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牛肝果糖二磷酸酶的别构性质。

The allosteric properties of beef-liver fructose bisphosphatase.

作者信息

Nimmo H G, Tipton K F

出版信息

Eur J Biochem. 1975 Oct 15;58(2):575-85. doi: 10.1111/j.1432-1033.1975.tb02408.x.

Abstract
  1. The activity of beef liver fructose bisphosphatase has been shown to respond cooperatively to increasing concentrations of the activating cations Mg2+ and Mn2+. The allosteric inhibitor AMP caused an increase in this cooperativity and a decrease in the apparent affinity of the enzyme for the activating cation. 2. The cooperative response of the enzyme to AMP is similarly increased by increasing cation concentrations with a concomitant decrease in the apparent affinity. 3. Direct binding experiments indicated that in the absence of either Mg2+ or Mn2+ the enzyme bound AMP non-cooperatively up to a maximum of two molecules per molecule of enzyme, a result that is indicative of half-sites reactivity. The binding became increasingly cooperative as the concentration of the activating cation was increased. 4. The substrate fructose bisphosphate had no effect on any of these cooperative responses. 5. These results may be most simply interpreted in terms of concerted model in which the activating cation functions both as an allosteric activator and as an essential cofactor for the reaction.
摘要
  1. 已表明牛肝果糖二磷酸酶的活性对激活阳离子Mg2+和Mn2+浓度的增加呈协同响应。变构抑制剂AMP导致这种协同性增加,且酶对激活阳离子的表观亲和力降低。2. 随着阳离子浓度增加,酶对AMP的协同响应同样增加,同时表观亲和力降低。3. 直接结合实验表明,在没有Mg2+或Mn2+的情况下,酶与AMP非协同结合,每个酶分子最多结合两个分子,这一结果表明存在半位点反应性。随着激活阳离子浓度的增加,结合变得越来越协同。4. 底物果糖二磷酸对这些协同响应均无影响。5. 这些结果可以用协同模型最简单地解释,其中激活阳离子既作为变构激活剂又作为反应的必需辅因子发挥作用。

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