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蛋白质中埋藏酪氨酸残基的荧光。

Fluorescence of buried tyrosine residues in proteins.

作者信息

Giancotti V, Quadrifoglio F, Cowgill R W, Crane-Robinson C

出版信息

Biochim Biophys Acta. 1980 Jul 24;624(1):60-5. doi: 10.1016/0005-2795(80)90225-1.

Abstract

Histone H1 contains only one tyrosine and no tryptophan. The intrinsic fluorescence of the tyrosine rises by about 400% as the protein folds from a random coil to a globular structure (Giancotti, V., Fonda, M. and Crane-Robinson, C. (1977) Biophys. Chem. 6, 379-383). Measurements of external quenching by a large variety of quenchers shows very much reduced quenching in the folded state as compared to the disordered. It is concluded that the tyrosine is a buried residue. This is supported by the observation that the fluorescence of modified amino-tyrosyl H1 is similar to that of buried tyrosines in ribonuclease. The classification of tyrosine fluorescence in tryptophan-free proteins (Cowgill, R.W. (1976) in Biochemical Fluorescence Concepts, Vol. 2 to include the case of residues buried in a hydrophobic environment and having a relative quantum yield RTyr, greater than unity.

摘要

组蛋白H1仅含有一个酪氨酸,不含色氨酸。当蛋白质从无规卷曲折叠成球状结构时,酪氨酸的固有荧光增强约400%(吉安科蒂,V.,方达,M.和克兰-罗宾逊,C.(1977年)《生物物理化学》6,379 - 383)。与无序状态相比,多种猝灭剂对其进行外部猝灭的测量结果表明,折叠状态下的猝灭程度大大降低。得出的结论是,酪氨酸是一个埋藏残基。这一点得到以下观察结果的支持:修饰的氨基酪氨酰H1的荧光与核糖核酸酶中埋藏酪氨酸的荧光相似。在不含色氨酸的蛋白质中酪氨酸荧光的分类(考吉尔,R.W.(1976年)《生物化学荧光概念》第2卷,包括埋藏在疏水环境中且相对量子产率RTyr大于1的残基的情况)。

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