Mu 1A deficiency induces a profound increase in MPR300/IGF-II receptor internalization rate

C Meyer1, E L Eskelinen, M R Guruprasad

  • 1Zentrum für Biochemie und Molekulare Zellbiologie, Biochemie II, Universität Göttingen, Heinrich-Düker-Weg 12, D-37073 Göttingen, Germany.

Journal of Cell Science
|January 17, 2002
PubMed

Insights

Defects in AP-1 transport disrupt mannose-6-phosphate/IGF-II receptor (MPR300) recycling. This leads to increased MPR300 endocytosis, impacting lysosomal enzyme sorting and IGF-II hormone uptake.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Receptor Trafficking

Background:

  • The mannose-6-phosphate/IGF-II receptor (MPR300) is crucial for lysosomal enzyme sorting and IGF-II endocytosis.
  • AP-1 adaptor protein complex mediates transport between endosomes and the trans-Golgi network (TGN).

Purpose of the Study:

  • To investigate the role of AP-1 in MPR300 trafficking.
  • To analyze MPR300 transport in mu1A-adaptin-deficient fibroblasts lacking functional AP-1.

Main Methods:

  • Analysis of MPR300 transport in mu1A-adaptin-deficient fibroblasts.
  • Assessment of receptor endocytosis rates and localization.
  • Comparison with other AP-2-mediated endocytosis pathways.

Main Results:

  • MPR300 endocytosis is significantly enhanced in mu1A-adaptin-deficient cells.
  • Increased internalization rate, not plasma membrane concentration, drives enhanced endocytosis.
  • MPR300 accumulates in endosomes, with increased presence in clathrin-coated pits at the plasma membrane.

Conclusions:

  • AP-1-mediated retrograde transport from endosomes to the TGN is essential for controlling MPR300 recycling rate.
  • Disruption of AP-1 function leads to impaired MPR300 trafficking and altered endocytosis dynamics.

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