Phosphorylation controls autoinhibition of cytoplasmic linker protein-170

Mol Biol Cell. 2010 Aug 1;21(15):2661-73. doi: 10.1091/mbc.e09-12-1036. Epub 2010 Jun 2.

Abstract

Cytoplasmic linker protein (CLIP)-170 is a microtubule (MT) plus-end-tracking protein that regulates MT dynamics and links MT plus ends to different intracellular structures. We have shown previously that intramolecular association between the N and C termini results in autoinhibition of CLIP-170, thus altering its binding to MTs and the dynactin subunit p150(Glued) (J. Cell Biol. 2004: 166, 1003-1014). In this study, we demonstrate that conformational changes in CLIP-170 are regulated by phosphorylation that enhances the affinity between the N- and C-terminal domains. By using site-directed mutagenesis and phosphoproteomic analysis, we mapped the phosphorylation sites in the third serine-rich region of CLIP-170. A phosphorylation-deficient mutant of CLIP-170 displays an "open" conformation and a higher binding affinity for growing MT ends and p150(Glued) as compared with nonmutated protein, whereas a phosphomimetic mutant confined to the "folded back" conformation shows decreased MT association and does not interact with p150(Glued). We conclude that phosphorylation regulates CLIP-170 conformational changes resulting in its autoinhibition.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Amino Acid Sequence
  • Animals
  • Cell Line
  • Cyclic AMP-Dependent Protein Kinases / metabolism
  • Dyneins / metabolism
  • Mice
  • Microtubule-Associated Proteins / antagonists & inhibitors*
  • Microtubule-Associated Proteins / chemistry
  • Microtubule-Associated Proteins / metabolism
  • Microtubules / drug effects
  • Microtubules / metabolism
  • Models, Biological
  • Molecular Sequence Data
  • Mutation / genetics
  • Neoplasm Proteins / antagonists & inhibitors*
  • Neoplasm Proteins / chemistry
  • Neoplasm Proteins / metabolism
  • Okadaic Acid / pharmacology
  • Phosphorylation / drug effects
  • Phosphoserine / metabolism
  • Protein Folding / drug effects
  • Protein Transport / drug effects
  • Proteome / metabolism

Substances

  • Microtubule-Associated Proteins
  • Neoplasm Proteins
  • Proteome
  • cytoplasmic linker protein 170
  • Phosphoserine
  • Okadaic Acid
  • Cyclic AMP-Dependent Protein Kinases
  • Dyneins