The movement of membranous organelles in axons. Electron microscopic identification of anterogradely and retrogradely transported organelles.
Open Access
- 1 March 1980
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 84 (3) , 513-530
- https://doi.org/10.1083/jcb.84.3.513
Abstract
To identify the structures to be rapidly transported through the axons, we developed a new method to permit local cooling of mouse saphenous nerves in situ without exposing them. By this method, both anterograde and retrograde transport were successfully interrupted, while the structural integrity of the nerves was well preserved. Using radioactive tracers, anterogradely transported proteins were shown to accumulate just proximal to the cooled site, and retrogradely transported proteins just distal to the cooled site. Where the anterogradely transported proteins accumulated, the vesiculotubular membranous structures increased in amount inside both myelinated and unmyelinated axons. Such accumulated membranous structures showed a relatively uniform diameter of 50--80 nm, and some of them seemed to be continuous with the axonal smooth endoplasmic reticulum (SER). Thick sections of nerves selectively stained for the axonal membranous structures revealed that the network of the axonal SER was also packed inside axons proximal to the cooled site. In contrast, large membranous bodies of varying sizes accumulated inside axons just distal to the cooled site, where the retrogradely transported proteins accumulated. These bodies were composed mainly of multivesicular bodies and lamellated membranous structures. When horseradish peroxidase was administered in the distal end of the nerve, membranous bodies showing this activity accumulated, together with unstained membranous bodies. Hence, we are led to propose that, besides mitochondria, the membranous components in the axon can be classified into two systems from the viewpoint of axonal transport: "axonal SER and vesiculotubular structures" in the anterograde direction and "large membranous bodies" in the retrograde direction.This publication has 55 references indexed in Scilit:
- Slowly migrating axonal polypeptides. Inequalities in their rate and amount of transport between two branches of bifurcating axons.The Journal of cell biology, 1979
- Temperature‐dependence of rapid axonal transport in sympathetic nerves of the rabbitJournal of Neurobiology, 1976
- Low temperature slowing and cold-block of fast axoplasmic transport in mammalian nervesin vitroJournal of Neurobiology, 1975
- Retrograde axoplasmic transport: Its continuation as anterograde transportFEBS Letters, 1974
- Structural correlates of rapid axonal transfort: Evidence that microtubules may not be directly involvedBrain Research, 1974
- Organelle formation from pinocytotic elements in neuntes of cultured sympathetic gangliaJournal of Neurocytology, 1972
- TEMPERATURE AND INHIBITOR EFFECTS ON FAST AXONAL TRANSPORT IN A MOLLUSCAN NERVEJournal of Neurochemistry, 1972
- Transport of proteins and sulfated mucopolysaccharides in the goldfish visual systemJournal of Neurobiology, 1971
- Characteristics and a model for fast axoplasmic transport in nerveJournal of Neurobiology, 1971
- Bidirectional Transport of Radioactively Labelled Axoplasmic ComponentsNature, 1967