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具有不同底物特异性的核酮糖-1,5-二磷酸羧化酶对反应中间体的分配作用

Reaction intermediate partitioning by ribulose-bisphosphate carboxylases with differing substrate specificities.

作者信息

Pierce J, Andrews T J, Lorimer G H

出版信息

J Biol Chem. 1986 Aug 5;261(22):10248-56.

PMID:3090034
Abstract

The carboxylated, 6-carbon reaction intermediate (3-keto-2-carboxyarabinitol 1,5-bisphosphate) from the ribulose-1,5-bisphosphate carboxylase reaction was obtained by denaturing the enzyme with acid during steady-state turnover. Carbon-13 NMR analysis indicates that this beta-keto acid exists in solution predominantly as the C-3 ketone (as opposed to the hydrate) form. In neutral solution the intermediate slowly decomposes (t1/2 approximately 1 h) by decarboxylation. This decarboxylation reaction is catalyzed by nonactivated (metal free) ribulose-1,5-bisphosphate carboxylase. Alternately, the activated enzyme predominantly catalyzes the hydrolysis of the intermediate to two molecules of glycerate 3-phosphate. The partitioning of the intermediate (i.e. hydrolysis/(hydrolysis + decarboxylation] by activated ribulose-1,5-bisphosphate carboxylase was studied using enzymes from three different sources and with different activating metal atoms. This afforded a series of catalysts whose relative specificities for the alternate substrates, carbon dioxide and oxygen, varied over a 50-fold range. When Mg2+ was the activating metal, the partitioning of the reaction intermediate varied only from 0.93 to 1 for all three enzymes. Even the Co2+ activated enzyme from Rhodospirillum rubrum, which is completely devoid of carboxylase activity, partitioned approximately 30% of added intermediate to products. It is probable that the 6-carbon intermediate's strong commitment to product formation is paralleled by a similarly strong forward commitment of the analogous intermediate in the oxygenase reaction. In this event, the variations in relative specificity for the gaseous substrates of enzymes from different natural sources must arise by interactions that take place on the enzyme prior to the formation of the intermediates.

摘要

在稳态周转过程中,通过用酸使核酮糖-1,5-二磷酸羧化酶变性,获得了该酶反应的羧化六碳反应中间体(3-酮-2-羧基阿拉伯糖醇1,5-二磷酸)。碳-13核磁共振分析表明,这种β-酮酸在溶液中主要以C-3酮(而非水合物)形式存在。在中性溶液中,该中间体通过脱羧反应缓慢分解(半衰期约1小时)。这种脱羧反应由未活化(无金属)的核酮糖-1,5-二磷酸羧化酶催化。另外,活化的酶主要催化中间体水解为两分子3-磷酸甘油酸。使用来自三种不同来源且具有不同活化金属原子的酶,研究了活化的核酮糖-1,5-二磷酸羧化酶对中间体的分配情况(即水解/(水解+脱羧))。这提供了一系列催化剂,其对替代底物二氧化碳和氧气的相对特异性在50倍范围内变化。当Mg2+为活化金属时,所有三种酶的反应中间体分配仅在0.93至1之间变化。即使是来自红螺菌的完全没有羧化酶活性的Co2+活化酶,也将约30%的添加中间体分配到产物中。很可能6-碳中间体对产物形成的强烈倾向与加氧酶反应中类似中间体同样强烈的正向倾向相平行。在这种情况下,不同天然来源的酶对气态底物相对特异性的变化必定是由中间体形成之前在酶上发生的相互作用引起的。

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1
Reaction intermediate partitioning by ribulose-bisphosphate carboxylases with differing substrate specificities.具有不同底物特异性的核酮糖-1,5-二磷酸羧化酶对反应中间体的分配作用
J Biol Chem. 1986 Aug 5;261(22):10248-56.
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Partition kinetics of ribulose-1,5-bisphosphate carboxylase from Rhodospirillum rubrum.深红红螺菌中1,5-二磷酸核酮糖羧化酶的分配动力学
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Pyruvate is a by-product of catalysis by ribulosebisphosphate carboxylase/oxygenase.丙酮酸是核酮糖二磷酸羧化酶/加氧酶催化作用的副产物。
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Evidence supporting lysine 166 of Rhodospirillum rubrum ribulosebisphosphate carboxylase as the essential base which initiates catalysis.支持红螺菌核酮糖二磷酸羧化酶赖氨酸166作为启动催化作用的必需碱基的证据。
J Biol Chem. 1988 May 15;263(14):6468-71.
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Differential effects of metal ions on Rhodospirillum rubrum ribulosebisphosphate carboxylase/oxygenase and stoichiometric incorporation of HCO3- into a cobalt(III)--enzyme complex.金属离子对深红红螺菌核酮糖二磷酸羧化酶/加氧酶的不同影响以及HCO₃⁻化学计量地掺入钴(III)-酶复合物中
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Retention of the oxygens at C-2 and C-3 of D-ribulose 1,5-bisphosphate in the reaction catalyzed by ribulose-1,5-bisphosphate carboxylase.在1,5-二磷酸核酮糖羧化酶催化的反应中,1,5-二磷酸D-核酮糖的C-2和C-3位氧原子的保留。
Biochemistry. 1978 Sep 19;17(19):4041-4. doi: 10.1021/bi00612a026.
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Inhibition of ribulose bisphosphate carboxylase by substrate ribulose 1,5-bisphosphate.底物1,5-二磷酸核酮糖对二磷酸核酮糖羧化酶的抑制作用。
J Biol Chem. 1983 Nov 25;258(22):13752-8.
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Ribulose bisphosphate carboxylase/oxygenase in toluene-permeabilized Rhodospirillum rubrum.甲苯通透的红螺菌中的1,5-二磷酸核酮糖羧化酶/加氧酶
Biochem J. 1983 Apr 15;212(1):45-54. doi: 10.1042/bj2120045.
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Facilitation of the terminal proton transfer reaction of ribulose 1,5-bisphosphate carboxylase/oxygenase by active-site Lys166.
Biochemistry. 1996 Nov 5;35(44):13865-70. doi: 10.1021/bi962184t.

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How various factors influence the CO2/O 2 specificity of ribulose-1,5-bisphosphate carboxylase/oxygenase.各种因素如何影响核酮糖-1,5-二磷酸羧化酶/加氧酶的 CO2/O2 特异性。
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Slow Inactivation of Ribulosebisphosphate Carboxylase during Catalysis Is Caused by Accumulation of a Slow, Tight-Binding Inhibitor at the Catalytic Site.催化过程中核酮糖二磷酸羧化酶的缓慢失活是由催化位点处一种缓慢、紧密结合的抑制剂积累所致。
Plant Physiol. 1990 Aug;93(4):1390-7. doi: 10.1104/pp.93.4.1390.
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Degradation of 2-carboxyarabinitol 1-phosphate by a specific chloroplast phosphatase.一种特定的叶绿体磷酸酶对2-羧基阿拉伯糖醇1-磷酸的降解作用。
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Determinants of substrate specificity and the role of metal in the reactions of ribulosebisphosphate carboxylase/oxygenase.核酮糖二磷酸羧化酶/加氧酶反应中底物特异性的决定因素和金属的作用。
Plant Physiol. 1986 Aug;81(4):943-5. doi: 10.1104/pp.81.4.943.
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Despite slow catalysis and confused substrate specificity, all ribulose bisphosphate carboxylases may be nearly perfectly optimized.尽管催化作用缓慢且底物特异性不明确,但所有核酮糖二磷酸羧化酶可能都已近乎完美地实现了优化。
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Three-dimensional structure of ribulose-1,5-bisphosphate carboxylase/oxygenase from Rhodospirillum rubrum at 2.9 A resolution.红假单胞菌核酮糖-1,5-二磷酸羧化酶/加氧酶的三维结构,分辨率为 2.9 A。
EMBO J. 1986 Dec 20;5(13):3409-15. doi: 10.1002/j.1460-2075.1986.tb04662.x.