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A/H3N2流感病毒神经氨酸酶的催化特性:抗原变异的影响

Catalytic properties of the A/H3N2 influenza neuraminidases: influence of antigenic variations.

作者信息

Deshairs C, Kessler N, Aymard M, Quash G A

出版信息

J Gen Virol. 1986 Mar;67 ( Pt 3):409-18. doi: 10.1099/0022-1317-67-3-409.

Abstract

Antigenic variation of the neuraminidase of A/H3N2 influenza viruses may be associated with modifications of the catalytic activity of this enzyme. We observed this phenomenon when studying two prototype strains: A/Hong Kong/1/68 (X31K) and A/Bangkok/2/79. For the neuraminidases of these strains, we determined their substrate specificity, initial velocity, optimum pH, optimum temperature, heat inactivation and Michaelis constants and their inactivation by chemical group-specific reagents. In order to examine the relationship between antigenic variation and enzyme activity of the influenza neuraminidases, three X31K monoclonal variants were selected using anti-neuraminidase monoclonal antibodies. Two of these (X31/NC92 and X31/NC56) were modified at a single neuraminidase epitope, and the third one (X31/NC92/NC56) at two epitopes. The neuraminidase activity of the monoclonal variants was analysed and compared to that of the prototype strains. Compared to A/Hong Kong/1/68, the A/Bangkok/2/79 strain neuraminidase was more susceptible to inactivation by physical (pH, temperature) and chemical agents [urea, dithiothreitol, 1-ethyl-3-(3-dimethylaminopropyl carbodiimide), iodoacetamide, acetic anhydride, 2,3-butanedione] and showed a twofold lower substrate affinity for N-acetylneuraminlactose. The neuraminidase activity of the monoclonal variants of X31K became more susceptible to inactivation by both physical and chemical agents than the original strain and exhibited various substrate affinities. Therefore, we conclude that the enzymic properties of the structurally conserved active sites of the neuraminidase molecule may be influenced by antigenic modifications that affect the variable areas of the neuraminidase and that the degree of this enzymic variation is related to the nature and number of the modified epitope(s). A local conformational change in the neuraminidase molecule reflected as antigenic variation could be involved in modification of enzyme activity.

摘要

A/H3N2流感病毒神经氨酸酶的抗原变异可能与该酶催化活性的改变有关。我们在研究两个原型毒株:A/香港/1/68(X31K)和A/曼谷/2/79时观察到了这种现象。对于这些毒株的神经氨酸酶,我们测定了它们的底物特异性、初速度、最适pH、最适温度、热失活和米氏常数以及它们被化学基团特异性试剂灭活的情况。为了研究流感神经氨酸酶的抗原变异与酶活性之间的关系,使用抗神经氨酸酶单克隆抗体选择了三个X31K单克隆变体。其中两个(X31/NC92和X31/NC56)在单个神经氨酸酶表位处发生了修饰,第三个(X31/NC92/NC56)在两个表位处发生了修饰。分析了单克隆变体的神经氨酸酶活性,并与原型毒株的活性进行了比较。与A/香港/1/68相比,A/曼谷/2/79毒株的神经氨酸酶对物理(pH、温度)和化学试剂[尿素、二硫苏糖醇、1-乙基-3-(3-二甲基氨基丙基)碳二亚胺、碘乙酰胺、乙酸酐、2,3-丁二酮]的灭活更敏感,并且对N-乙酰神经氨酸乳糖的底物亲和力低两倍。X31K单克隆变体的神经氨酸酶活性比原始毒株对物理和化学试剂的灭活更敏感,并且表现出不同的底物亲和力。因此,我们得出结论,神经氨酸酶分子结构保守的活性位点的酶学性质可能受到影响神经氨酸酶可变区的抗原修饰的影响,并且这种酶学变异的程度与修饰表位的性质和数量有关。神经氨酸酶分子中表现为抗原变异的局部构象变化可能参与了酶活性的修饰。

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