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腺嘌呤核苷酸作为豌豆种子谷氨酰胺合成酶的变构效应剂。

Adenine nucleotides as allosteric effectors of pea seed glutamine synthetase.

作者信息

Knight T J, Langston-Unkefer P J

机构信息

Isotope and Nuclear Chemistry Division, Los Alamos National Laboratory, New Mexico 87545.

出版信息

J Biol Chem. 1988 Aug 15;263(23):11084-9.

PMID:2900240
Abstract

The effects of adenine nucleotides on pea seed glutamine synthetase (EC 6.3.1.2) activity were examined as a part of our investigation of the regulation of this octameric plant enzyme. Saturation curves for glutamine synthetase activity versus ATP with ADP as the changing fixed inhibitor were not hyperbolic; greater apparent Vmax values were observed in the presence of added ADP than the Vmax observed in the absence of ADP. Hill plots of data with ADP present curved upward and crossed the plot with no added ADP. The stoichiometry of adenine nucleotide binding to glutamine synthetase was examined. Two molecules of [gamma-32P]ATP were bound per subunit in the presence of methionine sulfoximine. These ATP molecules were bound at an allosteric site and at the active site. One molecule of either [gamma-32P]ATP or [14C]ADP bound per subunit in the absence of methionine sulfoximine; this nucleotide was bound at an allosteric site. ADP and ATP compete for binding at the allosteric site, although ADP was preferred. ADP binding to the allosteric site proceeded in two kinetic phases. A Vmax value of 1.55 units/mg was measured for glutamine synthetase with one ADP tightly bound per enzyme subunit; a Vmax value of 0.8 unit/mg was measured for enzyme with no adenine nucleotide bound at the allosteric site. The enzyme activation caused by the binding of ADP to the allosteric sites was preceded by a lag phase, the length of which was dependent on the ADP concentration. Enzyme incubated in 10 mM ADP bound approximately 4 mol of ADP/mol of native enzyme before activation was observed; the activation was complete when 7-8 mol of ADP were bound per mol of the octameric, native enzyme. The Km for ATP (2 mM) was not changed by ADP binding to the allosteric sites. ADP was a simple competitive inhibitor (Ki = 0.05 mM) of ATP for glutamine synthetase with eight molecules of ADP tightly bound to the allosteric sites of the octamer. Binding of ATP to the allosteric sites led to marked inhibition.

摘要

作为我们对这种八聚体植物酶调节机制研究的一部分,我们检测了腺嘌呤核苷酸对豌豆种子谷氨酰胺合成酶(EC 6.3.1.2)活性的影响。以ADP作为变化的固定抑制剂时,谷氨酰胺合成酶活性相对于ATP的饱和曲线并非双曲线;与不存在ADP时观察到的Vmax相比,添加ADP时观察到的表观Vmax值更大。存在ADP时数据的希尔图向上弯曲,并与未添加ADP的图相交。检测了腺嘌呤核苷酸与谷氨酰胺合成酶结合的化学计量。在甲硫氨酸亚砜亚胺存在下,每个亚基结合两分子的[γ-32P]ATP。这些ATP分子结合在别构位点和活性位点。在不存在甲硫氨酸亚砜亚胺的情况下,每个亚基结合一分子的[γ-32P]ATP或[14C]ADP;这种核苷酸结合在别构位点。ADP和ATP在别构位点竞争结合,尽管ADP更受青睐。ADP与别构位点的结合分两个动力学阶段进行。对于每个酶亚基紧密结合一个ADP的谷氨酰胺合成酶,测得的Vmax值为1.55单位/毫克;对于在别构位点未结合腺嘌呤核苷酸的酶,测得的Vmax值为0.8单位/毫克。ADP与别构位点结合引起的酶激活之前有一个滞后阶段,其长度取决于ADP浓度。在10 mM ADP中孵育的酶在观察到激活之前,每摩尔天然酶结合约4摩尔ADP;当每摩尔八聚体天然酶结合7 - 8摩尔ADP时,激活完成。ADP与别构位点的结合不会改变ATP的Km(2 mM)。对于八聚体的谷氨酰胺合成酶,当八个分子的ADP紧密结合在别构位点时,ADP是ATP的简单竞争性抑制剂(Ki = 0.05 mM)。ATP与别构位点的结合导致显著抑制。

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