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Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve

Redistribution of axonal enzymes as a function of time in vitro was studied in an unbranched segment of frog sciatic nerve. Cholinesterase activity moved peripherally at a rate of 99 mm/day and centrally at 19 mm/day. One-quarter of the total nerve content of the enzyme was estimated to be in motion...

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Autores principales: Partlow, Lester M., Ross, C. David, Motwani, Ratna, McDougal, David B.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1972
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2226082/
https://www.ncbi.nlm.nih.gov/pubmed/4116399
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author Partlow, Lester M.
Ross, C. David
Motwani, Ratna
McDougal, David B.
author_facet Partlow, Lester M.
Ross, C. David
Motwani, Ratna
McDougal, David B.
author_sort Partlow, Lester M.
collection PubMed
description Redistribution of axonal enzymes as a function of time in vitro was studied in an unbranched segment of frog sciatic nerve. Cholinesterase activity moved peripherally at a rate of 99 mm/day and centrally at 19 mm/day. One-quarter of the total nerve content of the enzyme was estimated to be in motion, one-eighth in each direction. Mitochondrial enzymes (hexokinase and glutamic dehydrogenase) moved peripherally at 20–31 mm/day, centrally at 11–20 mm/day. Only 10% of the total content of these mitochondrial enzymes was in motion. No movement of choline acetylase or 6-phosphogluconic dehydrogenase activity was seen even after 4 days in vitro. However, in a 12 day in vivo experiment choline acetylase moved toward the periphery at a rate of 0.34 mm/day. After a day or so in vitro the distal accumulations of cholinesterase and glutamic dehydrogenase decreased, with a concomitant and quantitatively equivalent increase in enzyme activities at the proximal end of the nerve. It is postulated that during incubation a mechanism for reversing the direction of flow develops in the peripheral stump of the nerve. Vinblastine inhibited central and peripheral flow of both cholinesterase and glutamic dehydrogenase. Movement of cholinesterase was not affected by ouabain, thalidomide, or phenobarbital, nor by K(+) excess (110 mM) or absence.
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spelling pubmed-22260822008-04-23 Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve Partlow, Lester M. Ross, C. David Motwani, Ratna McDougal, David B. J Gen Physiol Article Redistribution of axonal enzymes as a function of time in vitro was studied in an unbranched segment of frog sciatic nerve. Cholinesterase activity moved peripherally at a rate of 99 mm/day and centrally at 19 mm/day. One-quarter of the total nerve content of the enzyme was estimated to be in motion, one-eighth in each direction. Mitochondrial enzymes (hexokinase and glutamic dehydrogenase) moved peripherally at 20–31 mm/day, centrally at 11–20 mm/day. Only 10% of the total content of these mitochondrial enzymes was in motion. No movement of choline acetylase or 6-phosphogluconic dehydrogenase activity was seen even after 4 days in vitro. However, in a 12 day in vivo experiment choline acetylase moved toward the periphery at a rate of 0.34 mm/day. After a day or so in vitro the distal accumulations of cholinesterase and glutamic dehydrogenase decreased, with a concomitant and quantitatively equivalent increase in enzyme activities at the proximal end of the nerve. It is postulated that during incubation a mechanism for reversing the direction of flow develops in the peripheral stump of the nerve. Vinblastine inhibited central and peripheral flow of both cholinesterase and glutamic dehydrogenase. Movement of cholinesterase was not affected by ouabain, thalidomide, or phenobarbital, nor by K(+) excess (110 mM) or absence. The Rockefeller University Press 1972-10-01 /pmc/articles/PMC2226082/ /pubmed/4116399 Text en Copyright © 1972 by The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Partlow, Lester M.
Ross, C. David
Motwani, Ratna
McDougal, David B.
Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve
title Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve
title_full Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve
title_fullStr Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve
title_full_unstemmed Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve
title_short Transport of Axonal Enzymes in Surviving Segments of Frog Sciatic Nerve
title_sort transport of axonal enzymes in surviving segments of frog sciatic nerve
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2226082/
https://www.ncbi.nlm.nih.gov/pubmed/4116399
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