Tubular microdomains of Rab7-positive endosomes retrieve TrkA, a mechanism disrupted in Charcot–Marie–Tooth disease 2B

Author:

Markworth Ronja123ORCID,Dambeck Vivian13ORCID,Steinbeck Lars Malte13ORCID,Koufali Angeliki13ORCID,Bues Bastian13ORCID,Dankovich Tal M.4ORCID,Wichmann Carolin356ORCID,Burk Katja123ORCID

Affiliation:

1. Department of Neurology, University Medical Center Göttingen, Robert Koch Straße 40, 37075 Göttingen, Germany

2. European Neuroscience Institute, Grisebachstraße 5, 37077 Göttingen, Germany

3. Center for Biostructural Imaging of Neurodegeneration, University Medical Center Göttingen, Von-Siebold Straße 3A, 37075 Göttingen, Germany

4. Institute for Neuro- and Sensory Physiology, Humboldtallee 23, 37073 Göttingen, Germany

5. Molecular Architecture of Synapses Group, Institute for Auditory Neuroscience and InnerEarLab, University Medical Center Göttingen, Göttingen, Germany

6. Collaborative Research Centers 889 ‘Cellular Mechanisms of Sensory Processing’ and 1286 ‘Quantitative Synaptology’, 37099 Göttingen, Germany

Abstract

ABSTRACT Axonal survival and growth requires signalling from tropomyosin receptor kinases (Trks). To transmit their signals, receptor–ligand complexes are endocytosed and undergo retrograde trafficking to the soma, where downstream signalling occurs. Vesicles transporting neurotrophic receptors to the soma are reported to be Rab7-positive late endosomes and/or multivesicular bodies (MVBs), where receptors localize within so-called intraluminal vesicles (herein Rab7 corresponds to Rab7A unless specified otherwise). Therefore, one challenging question is how downstream signalling is possible given the insulating properties of intraluminal vesicles. In this study, we report that Rab7-positive endosomes and MVBs retrieve TrkA (also known as NTRK1) through tubular microdomains. Interestingly, this phenotype is absent for the EGF receptor. Furthermore, we found that endophilinA1, endophilinA2 and endophilinA3, together with WASH1 (also known as WASHC1), are involved in the tubulation process. In Charcot–Marie–Tooth disease 2B (CMT2B), a neuropathy of the peripheral nervous system, this tubulating mechanism is disrupted. In addition, the ability to tubulate correlates with the phosphorylation levels of TrkA as well as with neurite length in neuronal cultures from dorsal root ganglia. In all, we report a new retrieval mechanism of late Rab7-positive endosomes, which enables TrkA signalling and sheds new light onto how neurotrophic signalling is disrupted in CMT2B. This article has an associated First Person interview with the first author of the paper.

Funder

Deutsche Forschungsgemeinschaft

University Medical Center Göttingen

Center for Nanoscale Microscopy and Molecular Physiology of the Brain

International Max Planck Research School for Neuroscience

Publisher

The Company of Biologists

Subject

Cell Biology

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