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PMID: 12093817 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Transfer of M2 muscarinic acetylcholine receptors to clathrin-derived early endosomes following clathrin-independent endocytosis.

The Journal of biological chemistry ·Vol. 277 ·No. 36 ·2002-09-06 ·Pages 33439-46

Delaney KA, Murph MM, Brown LM, Radhakrishna H

Abstract

Upon agonist stimulation, many G protein-coupled receptors such as beta(2)-adrenergic receptors are internalized via beta-arrestin- and clathrin-dependent mechanisms, whereas others, like M(2) muscarinic acetylcholine receptors (mAChRs), are internalized by clathrin- and arrestin-independent mechanisms. To gain further insight into the mechanisms that regulate M(2) mAChR endocytosis, we investigated the post-endocytic trafficking of M(2) mAChRs in HeLa cells and the role of the ADP-ribosylation factor 6 (Arf6) GTPase in regulating M(2) mAChR internalization. Here, we report that M(2) mAChRs are rapidly internalized by a clathrin-independent pathway that is inhibited up to 50% by expression of either GTPase-defective Arf6 Q67L or an upstream Arf6 activator, Galpha(q) Q209L. In contrast, M(2) mAChR internalization was not affected by expression of dominant-negative dynamin 2 K44A, which is a known inhibitor of clathrin-dependent endocytosis. Nevertheless, M(2) mAChRs, which are initially internalized in structures that lack clathrin-dependent endosomal markers, quickly localize to endosomes that contain the clathrin-dependent, early endosomal markers early endosome autoantigen-1, transferrin receptor, and GTPase-defective Rab5 Q79L, which is known to swell early endosomal compartments. These results suggest that M(2) mAChRs initially internalize via an Arf6-associated, clathrin-independent pathway but then quickly merge with the clathrin endocytic pathway at the level of early endosomes.

MeSH Terms
ADP-Ribosylation Factor 6 ADP-Ribosylation Factors/metabolism Cell Membrane/metabolism Cells, Cultured Clathrin/metabolism,physiology DNA/metabolism Dynamin I Dynamins Endocytosis Endosomes/metabolism Fluorescent Antibody Technique, Indirect GTP Phosphohydrolases/metabolism Genes, Dominant Green Fluorescent Proteins HeLa Cells Humans Kinetics Luminescent Proteins/metabolism Membrane Proteins/metabolism Protein Transport Receptor, Muscarinic M2 Receptors, Muscarinic/metabolism Receptors, Transferrin/metabolism Time Factors Transfection Vesicular Transport Proteins
Chemicals
ADP-Ribosylation Factor 6 Clathrin Luminescent Proteins Membrane Proteins Receptor, Muscarinic M2 Receptors, Muscarinic Receptors, Transferrin Vesicular Transport Proteins early endosome antigen 1 Green Fluorescent Proteins DNA Dynamin I GTP Phosphohydrolases ADP-Ribosylation Factors ARF6 protein, human Dynamins
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Delaney Kelly A
School of Biology and Petit Institute for Bioengineering and Biosciences, Georgia Institute of Technology, Atlanta, Georgia 30332-0363, USA.
Murph Mandi M
Brown Lisa M
Radhakrishna Harish
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-09-06
Epub
2002-00-01
Pages
33439-46
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NHLBI NIH HHS · HL 67134 · United States
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