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温度和盐对重组金属寡肽酶神经溶素和硫醚氨酸寡肽酶肽酶活性的影响。

Temperature and salts effects on the peptidase activities of the recombinant metallooligopeptidases neurolysin and thimet oligopeptidase.

作者信息

Oliveira Vitor, Gatti Reynaldo, Rioli Vanessa, Ferro Emer S, Spisni Alberto, Camargo Antonio C M, Juliano Maria A, Juliano Luiz

机构信息

Department of Biophysics, Escola Paulista de Medicina, São Paulo, Brazil.

出版信息

Eur J Biochem. 2002 Sep;269(17):4326-34. doi: 10.1046/j.1432-1033.2002.03129.x.

Abstract

We report the recombinant neurolysin and thimet oligopeptidase (TOP) hydrolytic activities towards internally quenched fluorescent peptides derived from the peptide Abz-GGFLRRXQ-EDDnp (Abz, ortho-aminobenzoicacid; EDDnp, N-(2,4-dinitrophenyl) ethylenediamine), in which X was substituted by 11 different natural amino acids. Neurolysin hydrolyzed these peptides at R-R or at R-X bonds, and TOP hydrolyzed at R-R or L-R bonds, showing a preference to cleave at three or four amino acids from the C-terminal end. The kinetic parameters of hydrolysis and the variations of the cleavage sites were evaluated under different conditions of temperature and salt concentration. The relative amount of cleavage varied with the nature of the substitution at the X position as well as with temperature and NaCl concentration. TOP was activated by all assayed salts in the range 0.05-0.2 m for NaCl, KCl, NH4Cl and NaI, and 0.025-0.1 m for Na2SO4. Concentration higher than 0.2 N NH4Cl and NaI reduced TOP activity, while 0.5 N or higher concentration of NaCl, KCl and Na2SO4 increased TOP activity. Neurolysin was strongly activated by NaCl, KCl and Na2SO4, while NH4Cl and NaI have very modest effect. High positive values of enthalpy (DeltaH*) and entropy (DeltaS*) of activation were found together with an unusual temperature dependence upon the hydrolysis of the substrates. The effects of low temperature and high NaCl concentration on the hydrolytic activities of neurolysin and TOP do not seem to be a consequence of large secondary structure variation of the proteins, as indicated by the far-UV CD spectra. However, the modulation of the activities of the two oligopeptidases could be related to variations of conformation, in limited regions of the peptidases, enough to modify their activities.

摘要

我们报告了重组神经溶素和硫醇寡肽酶(TOP)对源自肽Abz-GGFLRRXQ-EDDnp(Abz,邻氨基苯甲酸;EDDnp,N-(2,4-二硝基苯基)乙二胺)的内部淬灭荧光肽的水解活性,其中X被11种不同的天然氨基酸取代。神经溶素在R-R或R-X键处水解这些肽,而TOP在R-R或L-R键处水解,显示出优先从C末端切割三或四个氨基酸的倾向。在不同的温度和盐浓度条件下评估了水解的动力学参数和切割位点的变化。切割的相对量随X位置的取代性质以及温度和NaCl浓度而变化。对于NaCl、KCl、NH4Cl和NaI,在0.05-0.2 m范围内的所有测定盐均可激活TOP,对于Na2SO4,在0.025-0.1 m范围内可激活TOP。高于0.2 N的NH4Cl和NaI浓度会降低TOP活性,而0.5 N或更高浓度的NaCl、KCl和Na2SO4会增加TOP活性。神经溶素被NaCl、KCl和Na2SO4强烈激活,而NH4Cl和NaI的作用非常小。发现活化焓(ΔH*)和熵(ΔS*)具有很高的正值,同时对底物水解具有不寻常的温度依赖性。远紫外圆二色光谱表明,低温和高NaCl浓度对神经溶素和TOP水解活性的影响似乎不是蛋白质二级结构大幅变化的结果。然而,这两种寡肽酶活性的调节可能与肽酶有限区域内的构象变化有关,足以改变它们的活性。

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