Cell
Volume 146, Issue 3, 5 August 2011, Pages 421-434
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Article
Recruitment of Actin Modifiers to TrkA Endosomes Governs Retrograde NGF Signaling and Survival

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Summary

The neurotrophins NGF and NT3 collaborate to support development of sympathetic neurons. Although both promote axonal extension via the TrkA receptor, only NGF activates retrograde transport of TrkA endosomes to support neuronal survival. Here, we report that actin depolymerization is essential for initiation of NGF/TrkA endosome trafficking and that a Rac1–cofilin signaling module associated with TrkA early endosomes supports their maturation to retrograde transport-competent endosomes. These actin-regulatory endosomal components are absent from NT3/TrkA endosomes, explaining the failure of NT3 to support retrograde TrkA transport and survival. The inability of NT3 to activate Rac1-GTP–cofilin signaling is likely due to the labile nature of NT3/TrkA complexes within the acidic environment of TrkA early endosomes. Thus, TrkA endosomes associate with actin-modulatory proteins to promote F-actin disassembly, enabling their maturation into transport-competent signaling endosomes. Differential control of this process explains how NGF but not NT3 supports retrograde survival of sympathetic neurons.

Highlights

► Proteomic analysis of endosomes containing the neurotrophin receptor TrkA ► TrkA endosomes associate with actin-modulatory proteins ► Retrograde transport of TrkA endosomes is dependent on F-actin breakdown ► The neurotrophin NGF, but not NT3, can bind TrkA to signal at endosomal pH

Cited by (0)

3

These authors contributed equally to this work

4

Present address: Department of Pharmacology, University of Washington Medical Center, Seattle, WA 98195, USA

5

Present address: Department of Surgery, The Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA

6

Present address: Howard Hughes Medical Institute, Smilow Neuroscience Program, New York University School of Medicine, New York, NY 10016, USA