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金属离子对微粒体UDP-葡萄糖醛酸基转移酶的调节。锰离子对正向和逆向反应的不同影响。

Regulation of microsomal UDP-glucuronyltransferase by metal ions. Differential effects of Mn2+ on forward and reverse reactions.

作者信息

Zakim D, Vessey D A

出版信息

Eur J Biochem. 1976 May 1;64(2):459-63. doi: 10.1111/j.1432-1033.1976.tb10323.x.

Abstract

Mn2+ activates UDP-glucuronyltransferase (assayed with p-nitrophenol as aglycone) in assays of the forward reaction. The kinetic mechanism of this activation is an increase in activity at V. The rate of the reverse reaction catalyzed by UDP-glucuronyltransferase (UDP-dependent hydrolysis of p-nitrophenylglucuronic acid) is inhibited by Mn2+. The basis for this inhibition is an increase in KUDP, and a small increase in KNphGlcUA. Mn2+ appears to have no effect of the activity of the reverse reaction of saturating concentrations of both substrates. The differential effects of divalent metal ions on rates of the forward and reverse reactions catalyzed by UDP-glucuronyltransferase are due in part to differences in the affinities of UDP-glucuronic acid and UDP for metals. Keq for the formation of UDP-Mn2+ is 8.6 X 10(3); Keq for the formation of UDP-glucuronic acid-Mn2+ is 4.8 X 10(2). High concentrations of UDP thus can compete for metal ions bound to UDP-glucuronyltransferase, but UDP-glucuronic acid is less likely to do so. This competition for metal ions between the enzyme and substrates accounts for the failure of Mn2+ to increase the activity at V of the reverse reaction. Mn2+-induced inhibition of the reverse reaction, due to an increase of KUDP, reflects that the affinity of the affinity of the enzyme for UDP is greater than that for UDP-Mn2+. On the other hand, formation of a complex between UDP-glucuronic and Mn2+ does not alter the affinity of UDP-glucuronyltransferase for this nucleotide derivative

摘要

在正向反应测定中,Mn2+可激活UDP-葡萄糖醛酸基转移酶(以对硝基苯酚作为糖苷配基进行测定)。这种激活的动力学机制是Vmax时活性增加。UDP-葡萄糖醛酸基转移酶催化的逆向反应(对硝基苯基葡萄糖醛酸的UDP依赖性水解)速率受到Mn2+的抑制。这种抑制的基础是KUDP增加,以及KNphGlcUA略有增加。在两种底物饱和浓度下,Mn2+似乎对逆向反应活性没有影响。二价金属离子对UDP-葡萄糖醛酸基转移酶催化的正向和逆向反应速率的不同影响,部分归因于UDP-葡萄糖醛酸和UDP对金属亲和力的差异。UDP-Mn2+形成的Keq为8.6×10³;UDP-葡萄糖醛酸-Mn2+形成的Keq为4.8×10²。因此,高浓度的UDP可竞争与UDP-葡萄糖醛酸基转移酶结合的金属离子,但UDP-葡萄糖醛酸这样做的可能性较小。酶与底物之间对金属离子的这种竞争解释了Mn2+未能增加逆向反应Vmax时活性的原因。由于KUDP增加,Mn2+诱导的逆向反应抑制反映出酶对UDP的亲和力大于对UDP-Mn2+的亲和力。另一方面,UDP-葡萄糖醛酸与Mn2+形成复合物不会改变UDP-葡萄糖醛酸基转移酶对这种核苷酸衍生物的亲和力

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