Mutant Huntingtin Impairs Vesicle Formation from Recycling Endosomes by Interfering with Rab11 Activity

Author:

Li Xueyi1,Standley Clive2,Sapp Ellen1,Valencia Antonio1,Qin Zheng-Hong1,Kegel Kimberly B.1,Yoder Jennifer1,Comer-Tierney Laryssa A.1,Esteves Miguel1,Chase Kathryn3,Alexander Jonathan1,Masso Nicholas1,Sobin Lindsay1,Bellve Karl2,Tuft Richard2,Lifshitz Lawrence2,Fogarty Kevin2,Aronin Neil3,DiFiglia Marian1

Affiliation:

1. Cellular Neurobiology Laboratory and Department of Neurology, Massachusetts General Hospital and Harvard Medical School, Charlestown, Massachusetts 02129

2. Biomedical Imaging Group, Department of Physiology, University of Massachusetts Medical School

3. Department of Medicine and Cell Biology, University of Massachusetts Medical School, Worcester, Massachusetts 01655

Abstract

ABSTRACT Huntingtin (Htt) localizes to endosomes, but its role in the endocytic pathway is not established. Recently, we found that Htt is important for the activation of Rab11, a GTPase involved in endosomal recycling. Here we studied fibroblasts of healthy individuals and patients with Huntington's disease (HD), which is a movement disorder caused by polyglutamine expansion in Htt. The formation of endocytic vesicles containing transferrin at plasma membranes was the same in control and HD patient fibroblasts. However, HD fibroblasts were delayed in recycling biotin-transferrin back to the plasma membrane. Membranes of HD fibroblasts supported less nucleotide exchange on Rab11 than did control membranes. Rab11-positive vesicular and tubular structures in HD fibroblasts were abnormally large, suggesting that they were impaired in forming vesicles. We used total internal reflection fluorescence imaging of living fibroblasts to monitor fluorescence-labeled transferrin-carrying transport intermediates that emerged from recycling endosomes. HD fibroblasts had fewer small vesicles and more large vesicles and long tubules than did control fibroblasts. Dominant active Rab11 expressed in HD fibroblasts normalized the recycling of biotin-transferrin. We propose a novel mechanism for cellular dysfunction by the HD mutation arising from the inhibition of Rab11 activity and a deficit in vesicle formation at recycling endosomes.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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