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血蓝蛋白中的色氨酸残基增强了其热稳定性,但不影响 1 型铜位点的电子性质。

The sole tryptophan of amicyanin enhances its thermal stability but does not influence the electronic properties of the type 1 copper site.

机构信息

Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, FL 32827, United States.

NE-CAT and Department of Chemistry and Chemical Biology, Cornell University, Building 436E, Argonne National Laboratory, Argonne, IL 60439, United States.

出版信息

Arch Biochem Biophys. 2014 May 15;550-551:20-7. doi: 10.1016/j.abb.2014.03.010. Epub 2014 Apr 1.

Abstract

The cupredoxin amicyanin possesses a single tryptophan residue, Trp45. Its fluorescence is quenched when copper is bound even though it is separated by 10.1Å. Mutation of Trp45 to Ala, Phe, Leu and Lys resulted in undetectable protein expression. A W45Y amicyanin variant was isolated. The W45Y mutation did not alter the spectroscopic properties or intrinsic redox potential of amicyanin, but increased the pKa value for the pH-dependent redox potential by 0.5 units. This is due to a hydrogen-bond involving the His95 copper ligand which is present in reduced W45Y amicyanin but not in native amicyanin. The W45Y mutation significantly decreased the thermal stability of amicyanin, as determined by changes in the visible absorbance of oxidized amicyanin and in the circular dichroism spectra for oxidized, reduced and apo forms of amicyanin. Comparison of the crystal structures suggests that the decreased stability of W45Y amicyanin may be attributed to the loss of a strong interior hydrogen bond between Trp45 and Tyr90 in native amicyanin which links two of the β-sheets that comprise the overall structure of amicyanin. Thus, Trp45 is critical for stabilizing the structure of amicyanin but it does not influence the electronic properties of the copper which quenches its fluorescence.

摘要

铜蓝蛋白 Amicyanin 含有一个色氨酸残基,Trp45。即使相隔 10.1Å,当铜结合时,其荧光也会被猝灭。将 Trp45 突变为 Ala、Phe、Leu 和 Lys 导致无法检测到蛋白质表达。分离出了 W45Y Amicyanin 变体。W45Y 突变并未改变 Amicyanin 的光谱性质或固有氧化还原电位,但将 pH 依赖性氧化还原电位的 pKa 值增加了 0.5 个单位。这是由于涉及 His95 铜配体的氢键的存在,该氢键存在于还原的 W45Y Amicyanin 中,但不存在于天然 Amicyanin 中。W45Y 突变显著降低了 Amicyanin 的热稳定性,这可以通过氧化的 Amicyanin 的可见吸收的变化以及氧化、还原和脱辅基形式的 Amicyanin 的圆二色性光谱来确定。晶体结构的比较表明,W45Y Amicyanin 稳定性降低可能归因于天然 Amicyanin 中 Trp45 和 Tyr90 之间强内部氢键的丧失,该氢键连接组成 Amicyanin 整体结构的两个β-折叠。因此,Trp45 对于稳定 Amicyanin 的结构至关重要,但它不会影响猝灭其荧光的铜的电子性质。

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