Brevet A, Coste H, Fromant M, Plateau P, Blanquet S
Laboratoire de Biochimie, Unité Associée 240 du Centre National de la Recherche Scientifique, Palaiseau, France.
Biochemistry. 1987 Jul 28;26(15):4763-8. doi: 10.1021/bi00389a025.
The diadenosine 5',5'''-P1,P4-tetraphosphate alpha,beta-phosphorylase (Ap4A phosphorylase), recently observed in yeast [Guaranowski, A., & Blanquet, S. (1985) J. Biol. Chem. 260, 3542-3547], is shown to be capable of catalyzing the synthesis of Ap4A from ATP + ADP, i.e., the reverse reaction of the phosphorolysis of Ap4A. The synthesis of Ap4A markedly depends on the presence of a divalent cation (Ca2+, Mn2+, or Mg2+). In vitro, the equilibrium constant K = ([Ap4A][Pi])/[(ATP][ADP]) is very sensitive to pH. Ap4A synthesis is favored at low pH, in agreement with the consumption of one to two protons when ATP + ADP are converted into Ap4A and phosphate. Optimal activity is found at pH 5.9. At pH 7.0 and in the presence of Ca2+, the Vm for Ap4A synthesis is 7.4 s-1 (37 degrees C). Ap4A phosphorylase is, therefore, a valuable candidate for the production of Ap4A in vivo. Ap4A phosphorylase is also capable of producing various Np4N' molecules from NTP and N'DP. The NTP site is specific for purine ribonucleotides (N = A, G), whereas the N'DP site has a broader specificity (N' = A, C, G, U, dA). This finding suggests that the Gp4N' nucleotides, as well as the Ap4N' ones, could occur in yeast cells.
最近在酵母中发现的二腺苷5',5'''-P1,P4-四磷酸α,β-磷酸化酶(Ap4A磷酸化酶)[瓜拉诺夫斯基,A.,& 布兰凯,S.(1985年)《生物化学杂志》260,3542 - 3547],已证明其能够催化由ATP + ADP合成Ap4A,即Ap4A磷酸解的逆反应。Ap4A的合成明显依赖于二价阳离子(Ca2 +、Mn2 +或Mg2 +)的存在。在体外,平衡常数K = ([Ap4A][Pi])/[(ATP][ADP])对pH非常敏感。Ap4A的合成在低pH时更有利,这与ATP + ADP转化为Ap4A和磷酸盐时消耗一到两个质子的情况一致。在pH 5.9时发现最佳活性。在pH 7.0且存在Ca2 +的情况下,Ap4A合成的Vm为7.4 s-1(37摄氏度)。因此,Ap4A磷酸化酶是体内产生Ap4A的一个有价值的候选者。Ap4A磷酸化酶还能够从NTP和N'DP产生各种Np4N'分子。NTP位点对嘌呤核糖核苷酸(N = A、G)具有特异性,而N'DP位点具有更广泛的特异性(N' = A、C、G、U、dA)。这一发现表明,Gp4N'核苷酸以及Ap4N'核苷酸可能存在于酵母细胞中。