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[重水(D₂O)对蛋白质构象和紫外线敏感性的影响]

[Influence of heavy water (D20) on the conformation and UV-sensitivity of proteins].

作者信息

Volotovskiĭ I D, Baranova L A, Konev S V

出版信息

Mol Biol (Mosk). 1976 Nov-Dec;10(6):1324-31.

PMID:802785
Abstract

The heavy water (D2O) has been shown to induce the conformational transitions in trypsin, chymotrypsin and pepsin. The transfer of proteins from H2O into D2O results a change in their sensitivity to UV-light. An increase in sensitivity to the irradiation at 248 nm and a decrease in sensitivity to the irradiation at 280 nm were observed. The quantum yield of chromophore photolysis (for cystyne and tryptophan) is correspondingly changed. However, although the quantum yield of sensitized reduction of cystine by solvated electrons photochemically ejected from the aromatic acid residues during irradiation at 280 nm increases instead of a rise a drop in the quantum yield of protein inactivation is registered. The data obtained are discussed in terms of importance of solvated shell for conformational stability of proteins. The solvated electrons are suggested to be transfered mainly to nonessential disulfide bridges within trypsin molecule. Rupture of these bonds does not result in trypsin inactivation.

摘要

重水(D2O)已被证明能诱导胰蛋白酶、胰凝乳蛋白酶和胃蛋白酶发生构象转变。蛋白质从H2O转移到D2O会导致其对紫外光的敏感性发生变化。观察到对248nm辐射的敏感性增加,而对280nm辐射的敏感性降低。发色团光解(针对胱氨酸和色氨酸)的量子产率相应改变。然而,尽管在280nm照射期间从芳香酸残基光化学喷射出的溶剂化电子使胱氨酸敏化还原的量子产率增加,但蛋白质失活的量子产率却出现下降而非上升。根据溶剂化壳层对蛋白质构象稳定性的重要性对所得数据进行了讨论。有人认为溶剂化电子主要转移到胰蛋白酶分子内的非必需二硫键上。这些键的断裂不会导致胰蛋白酶失活。

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