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荧光与蛋白质结构。二十二。核糖核酸酶A中形成的氨基酪氨酰残基的荧光。

Fluorescence and the structure of proteins. XXII. Fluorescence of aminotyrosyl residues formed in ribonuclease A.

作者信息

Seagle R L, Cowgill R W

出版信息

Biochim Biophys Acta. 1976 Aug 9;439(2):470-8. doi: 10.1016/0005-2795(76)90084-2.

Abstract
  1. Tyrosyl residues on ribonuclease A were nitrated with tetranitromethane and then reduced to aminotyrosyl residues. By variation of reaction conditions and degree of exposure of tyrosyl residues it was possible to convert from 1 to all 6 tyrosyl to aminotyrosyl residues. 2. At the lower levels of 1-3 aminated tyrosyl residues/molecule the change in conformation seemed minor and 70% of the enzymatic activity was retained. When the three buried tyrosyl residues or all six residues were aminated only 5% of the enzymatic activity was retained. 3. Titration data, susceptibility to urea denaturation, and fluorescence characteristics indicated that some of the aminotyrosyl residues were buried in the interior and others were exposed on the surface of the protein. On the basis of the activation/emission wavelengths it was possible to distinguish buried (288/320 nm) and exposed (288/365-395 nm) aminotyrosyl residues as well as exposed tyrosyl residues (275-305 nm). 4. The modification of specific tyrosyl residues on a protein to aminotyrosyl residues appears to have some promise for observation of changes in environment of the residues that accompany various conformation changes by monitoring the fluorescence.
摘要
  1. 用四硝基甲烷将核糖核酸酶A上的酪氨酸残基硝化,然后还原为氨基酪氨酸残基。通过改变反应条件和酪氨酸残基的暴露程度,有可能将1个至全部6个酪氨酸残基转化为氨基酪氨酸残基。2. 在较低水平,即每个分子有1 - 3个胺化酪氨酸残基时,构象变化似乎较小,酶活性保留了70%。当三个埋藏的酪氨酸残基或所有六个残基都被胺化时,仅保留了5%的酶活性。3. 滴定数据、对尿素变性的敏感性以及荧光特性表明,一些氨基酪氨酸残基埋藏在蛋白质内部,而其他的则暴露在蛋白质表面。根据激发/发射波长,可以区分埋藏的(288/320纳米)和暴露的(288/365 - 395纳米)氨基酪氨酸残基以及暴露的酪氨酸残基(275 - 305纳米)。4. 将蛋白质上特定的酪氨酸残基修饰为氨基酪氨酸残基,通过监测荧光来观察伴随各种构象变化的残基环境变化似乎有一定前景。

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