International Journal of Peptide and Protein Reseach 1993-07-01

Chemical modification of ovine prolactin with N-acetylimidazole.

G D Cymes, M M Iglesias, C Wolfenstein-Todel

Index: Int. J. Pept. Protein Res. 42(1) , 33-8, (1993)

Full Text: HTML

Abstract

Reaction of ovine prolactin (oPRL) with a 150-fold molar excess of N-acetylimidazole over protein content resulted in the modification of 2.5 tyrosine residues and 1.2 lysine residues. Acetylation greatly decreased the in vitro binding capacity to lactogenic sites. This binding capacity was partially restored by ammonium bicarbonate treatment, which removes O-acetyl groups from tyrosine residues but not N-acetyl groups from lysine residues. The modification extent of the tyrosine residues was determined. The results suggest that acetylation of tyrosine 44 or of tyrosine 96 is likely to be responsible for the decrease in binding activity of acetylated oPRL, and that one of these residues may play a role in the interaction of oPRL with lactogenic receptors.


Related Compounds

Related Articles:

Involvement of conserved histidine, lysine and tyrosine residues in the mechanism of DNA cleavage by the caspase-3 activated DNase CAD.

2002-03-15

[Nucleic Acids Res. 30(6) , 1325-32, (2002)]

Changes in the level and activation state of the plasma membrane H(+)-ATPase during aging of red beet slices.

1997-07-01

[Plant Physiol. 114(3) , 857-62, (1997)]

Chemical modification of active site residues in gamma-glutamyl transpeptidase. Aspartate 422 and cysteine 453.

1995-05-26

[J. Biol. Chem. 270(21) , 12476-80, (1995)]

Chemical modification of xylanase from Trichosporon cutaneum shows the presence of carboxyl groups and cysteine residues essential for enzyme activity.

1999-08-01

[J. Protein Chem. 18(6) , 677-86, (1999)]

Stability, structural and suicide inactivation changes of mushroom tyrosinase after acetylation by N-acetylimidazole.

2004-08-01

[Int. J. Biol. Macromol. 34(4) , 257-62, (2004)]

More Articles...