Fibrinogen-induced polymerization via the process of methylation

Osbahr, A.J.

Thrombosis and Haemostasis 42(5): 1398-1410

1980


ISSN/ISBN: 0340-6245
PMID: 7368146
Document Number: 165836
Fibrinogen is polymerized by a number of group specific reagents including diazomethane, thionyl chloride and di-methyl sulfate at pH 7.4. The relationship between the number of methyl groups incorporated into fibrinogen and the extent of polymerization was evaluated. With diazomethane and thionyl chloride as modifying agents, polymerization ensued in approximately 1 1/2 h with extensive modification of fibrinogen. Methylation via di-methyl sulfate-induced polymer formation occurred in approximately 35 min with primarily carboxylic acid group esterification. The polymerized fibrinogen formed under these conditions exhibited properties closely similar with the physiological fibrin clot. Amino group deterinations revealed methylation of amino acid residues other than the expected esterification of carboxylic acid groups. Diazomethane induced N-methylation of lysine, as well as O-methylation of tyrosine, as estimated from spectrophotometric analysis. Thionyl chloride modified only a small number of amino groups, and di-methyl sulfate modification resulted in no significant amounts of amino group methylation during the process of modification-induced polymerization of fibrinogen. The profile of the number of methoxyl groups incorporated into fibrinogen with time for diazomethane modification may reflect a conformational change in the protein due to a more nonspecific methylation. The reagent and conditions of modification were important in achieving a selective modification of fibrinogen. A possible interpretation of these results is the esterification of carboxylic acid groups in the fibrinogen with reduction in the prevailing carboxylate ion negative repulsion, thereby achieving an increased protein-protein interaction with a resulting polymerization.

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