The quantification of protein amino groups by the trinitrobenzenesulfonic acid method: A reexamination

被引:155
作者
Cayot, P
Tainturier, G
机构
[1] Département de Biochimie, Physico-chimie et Propriétés Sensorielles, Écl. Natl. Sup. de Biologie Appliquée la Nutrition et à l'Alimentation, Campus Universitaire Montmuzard, 21000 Dijon
关键词
D O I
10.1006/abio.1997.2161
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Trinitrobenzenesulfonic acid (TNBSA) is the reagent in a web-known method for quantification of primary amino groups, but even at room temperature, N-trinitrophenylation of primary amines is concomitant with hydrolysis of the reagent. The production of picric acid, the product of TNBSA hydrolysis, lowers the sensitivity of the method. Heating accelerates hydrolysis more than condensation on amino groups. The optimal pH range is centered on the value 10, The optical density is generally evaluated at 340 or 420 nm. The former value corresponds to the maximal absorption of the final product, N-trinitrophenylamines. The latter value is relative to the Mesenheimer pi-complex, the web-known intermediate of the overall reaction, Both wavelengths are suitable for quantification of amines, but 420 nm seems to be the best. Further addition of sulfite is not necessary. The quantification of amines is somewhat hampered by compounds such as urea and sodium dodecyl anions. The relative rates of reaction of diaminoacyl groups of protein with TNBSA differ depending on the substitution degree of the neighboring groups. Some of them do not react. The trinitrophenylation kinetic seems to be more dependent on protein structure than reactivity. In evaluation of the available lysine in glycated proteins, the distinction between reductive alkylation and Maillard-type condensation necessitates quantitative evaluation of nonalkylated lysine in protein hydrolysate, compared to results with the TNBSA method. Our results are confirmed by complete guanidization of the protein and subsequent determination of homoarginine in hydrolysates. (C) 1997 Academic Press.
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页码:184 / 200
页数:17
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