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金属离子对蓝铜蛋白折叠能量学的影响:天然型、锌结合型及脱辅基蛋白的比较。

The effect of the metal ion on the folding energetics of azurin: a comparison of the native, zinc and apoprotein.

作者信息

Leckner J, Bonander N, Wittung-Stafshede P, Malmström B G, Karlsson B G

机构信息

Department of Biochemistry and Biophysics, Göteborg University and Chalmers University of Technology, Sweden.

出版信息

Biochim Biophys Acta. 1997 Sep 26;1342(1):19-27. doi: 10.1016/s0167-4838(97)00074-5.

Abstract

The unfolding by guanidine hydrochloride (GuHCl) and the refolding on dilution of zinc and apoazurin have been monitored by far-UV circular dichroism (CD). With the native protein, the unfolding was followed by CD and optical absorption in the visible spectral region. With the zinc protein, the reversible unfolding has also been followed by tryptophan fluorescence and NMR. The zinc and Cu2+ metal ions remain associated with the protein in the unfolded state. When the unfolding of the native protein is followed by CD, the initial, reversible transition due to unfolding is followed by a slow change associated with the reduction of Cu2+ by the thiol group of the ligand Cys112. The unfolding of apoazurin displays two CD transitions, which evidence suggests represent different folding domains, the least stable one including the metal-binding site and the other one the rest of the beta-sheet structure. Both occur at a lower GuHCl concentration than the unfolding of the native protein. The CD titrations also demonstrate that zinc azurin has a lower stability than the copper protein. Unfolding of zinc azurin followed by tryptophan fluorescence occurs at a much lower GuHCl concentration than the CD changes, and NMR spectra show that there is no loss of secondary and tertiary structure at this concentration, whereas the CD-detected loss of secondary structure correlates with the NMR changes. Thus, the fluorescence change is ascribed to a small local perturbation of the structure around the single tryptophan residue. The differences in stability of the three forms of azurin are discussed in terms of the rack mechanism. A bound metal ion stabilizes the native fold, and this stabilization is larger for Cu(II) than for Zn(II), reflecting the higher affinity of the protein for Cu(II).

摘要

通过远紫外圆二色性(CD)监测了盐酸胍(GuHCl)诱导的锌蓝蛋白和脱辅基蓝蛋白的展开以及稀释时的复性过程。对于天然蛋白,通过CD和可见光谱区域的光吸收监测其展开。对于锌蛋白,还通过色氨酸荧光和核磁共振(NMR)监测了其可逆展开过程。锌离子和Cu2+金属离子在展开状态下仍与蛋白结合。当通过CD监测天然蛋白的展开时,由于展开引起的初始可逆转变之后是与配体Cys112的巯基将Cu2+还原相关的缓慢变化。脱辅基蓝蛋白的展开显示出两个CD转变,有证据表明这代表不同的折叠结构域,最不稳定的一个包括金属结合位点,另一个是β-折叠结构的其余部分。两者发生时的GuHCl浓度均低于天然蛋白展开时的浓度。CD滴定还表明锌蓝蛋白的稳定性低于铜蛋白。通过色氨酸荧光监测锌蓝蛋白的展开时,其发生时的GuHCl浓度远低于CD变化时的浓度,NMR光谱表明在此浓度下二级和三级结构没有损失,而CD检测到的二级结构损失与NMR变化相关。因此,荧光变化归因于单个色氨酸残基周围结构的小局部扰动。根据支架机制讨论了三种形式蓝蛋白稳定性的差异。结合的金属离子稳定天然折叠,并且这种稳定性对于Cu(II)比对Zn(II)更大,这反映了蛋白对Cu(II)的更高亲和力。

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