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Selective Synthesis of 2′,3′-Cyclic Nucleotide 3′-Phosphodiesterase Isoform 2 and Identification of Specifically Phosphorylated Serine Residues by Ryan C. O'Neill; Peter E. Braun is a Neuroscience article available to read on EtoBox.

**Abstract:** 2′,3′‐Cyclic nucleotide 3′‐phosphodiesterase (CNP) is a protein found abundantly in the cytoplasmic compartments of CNS myelin. Two isoforms of this protein, CNP1 and CNP2, are detectable. They differ by a 20‐amino acid extension exclusive to CNP2. Additionally, CNP2 is essentially the only isoform to be phosphorylated in vivo. In this study, we examine the phosphorylation of CNP2 in transfected cells. CNP2 was selectively expressed ectopically in 293T cells and labeled with ^32^P. Immunoprecipitation of labeled CNP2 and tryptic phosphopeptide mapping analyses identified serines 9 and 22 as the major sites of phosphorylation. Only serine 22 was phosphorylated initially in oligodendrocyte‐enriched cultures of neonatal rat brain glial cells. However, 4β‐phorbol 12, 13‐dibutyrate (PDB) induced the phosphorylation of serine 9, thereby producing the same pattern seen in 293T cells. These results suggest that serine 9 is phosphorylated by a PDB‐sensitive kinase, likely protein kinase C, and that serine 22 appears to be constitutively phosphorylated.

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Author
Ryan C. O'Neill; Peter E. Braun
Publisher
John Wiley and Sons; Wiley (Blackwell Publishing); Blackwell Publishing Inc.; Wiley (ISSN 0022-3042)
Published
2000
Language
EN
Field
Neuroscience (Life Sciences)