Annals of the New York Academy of Sciences 2008-04-01

Model studies on protein glycation: influence of cysteine on the reactivity of arginine and lysine residues toward glyoxal.

Uwe Schwarzenbolz, Susann Mende, Thomas Henle

文献索引:Ann. N. Y. Acad. Sci. 1126 , 248-52, (2008)

全文:HTML全文

摘要

Mixtures of N alpha-hippurylarginin, N alpha-hippuryllysine, and glyoxal were incubated in the absence and presence of N alpha-acetylcysteine in order to assess the individual reactivity of these nucleophilic amino acid residues. The incubations were performed under atmospheric and high hydrostatic pressure (400 MPa), and, at the same time, beta-casein was reacted with glyoxal. The results showed that arginine is the main partner for glyoxal in the absence of cysteine, whereas a lysine derivatization was not apparent. In the presence of cysteine, however, arginine was almost completely protected from the reaction, whereas a noticeable formation of lysine derivatives, mainly carboxymethyllysine, was observed. Based on these findings, a reaction mechanism is proposed to explain the influence of cysteine on the reaction.


相关化合物

  • 马尿酰赖氨酸
  • 马尿酰精氨酸

相关文献:

Assay of carboxypeptidase N activity in serum by liquid-chromatographic determination of hippuric acid.

1985-12-01

[Clin. Chem. 31(12) , 1936-9, (1985)]

Isolation and purification of creatine kinase conversion factor from human serum and its identification as carboxypeptidase N.

1987-02-01

[Clin. Biochem. 20(1) , 21-9, (1987)]

The kininases of Bothrops jararaca plasma.

1980-01-01

[Acta Physiol. Lat. Am. 30(4) , 269-74, (1980)]

Human 'creatine kinase conversion factor' identified as a carboxypeptidase.

1984-07-15

[Biochem. J. 221(2) , 465-70, (1984)]

Formation of peptide-bound Heyns compounds.

2008-04-09

[J. Agric. Food Chem. 56(7) , 2522-7, (2008)]

更多文献...