Literature DB >> 18499388

Autophagy generates retrogradely transported organelles: a hypothesis.

Selma K Kaasinen1, Louise Harvey, Anna J Reynolds, Ian A Hendry.   

Abstract

Nerve cells require trophic signals transmitted from the nerve terminal via the axon in order to survive and develop normally. As the axon may be more than a meter long, specialised mechanisms are needed to transmit these signals. This involves the retrograde axonal transport of signalling endosomes containing nerve growth factor (NGF) and other synaptically derived molecules. These are large, double membrane multivesicular bodies containing a mixture of all vesicle types seen in the nerve terminal. How this signalling endosome is formed and targeted for retrograde axonal transport, however, remains an open question. Here we show that members of the Rab family of proteins that are retrogradely transported indicate that the signalling endosome contains both early and recycling endosomes. In addition, we show that retrogradely transported labelled antibody to dopamine beta-hydroxylase, a marker for synaptic vesicles, co-localizes within the same signalling endosome as NGF. We further show that LC3, a marker for autophagosomes, is retrogradely transported and associates with retrogradely transported NGF. We propose that neurons have exploited the mechanism of autophagy to engulf a sample of the cytoplasmic contents of the nerve terminal to transport back to the cell body. This sample of cytoplasmic contents relays a reliable snapshot of the totality of signalling events occurring in the nerve terminal at that instant in time.

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Year:  2008        PMID: 18499388     DOI: 10.1016/j.ijdevneu.2008.03.011

Source DB:  PubMed          Journal:  Int J Dev Neurosci        ISSN: 0736-5748            Impact factor:   2.457


  9 in total

1.  Roles of membrane trafficking in nerve repair and regeneration.

Authors:  Elizabeth Tuck; Valeria Cavalli
Journal:  Commun Integr Biol       Date:  2010-05

Review 2.  Multivesicular bodies in neurons: distribution, protein content, and trafficking functions.

Authors:  Christopher S Von Bartheld; Amy L Altick
Journal:  Prog Neurobiol       Date:  2011-01-07       Impact factor: 11.685

3.  Lysosomal proteolysis inhibition selectively disrupts axonal transport of degradative organelles and causes an Alzheimer's-like axonal dystrophy.

Authors:  Sooyeon Lee; Yutaka Sato; Ralph A Nixon
Journal:  J Neurosci       Date:  2011-05-25       Impact factor: 6.167

4.  Maturation and Clearance of Autophagosomes in Neurons Depends on a Specific Cysteine Protease Isoform, ATG-4.2.

Authors:  Sarah E Hill; Karlina J Kauffman; Mia Krout; Janet E Richmond; Thomas J Melia; Daniel A Colón-Ramos
Journal:  Dev Cell       Date:  2019-03-14       Impact factor: 12.270

Review 5.  Autophagy in axonal and dendritic degeneration.

Authors:  Yi Yang; Michael Coleman; Lihui Zhang; Xiaoxiang Zheng; Zhenyu Yue
Journal:  Trends Neurosci       Date:  2013-04-30       Impact factor: 13.837

6.  Mutations in TrkA Causing Congenital Insensitivity to Pain with Anhidrosis (CIPA) Induce Misfolding, Aggregation, and Mutation-dependent Neurodegeneration by Dysfunction of the Autophagic Flux.

Authors:  María Luisa Franco; Cristina Melero; Esther Sarasola; Paloma Acebo; Alfonso Luque; Isabel Calatayud-Baselga; María García-Barcina; Marçal Vilar
Journal:  J Biol Chem       Date:  2016-08-22       Impact factor: 5.157

7.  Quantitative analysis of multivesicular bodies (MVBs) in the hypoglossal nerve: evidence that neurotrophic factors do not use MVBs for retrograde axonal transport.

Authors:  Amy L Altick; Larisa M Baryshnikova; Tania Q Vu; Christopher S von Bartheld
Journal:  J Comp Neurol       Date:  2009-06-20       Impact factor: 3.215

Review 8.  Recent insights on principles of synaptic protein degradation.

Authors:  Laurie D Cohen; Noam E Ziv
Journal:  F1000Res       Date:  2017-05-15

9.  All-you-can-eat: autophagy in neurodegeneration and neuroprotection.

Authors:  Philipp A Jaeger; Tony Wyss-Coray
Journal:  Mol Neurodegener       Date:  2009-04-06       Impact factor: 14.195

  9 in total

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