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[小球藻谷氨酰胺合成酶活性位点中巯基和组氨酸的存在情况]

[Presence of SH-groups and histidine in the active site of Chlorella glutamine synthetase].

作者信息

Rasulov A S, Evstigneeva Z G, Kretovich V L

出版信息

Biokhimiia. 1978 Jun;43(6):1090-6.

PMID:27248
Abstract

The presence of two cysteine residues per each six monomers comprising the oligomer of Chlorella glutamine synthetase (E.C.6.3.1.2) is demonstrated using homogenous enzyme preparation. p-Chloromercuribenzoate (p-CMB) is found to inhibit glutamine synthetase activity, the degree of inhibition depending on the inhibitor concentration. The following enzyme reactivation by dithiotreitol (10(-2) M) was observed only when the enzyme was inactivated with 10(-5) M p-CMB under 15 min. preincubation. Preincubation of the enzyme with 10(-4) M p-CMB for 45 min. did not result in its reactivation. Gel filtration of glutamine synthetase treated with 10(-4) M p-CMB has revealed the dissociation of the enzyme into inactive monomers. Incubation of glutamine synthetase with p-CMB at various pH values, incubation after pre-treatment with urea and experiments with HgCl2 indicate the presence of free and masked inside the globula SH-groups in the enzyme molecule. Competitive character of the enzyme inhibition with p-CMB with respect to ATP indicates that SH-groups of the active site participate in the ATP binding, probably, as Mg-ATP or Mn-ATP complexes. Data on the estimation of ionization constant of glutamate-binding group and experiments on the effect of histidine photooxidation on the enzyme activity indicate the presence of histidine residue in the enzyme active site, which participates in glutamate binding.

摘要

利用纯化的酶制剂证明了小球藻谷氨酰胺合成酶(E.C.6.3.1.2)寡聚体的每个六聚体中有两个半胱氨酸残基。发现对氯汞苯甲酸(p-CMB)可抑制谷氨酰胺合成酶活性,抑制程度取决于抑制剂浓度。仅当酶在15分钟预孵育下用10⁻⁵M p-CMB灭活时,才观察到随后用二硫苏糖醇(10⁻²M)使酶重新激活。酶与10⁻⁴M p-CMB预孵育45分钟未导致其重新激活。对用10⁻⁴M p-CMB处理的谷氨酰胺合成酶进行凝胶过滤,结果显示该酶解离成无活性的单体。在不同pH值下谷氨酰胺合成酶与p-CMB的孵育、用尿素预处理后的孵育以及用HgCl₂进行的实验表明,酶分子中存在游离的和隐藏在球蛋白内部的SH基团。p-CMB对酶的抑制相对于ATP具有竞争性,这表明活性位点的SH基团可能以Mg-ATP或Mn-ATP复合物的形式参与ATP结合。关于谷氨酸结合基团电离常数估计的数据以及组氨酸光氧化对酶活性影响的实验表明,酶活性位点存在组氨酸残基,其参与谷氨酸结合。

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