Analytical Biochemistry 1989-11-01

Derivatization of gamma-glutamyl semialdehyde residues in oxidized proteins by fluoresceinamine.

I Climent, L Tsai, R L Levine

Index: Anal. Biochem. 182(2) , 226-32, (1989)

Full Text: HTML

Abstract

Oxidative modification of proteins is implicated in a number of physiologic and pathologic processes. Metal-catalyzed oxidative modification usually causes inactivation of enzymes and the appearance of carbonyl groups in amino acid side chains of the protein. We describe use of fluoresceinamine to label certain of those carbonyl groups. Fluoresceinamine reacted with those carbonyl groups to form a Schiff base which was reduced by cyanoborohydride to yield a stable chromophore on the oxidized residue. The high molar absorbtivity of the fluorescein moiety conferred high sensitivity upon the method. Labeled peptides were readily identified after tryptic digestion of oxidized glutamine synthetase. Further, acid hydrolysis of labeled glutamine synthetase allowed isolation of the derivatized, oxidized residue. The oxidized amino acid was identified as gamma-glutamyl semialdehyde. During metal-catalyzed oxidation, the inactivation of glutamine synthetase paralleled the appearance of gamma-glutamyl semialdehyde.


Related Compounds

  • 6-Aminofluorescein

Related Articles:

Preparation of Highly Monodisperse Monopatch Particles with Orthogonal Click-Type Functionalization and Biorecognition.

2015-09-16

[Small 11 , 4540-8, (2015)]

One-Step Generation of Multifunctional Polyelectrolyte Microcapsules via Nanoscale Interfacial Complexation in Emulsion (NICE).

2015-08-25

[ACS Nano 9 , 8269-78, (2015)]

Shape Effect on Particle-Lipid Bilayer Membrane Association, Cellular Uptake, and Cytotoxicity.

2015-11-04

[ACS Appl. Mater. Interfaces 7 , 23993-4000, (2015)]

Fluorescent labeling of the carbohydrate moieties of human chorionic gonadotropin and alpha 1-acid glycoprotein.

1981-09-29

[Biochim. Biophys. Acta 670(2) , 181-9, (1981)]

More Articles...