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猪肾3,4-二羟基苯丙氨酸(多巴)脱羧酶的解离、展开和重折叠试验

Dissociation, unfolding and refolding trials of pig kidney 3,4-dihydroxyphenylalanine (dopa) decarboxylase.

作者信息

Dominici P, Moore P S, Borri Voltattorni C

机构信息

Università Cattolica del Sacro Cuore, Facoltà di Medicina e Chirurgia A.Gemelli, Rome, Italy.

出版信息

Biochem J. 1993 Oct 15;295 ( Pt 2)(Pt 2):493-500. doi: 10.1042/bj2950493.

Abstract

The effect of guanidinium chloride (GuCl) on enzyme activity, hydrodynamic volume, circular dichroism, and fluorescence of 3,4-dihydroxyphenylalanine (Dopa) decarboxylase from pig kidney (pkDDC) was studied under equilibrium conditions. Unfolding proceeds in at least three stages. The first transition, occurring between 0 and 1 M GuCl, gives rise to a dimeric inactive species which has lost pyridoxal 5'-phosphate (PLP), and has a high tendency to aggregate, but retains almost all of the native spectroscopic characteristics. The second equilibrium transition, between 1 and 2.2 M GuCl, involves dimer dissociation, with some loss of tertiary and secondary structure. Additionally, gross conformational changes at or near the PLP microenvironment were detected by fluorescence of NaBH4-reduced enzyme. The third step, presumably representing complete unfolding of pkDDC, appears to be complete at 4.5 M GuCl, as indicated by the lack of further substantial changes in any of the signals being studied. Attempts at refolding resulted in the findings that: (1) partial reactivation is observed only starting from enzyme denatured at concentrations below 1.5 M GuCl, and (2) starting from completely denatured protein, the refolding process is apparently reversible down to concentrations of approx. 2 M GuCl. Taken together, this would seem to indicate that the monomer-dimer transition is impaired under the experimental conditions tested. A plausible model is presented for the unfolding/refolding of pkDDC.

摘要

在平衡条件下,研究了氯化胍(GuCl)对猪肾3,4-二羟基苯丙氨酸(多巴)脱羧酶(pkDDC)的酶活性、流体力学体积、圆二色性和荧光的影响。去折叠过程至少分三个阶段进行。第一个转变发生在0至1 M GuCl之间,产生一种二聚体无活性物种,该物种失去了磷酸吡哆醛(PLP),具有很高的聚集倾向,但几乎保留了所有天然光谱特征。第二个平衡转变发生在1至2.2 M GuCl之间,涉及二聚体解离,伴随着一些三级和二级结构的丧失。此外,通过硼氢化钠还原酶的荧光检测到PLP微环境处或附近的总体构象变化。第三步,可能代表pkDDC的完全去折叠,在4.5 M GuCl时似乎完成,这可以从所研究的任何信号中没有进一步的实质性变化看出。复性尝试得到的结果是:(1)仅从在浓度低于1.5 M GuCl下变性的酶开始观察到部分复性,并且(2)从完全变性的蛋白质开始,复性过程在浓度约为2 M GuCl时显然是可逆的。综上所述,这似乎表明在测试的实验条件下,单体-二聚体转变受到损害。提出了一个关于pkDDC去折叠/复性的合理模型。

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