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红螺(腹足纲)血蓝蛋白:溶液中结构的光谱研究以及天然蛋白质及其结构亚基的构象稳定性

Rapana thomasiana grosse (gastropoda) haemocyanin: spectroscopic studies of the structure in solution and the conformational stability of the native protein and its structural subunits.

作者信息

Dolashka P, Genov N, Parvanova K, Voelter W, Geiger M, Stoeva S

机构信息

Institute of Organic Chemistry, Bulgarian Academy of Sciences, Sofia, Bulgaria.

出版信息

Biochem J. 1996 Apr 1;315 ( Pt 1)(Pt 1):139-44. doi: 10.1042/bj3150139.

Abstract
  1. The stability towards pH changes, thermal and chemical (guanidine hydrochloride) denaturation of the oxy- and apo-forms of the native Rapana thomasiana haemocyanin and its structural subunits, RHSS1 and RHSS2, has been investigated using fluorescence and CD spectroscopy. The association of the subunits into haemocyanin aggregates increases considerably the melting temperature and the free energy of stabilization in water. The guanidine hydrochloride denaturation of the aggregated oxygen-transporting protein depends slightly on the protein concentration. The denaturation of the individual subunits is concentration-independent. Rapana haemocyanin is 5.9-7.5 kJ/mol more stable than the constituent polypeptide chains. 2. Upon excitation of the native haemocyanin and the subunits at 295 or 280 nm the fluorescence emission is determined by tryptophyl residues 'buried' deeply in the hydrophobic interior of the protein globules. This is confirmed by quenching experiments with acrylamide, caesium and iodide ions. The efficiency of the radiationless energy transfer between the phenol (donor) and indole (acceptor) fluorophores in the three species, native haemocyanin, RHSS1 and RHSS2, has been determined. An efficient 'interchain' energy transfer between tyrosyl and tryptophyl residues from different polypeptide chains occurs in the non-dissociated form of the haemocyanin. 3. The tryptophan emission of the oxyhaemocyanin, oxy-RHSS1 and oxy-RHSS 2 is strongly quenched by the copper-dioxygen complex at the active site and the respective quantum yields of fluorescence of the oxygenated species are 4-7 times lower than those of the apo-forms. Protonated imidazole groups quench the fluorescence of neighbouring exited indole rings, probably by charge-transfer complex formation.
摘要
  1. 利用荧光光谱和圆二色光谱研究了天然香螺血蓝蛋白及其结构亚基RHSS1和RHSS2的氧合形式和脱辅基形式对pH变化、热变性和化学变性(盐酸胍)的稳定性。亚基聚合成血蓝蛋白聚集体显著提高了其在水中的解链温度和稳定化自由能。聚集态的氧运输蛋白的盐酸胍变性对蛋白质浓度的依赖性较小。单个亚基的变性与浓度无关。香螺血蓝蛋白比其组成多肽链稳定5.9 - 7.5 kJ/mol。2. 当天然血蓝蛋白及其亚基在295或280 nm激发时,荧光发射由深埋在蛋白质球疏水内部的色氨酸残基决定。这通过丙烯酰胺、铯离子和碘离子的猝灭实验得到证实。已测定了天然血蓝蛋白、RHSS1和RHSS2这三种物质中酚(供体)和吲哚(受体)荧光团之间的无辐射能量转移效率。在血蓝蛋白的非解离形式中,不同多肽链上的酪氨酸残基和色氨酸残基之间发生了有效的“链间”能量转移。3. 活性位点的铜 - 双氧配合物强烈猝灭了氧合血蓝蛋白、氧合RHSS1和氧合RHSS2的色氨酸发射,并且氧化态物质的相应荧光量子产率比脱辅基形式低4 - 7倍。质子化的咪唑基团可能通过形成电荷转移复合物来猝灭相邻激发吲哚环的荧光。

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