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Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs

M phase induction in eukaryotic cell cycles is associated with a burst of protein phosphorylation, primarily at serine or threonine followed by proline (S/TP motif). The mitotic phosphoprotein antibody MPM-2 recognizes a significant subset of mitotically phosphorylated S/TP motifs; however, the requ...

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Autores principales: Wu, Chuan Fen, Wang, Ruoning, Liang, Qianjin, Liang, Jianjiao, Li, Wenke, Jung, Sung Yun, Qin, Jun, Lin, Sue-Hwa, Kuang, Jian
Formato: Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2861607/
https://www.ncbi.nlm.nih.gov/pubmed/20219976
http://dx.doi.org/10.1091/mbc.E09-06-0486
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author Wu, Chuan Fen
Wang, Ruoning
Liang, Qianjin
Liang, Jianjiao
Li, Wenke
Jung, Sung Yun
Qin, Jun
Lin, Sue-Hwa
Kuang, Jian
author_facet Wu, Chuan Fen
Wang, Ruoning
Liang, Qianjin
Liang, Jianjiao
Li, Wenke
Jung, Sung Yun
Qin, Jun
Lin, Sue-Hwa
Kuang, Jian
author_sort Wu, Chuan Fen
collection PubMed
description M phase induction in eukaryotic cell cycles is associated with a burst of protein phosphorylation, primarily at serine or threonine followed by proline (S/TP motif). The mitotic phosphoprotein antibody MPM-2 recognizes a significant subset of mitotically phosphorylated S/TP motifs; however, the required surrounding sequences of and the key kinases that phosphorylate these S/TP motifs remain to be determined. By mapping the mitotic MPM-2 epitopes in Xenopus Cdc25C and characterizing the mitotic MPM-2 epitope kinases in Xenopus oocytes and egg extracts, we have determined that phosphorylation of TP motifs that are surrounded by hydrophobic residues at both −1 and +1 positions plays a dominant role in M phase–associated burst of MPM-2 reactivity. Although mitotic Cdk and MAPK may phosphorylate subsets of these motifs that have a basic residue at the +2 position and a proline residue at the −2 position, respectively, the majority of these motifs that are preferentially phosphorylated in mitosis do not have these features. The M phase–associated burst of MPM-2 reactivity can be induced in Xenopus oocytes and egg extracts in the absence of MAPK or Cdc2 activity. These findings indicate that the M phase–associated burst of MPM-2 reactivity represents a novel type of protein phosphorylation in mitotic regulation.
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spelling pubmed-28616072010-07-16 Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs Wu, Chuan Fen Wang, Ruoning Liang, Qianjin Liang, Jianjiao Li, Wenke Jung, Sung Yun Qin, Jun Lin, Sue-Hwa Kuang, Jian Mol Biol Cell Articles M phase induction in eukaryotic cell cycles is associated with a burst of protein phosphorylation, primarily at serine or threonine followed by proline (S/TP motif). The mitotic phosphoprotein antibody MPM-2 recognizes a significant subset of mitotically phosphorylated S/TP motifs; however, the required surrounding sequences of and the key kinases that phosphorylate these S/TP motifs remain to be determined. By mapping the mitotic MPM-2 epitopes in Xenopus Cdc25C and characterizing the mitotic MPM-2 epitope kinases in Xenopus oocytes and egg extracts, we have determined that phosphorylation of TP motifs that are surrounded by hydrophobic residues at both −1 and +1 positions plays a dominant role in M phase–associated burst of MPM-2 reactivity. Although mitotic Cdk and MAPK may phosphorylate subsets of these motifs that have a basic residue at the +2 position and a proline residue at the −2 position, respectively, the majority of these motifs that are preferentially phosphorylated in mitosis do not have these features. The M phase–associated burst of MPM-2 reactivity can be induced in Xenopus oocytes and egg extracts in the absence of MAPK or Cdc2 activity. These findings indicate that the M phase–associated burst of MPM-2 reactivity represents a novel type of protein phosphorylation in mitotic regulation. The American Society for Cell Biology 2010-05-01 /pmc/articles/PMC2861607/ /pubmed/20219976 http://dx.doi.org/10.1091/mbc.E09-06-0486 Text en © 2010 by The American Society for Cell Biology
spellingShingle Articles
Wu, Chuan Fen
Wang, Ruoning
Liang, Qianjin
Liang, Jianjiao
Li, Wenke
Jung, Sung Yun
Qin, Jun
Lin, Sue-Hwa
Kuang, Jian
Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs
title Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs
title_full Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs
title_fullStr Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs
title_full_unstemmed Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs
title_short Dissecting the M Phase–specific Phosphorylation of Serine–Proline or Threonine–Proline Motifs
title_sort dissecting the m phase–specific phosphorylation of serine–proline or threonine–proline motifs
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2861607/
https://www.ncbi.nlm.nih.gov/pubmed/20219976
http://dx.doi.org/10.1091/mbc.E09-06-0486
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