Differential effects of cobalt on the initiation of fast axonal transport
- 1 March 1981
- journal article
- research article
- Published by Springer Nature in Cellular and Molecular Neurobiology
- Vol. 1 (1) , 3-17
- https://doi.org/10.1007/bf00736036
Abstract
Effects of Co2+ on the fast axonal transport of individual proteins were examined in vitro in bullfrog spinal/sciatic nerves.35S-methionine-labeled proteins, fast-transported in control and Co2+-treated preparations were separated via two-dimensional gel electrophoresis. While the overall amount of protein transported was reduced, no qualitative differences could be seen when gel fluorographic patterns were compared. Quantitative analyses of the 48 most abundantly transported species revealed two significantly different populations (p < 0.01) differentially sensitive to Co2+ and distinguishable to a large extent by molecular weight. Those proteins less sensitive to Co2+ ranged from ~20,000 to 35,000 daltons while those more sensitive to Co2+ were >~35,000 daltons. The finding that all proteins are affected by Co2+ supports the proposal that fast-transported proteins are subject to a common Co2+-sensitive, Ca2+-requiring step. The observed differential effects are consistent with more than one Ca2+-dependent step occurring during the initiation phase of fast transport.Keywords
This publication has 42 references indexed in Scilit:
- DIVALENT CATION SPECIFICITY OF THE CALCIUM REQUIREMENT FOR FAST TRANSPORT OF PROTEINS IN AXONS OF DESHEATHED NERVESJournal of Neurochemistry, 1979
- Three‐dimensional architecture of the Golgi apparatus in Sertoli cells of the ratJournal of Anatomy, 1979
- Qualitative analysis of proteins rapidly transported in ventral horn motoneurons and bidirectionally from dorsal root gangliaJournal of Neurobiology, 1979
- Studies of the secretory process in the mammalian exocrine pancreas. I. The condensing vacuoles.The Journal of cell biology, 1977
- Quantitative Film Detection of 3H and 14C in Polyacrylamide Gels by FluorographyEuropean Journal of Biochemistry, 1975
- Intracellular Aspects of the Process of Protein SynthesisScience, 1975
- Mechanism of Axonal Transport: A Proposed Role for Calcium IonsScience, 1975
- AXOPLASMIC TRANSPORT OF PROTEINS IN VITRO IN PRIMARY AFFERENT NEURONS OF FROG SPINAL CORD: EFFECT OF Ca2+-FREE INCUBATION CONDITIONSJournal of Neurochemistry, 1975
- Three‐dimensional structure of the osmium‐impregnated golgi apparatus as seen in the high voltage electron microscopeJournal of Anatomy, 1974
- ELECTROPHORETIC CHARACTERIZATION OF LEUCINE‐, GLUCOSAMINE‐ AND FUCOSE‐LABELLED PROTEINS RAPIDLY TRANSPORTED IN FROG SCIATIC NERVEJournal of Neurochemistry, 1973