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一种缺乏催化亚基相互作用的天冬氨酸转氨甲酰酶。通过紫外吸收和圆二色光谱研究构象变化。

An aspartate transcarbamylase lacking catalytic subunit interactions. Study of conformational changes by ultraviolet absorbance and circular dichroism spectroscopy.

作者信息

Kerbiriou D, Hervé G

出版信息

J Biol Chem. 1977 May 10;252(9):2881-90.

PMID:323258
Abstract

A modified form of aspartate transcarbamylase is synthesized by Escherichia coli in the presence of 2-thiouracil which does not exhibit homotropic cooperative interactions between active sites yet retains heterotropic cooperative interactions due to nucleotide binding. The conformational changes induced in the modified enzyme by the binding of different ligands (substrates, substrate analogs, a transition state analog, and nucleotide effectors) were studied using ultraviolet absorbance and circular dichroism difference spectroscopy. Comparison of the results for the modified enzyme and its isolated subunits to those for the native enzyme and its isolated subunits showed that the conformational changes detected by these methods are qualitatively similar in the two enzymes. Comparison of the absorbance difference spectra due to the binding of a transition substrate analog to the intact native or modified enzymes to the corresponding results for the isolated subunits suggested that ligand binding causes an increased exposure to solvent of certain tyrosyl and phenylalanyl residues in the intact enzymes but not in the isolated subunits. This result is consistent with a diminution of subunit contacts due to substrate binding in the course of homotropic interactions in the native enzyme. Such conformational changes, though perhaps necessary for homotropic cooperativity, are not sufficient to cause homotropic cooperativity since the modified enzyme gave identical perturbations. Interactions of the transition state analog, N-(phosphonacetyl)-L-aspartate, with the modified enzyme were studied. Enzyme kinetic data obtained at low aspartate concentrations showed that this transition state analog does not stimulate activity, but rather exhibits the inhibition predicted for the total absence of homotropic cooperative interactions in the modified enzyme. Spectrophotometric titrations of the number of catalytic sites with the transition state analog showed that the modified enzyme and its isolated subunits possess, respectively, four and two high affinity sites for the inhibitor instead of six and three observed in the case of the normal enzyme and its isolated catalytic subunits. These results are correlated with the lower specific enzymatic activities of the modified enzyme and its catalytic subunits compared to the normal corresponding enzymatic species.

摘要

在2-硫尿嘧啶存在的情况下,大肠杆菌合成了一种天冬氨酸转氨甲酰酶的修饰形式,该修饰酶在活性位点之间不表现出同促协同相互作用,但由于核苷酸结合仍保留异促协同相互作用。使用紫外吸收和圆二色性差光谱研究了不同配体(底物、底物类似物、过渡态类似物和核苷酸效应物)结合在修饰酶中诱导的构象变化。将修饰酶及其分离亚基的结果与天然酶及其分离亚基的结果进行比较,表明通过这些方法检测到的构象变化在两种酶中在性质上是相似的。将过渡底物类似物与完整天然或修饰酶结合产生的吸光度差光谱与分离亚基的相应结果进行比较,表明配体结合导致完整酶中某些酪氨酰和苯丙氨酰残基对溶剂的暴露增加,而在分离亚基中则没有。这一结果与天然酶同促相互作用过程中底物结合导致亚基接触减少一致。这种构象变化虽然可能是同促协同作用所必需的,但不足以导致同促协同作用,因为修饰酶产生了相同的扰动。研究了过渡态类似物N-(膦酰乙酰基)-L-天冬氨酸与修饰酶的相互作用。在低天冬氨酸浓度下获得的酶动力学数据表明,这种过渡态类似物不会刺激活性,而是表现出对修饰酶中完全不存在同促协同相互作用所预测的抑制作用。用过渡态类似物对催化位点数量进行分光光度滴定表明,修饰酶及其分离亚基分别对抑制剂具有四个和两个高亲和力位点,而正常酶及其分离催化亚基分别为六个和三个。这些结果与修饰酶及其催化亚基与相应正常酶物种相比较低的比酶活性相关。

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