A Functional Tyrosyl Residue in Arginine Kinase, Studied by Nitration with Tetranitromethane
Rhida Kassab, Abdellatif Fattoum, Louise Anne Pradel
Abstract
Open-access reader
Rhida Kassab, Abdellatif Fattoum, Louise Anne Pradel
Abstract
Open-access reader
The nitration of arginine kinase from lobster muscle (Homarus vulgaris) with tetranitromethane has been studied after reversible blocking of its thiol groups. Experimental procedure for nitration of one essential tyrosyl residue is described. The introduction of one mononitrotyrosine per mole of arginine kinase results in a total loss of activity. Reduction to the aminotyrosine derivative does not restore enzymic activity. The mononitrotyrosyl arginine kinase is unable to bind its nucleotides or guanidine substrates as judged by differential spectrophotometry. An important conformational change occurring on nitration of one reactive tyrosine residue is demonstrated by means of optical rotatory dispersion measurements and immunodiffusion.
OpenAlex reports 28 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The nitration of arginine kinase from lobster muscle (Homarus vulgaris) with tetranitromethane has been studied after reversible blocking of its thiol groups. Experimental procedure for nitration of one essential tyrosyl residue is described. The introduction of one mononitrotyrosine per mole of arginine kinase results in a total loss of activity. Reduction to the aminotyrosine derivative does not restore enzymic activity. The mononitrotyrosyl arginine kinase is unable to bind its nucleotides or guanidine substrates as judged by differential spectrophotometry. An important conformational change occurring on nitration of one reactive tyrosine residue is demonstrated by means of optical rotatory dispersion measurements and immunodiffusion.
Key concepts: Nitration, Arginine kinase, Tetranitromethane, Chemistry, Arginine, Residue (chemistry), Guanidine, Biochemistry