dissociation constant of 2.1 mM. These values are similar to its Ki suggesting that inhibition by Ca2+ results from the complete displacement of Mn2+ from the active site. Unlike the homologous MutT pyrophosphohydrolase, which requires only one enzyme-bound divalent cation in an E x M2+ x NTP x M2+ complex for catalytic activity, Ap4A pyrophosphatase requires two enzyme-bound divalent cations that function in an active E x (M2+)2 x Ap4A x M2+ complex.
来自杆状巴尔通体的重组IalA蛋白是一种由170个氨基酸组成的单体腺苷5'-四磷酸-5'-腺苷(Ap4A)焦磷酸酶,它通过攻击δ-磷催化Ap4A、Ap5A和Ap6A的水解,以ATP作为离去基团离去[卡特赖特等人(1999年)。生物化学与生物物理学研究通讯256,474 - 479]。当在300倍浓度范围内测试各种二价阳离子时,发现Mg2 +、Mn2 +和Zn2 +离子可激活该酶,而Ca2 +则不能。观察到Mn2 +和Mg2 +的S形激活曲线,希尔系数分别为3.0和1.6,K0.5值分别为0.9和5.3 mM。底物M2 + x Ap4A呈现双曲线动力学,Mn2 + x Ap4A和Mg2 + x Ap4A的Km值均为0.34 mM。通过电子顺磁共振(EPR)和水质子纵向弛豫率增强进行的直接Mn2 +结合研究表明,每分子Ap4A焦磷酸酶有两个Mn2 +结合位点,解离常数为1.1 mM,与动力学测定的Mn2 +的K0.5值相当。由于结合的Mn2 +导致的水质子纵向弛豫率增强因子(εb)随着位点占有率的增加而降低,从一个位点被占据时的12.9降至两个位点都被占据时的3.3,表明两个与酶结合的Mn2 +离子之间存在位点间相互作用。假设ε(b)的降低是由于两个结合的Mn2 +离子之间的交叉弛豫导致的,则它们之间的估计距离为5.9±0.4 Å。底物Ap4A结合一个Mn2 +(Kd = 0.43 mM),εb值为2.6,与Mn2 + x Ap4A复合物的分子量一致。与Mn2 +竞争的Mg2 +结合研究表明,酶上有两个Mg2 +结合位点,Kd值为8.6 mM,Ap4A上有一个Mg2 +结合位点,Kd为3.9 mM,这些值与Mg2 +的K0.5相当。因此,对于Mn2 +和Mg2 +,总共发现了三个金属结合位点——两个在酶上,一个在底物上——解离常数与动力学测定的K0.5值相当,表明三个结合的二价阳离子在催化中起作用。Ca2 +不激活Ap4A焦磷酸酶,但以Ki = 1.9±1.3 mM竞争性抑制Mn2 +激活的酶。与Mn2 +竞争的Ca2 +结合研究表明,酶上有两个位点,解离常数(4.3±1.3 mM),Ap4A上有一个位点,解离常数为2.1 mM。这些值与其Ki相似,表明Ca2 +的抑制作用是由于Mn2 +从活性位点完全被取代。与同源的MutT焦磷酸水解酶不同,MutT焦磷酸水解酶在E x M2 + x NTP x M2 +复合物中仅需要一个与酶结合的二价阳离子来发挥催化活性,Ap4A焦磷酸酶需要两个与酶结合的二价阳离子,它们在活性E x (M2 +)2 x Ap4A x M2 +复合物中起作用。