Biochemical and Biophysical Research Communications, Vol.365, No.2, 322-327, 2008
Cytochrome c catalyzes the in vitro synthesis of arachidonoyl glycine
Long chain fatty acyl glycines are an emerging class of biologically active molecules that occur naturally and produce a wide array of physiological effects. Their biosynthetic pathway, however, remains unknown. Here we report that cytochrome c catalyzes the synthesis of N-arachidonoyl glycine (NAGly) from arachidonoyl coenzyme A and glycine in the presence of hydrogen peroxide. The identity of the NAGly product was verified by isotope labeling and mass analysis. Other heme-containing proteins, hemoglobin and myoglobin, were considerably less effective in generating arachidonoyl glycine as compared to cytochrome c. The reaction catalyzed by cytochrome c in vitro points to its potential role in the formation of NAGly and other long chain fatty acyl glycines in vivo. Published by Elsevier Inc.
Keywords:arachidonoyl glycine;cytochrome c;long chain fatty acyl glycine;arachidonoyl CoA;glycine;hydrogen peroxide