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. 1985 May 13;334(1):147-51.
doi: 10.1016/0006-8993(85)90576-1.

Protein kinase C phosphorylates a 47 Mr protein (F1) directly related to synaptic plasticity

Protein kinase C phosphorylates a 47 Mr protein (F1) directly related to synaptic plasticity

R F Akers et al. Brain Res. .

Abstract

Ca2+-phospholipid-dependent protein kinase C, and activators of protein kinase C (phosphatidylserine, phorbol esters) stimulate the in vitro phosphorylation of a 47 kdalton phosphoprotein (protein F1) previously shown (Routtenberg, Lovinger and Steward, Behav. neural Biol., 43 (1985) 3-11) to be directly related to the plasticity of long-term potentiation. These data indicate that protein F1 serves as a protein kinase C substrate, and suggest the hypothesis that protein kinase C is involved in processes of long-term potentiation.

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