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来自酿酒酵母的腺苷5'-三磷酸硫酸化酶。

Adenosine 5'-triphosphate sulphurylase from Saccharomyces cerevisiae.

作者信息

Hawes C S, Nicholas D J

出版信息

Biochem J. 1973 Jul;133(3):541-50. doi: 10.1042/bj1330541.

Abstract
  1. ATP sulphurylase from Saccharomyces cerevisiae was purified 140-fold by using heat treatment, DEAE-cellulose chromatography and Sepharose 6B gel filtration. 2. The enzyme was stable at -15 degrees C, optimum reaction velocity was between pH7.0 and 9.0, and the activation energy was 62kJ/mol (14.7kcal/mol). 3. The substrate was shown to be the MgATP(2-) complex, free ATP being inhibitory. 4. Double-reciprocal plots from initial-velocity studies were intersecting and the K(m) of each substrate was determined at infinite concentration of the other (K(m) MgATP(2-), 0.07mm; MoO(4) (2-), 0.17mm). 5. Radio-isotopic exchange between the substrate pairs, adenosine 5'-[(35)S]sulphatophosphate and SO(4) (2-), (35)SO(4) (2-) and adenosine 5'-sulphatophosphate, occurred only in the presence of either MgATP(2-) or PP(i). This suggests, along with the initial-velocity data, a sequential reaction mechanism in which both substrates bind before any product is released. 6. The enzyme reaction was specific for ATP and was not inhibited by l-cysteine, l-methionine, SO(3) (2-), S(2)O(3) (2-) (all 2mm) nor by p-chloromercuribenzoate (1mm). 7. Competitive inhibition of the enzyme with respect to MoO(4) (2-) was produced by SO(4) (2-) (K(i)=2.0mm) and non-competitive inhibition by sulphide (K(i)=3.4mm). 8. Adenosine 5'-sulphatophosphate inhibited strongly and concentrations as low as 0.02mm altered the normal hyperbolic velocity-substrate curves with both MgATP(2-) and MoO(4) (2-) to sigmoidal forms.
摘要
  1. 通过热处理、DEAE - 纤维素层析和琼脂糖6B凝胶过滤,将来自酿酒酵母的ATP硫酸化酶纯化了140倍。2. 该酶在-15℃下稳定,最佳反应速度在pH7.0至9.0之间,活化能为62kJ/mol(14.7kcal/mol)。3. 显示底物为MgATP(2-)复合物,游离ATP具有抑制作用。4. 初始速度研究的双倒数图相交,并且在另一种底物无限浓度下测定每种底物的K(m)(MgATP(2-)的K(m)为0.07mM;MoO(4) (2-)的K(m)为0.17mM)。5. 底物对腺苷5'-[(35)S]硫酸磷酸和SO(4) (2-)、(35)SO(4) (2-)和腺苷5'-硫酸磷酸之间的放射性同位素交换仅在MgATP(2-)或PP(i)存在时发生。这与初始速度数据一起表明了一种顺序反应机制,即两种底物在任何产物释放之前结合。6. 该酶反应对ATP具有特异性,不受l - 半胱氨酸、l - 甲硫氨酸、SO(3) (2-)、S(2)O(3) (2-)(均为2mM)以及对氯汞苯甲酸(1mM)的抑制。7. SO(4) (2-)对该酶相对于MoO(4) (2-)产生竞争性抑制(K(i)=2.0mM),而硫化物产生非竞争性抑制(K(i)=3.4mM)。8. 腺苷5'-硫酸磷酸强烈抑制,低至0.02mM的浓度会使MgATP(2-)和MoO(4) (2-)的正常双曲线速度 - 底物曲线变为S形。

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