[No authors listed]
It was reported that mast cell degranulation is inversely related to the enzymatic activity of Mâ-type pyruvate kinase (MâPK). This study shows that activation of high-affinity IgE receptor (FcεRI) evokes a sequential dual regulation of MâPK, i.e., an immediate decrement followed by slow phase increment of enzymatic activities. Changes in the activities of MâPK and mast cell degranulation showed similar time course after antigenic stimulation of FcεRI. The immediate inhibition of MâPK involved tyrosine phosphorylation, and subsequently led to a cellular accumulation of glycolytic intermediates, including fructose 1,6-biphosphate (FBP), a feedforward activator of MâPK. As the cellular levels of FBP were increased, both the enzymatic acitivity of MâPK and mast cell degranulation slowly returned to near basal levels. A-Raf, when exogenously introduced into RBL-2H3 cells, phosphorylated MâPK on the serine residues, elevated enzyme activities of MâPK, and resulted in the inhibition of degranulation. These results suggest that dual regulation of MâPK which involves the phosphorylation of MâPK and accumulation of a feedforward activator of MâPK plays important roles in the control of mast cell degranulation.
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