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PMID: 1206575 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Loss of alpha-bungarotoxin from junctional and extrajunctional acetylcholine receptors in rat diaphragm muscle in vivo and in organ culture.

The Journal of physiology ·Vol. 252 ·No. 3 ·1975-11-00 ·Pages 771-89

Berg DK, Hall ZW

Abstract

Acetylcholine (ACh) receptors in rat diaphragm muscle were blocked by intrathoracic injection of alpha-bungarotoxin (alpha-BuTx) or [125I]alpha-bungarotoxin ([125I]alpha-BuTx). The stability in vivo of the toxin-receptor complex formed by receptors in normal muscles and receptors in extrajunctional regions of denervated muscles was compared. Toxin was lost from junctional regions of normal muscles with a half-time of approximately 6 days. The loss of toxin was accompanied by a corresponding increase in the number of free toxin-binding sites. In contrast, 65% of the toxin bound to extrajunctional regions of denervated muscle was lost in 24 hr. 2. In a second series of experiments, animals were injected with [125I]alpha-BuTx and the muscle subsequently cultured for 24 hr. Loss of toxin again occurred more rapidly from extrajunctional receptors than from junctional receptors. The loss from extrajunctional receptors was described by a single first-order rate constant whose corresponding half-time was 8-11 hr. Loss was almost completely blocked by sodium cyanide and dinitrophenol and was inhibited by puromycin and cycloheximide. The radioactivity recovered in the medium was largely monoiodotyrosine. These results are consistent with the hypothesis that toxin loss reflects intracellular degradation of toxin-receptor complex. 3. Neonatal rats were injected with [125I]alpha-BuTx and the diaphragms cultured. Radioactive toxin was lost rapidly from extrajunctional regions of muscle and more slowly from regions containing end-plates. 4. These results could be explained by a difference in turnover rates for junctional and extrajunctional receptors.

MeSH Terms
Animals Animals, Newborn Bungarotoxins/metabolism Cyanides/pharmacology Cycloheximide/pharmacology Diaphragm/metabolism Dinitrophenols/pharmacology Male Muscle Denervation Muscles/metabolism Neuromuscular Junction/metabolism Organ Culture Techniques Puromycin/pharmacology Rats Receptors, Cholinergic/drug effects
Chemicals
Bungarotoxins Cyanides Dinitrophenols Receptors, Cholinergic Puromycin Cycloheximide
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Berg D K
Hall Z W
References (17)
17 references, click to expand
  1. Fate of alpha-bungarotoxin bound to acetylcholine receptors of normal and denervated muscle.
    Science. 1974 Apr 26;184(4135):473-5 PMID: 4819679
  2. A study of foetal and new-born rat muscle fibres.
    J Physiol. 1962 Aug;162:393-408 PMID: 13886109
  3. A study of supersensitivity in denervated mammalian skeletal muscle.
    J Physiol. 1959 Jun 23;147(1):178-93 PMID: 13673396
  4. ACETYLCHOLINE AND CHOLINE ACETYLTRANSFERASE IN THE DIAPHRAGM OF THE RAT.
    J Physiol. 1964 Jun;171:504-13 PMID: 14193937
  5. The acetylcholine sensitivity of frog muscle fibres after complete or partial devervation.
    J Physiol. 1960 Apr;151:1-23 PMID: 14422356
  6. Increased extrajunctional acetylcholine sensitivity produced by chronic acetylcholine sensitivity produced by chronic post-synaptic neuromuscular blockade.
    J Physiol. 1975 Jan;244(3):659-76 PMID: 166159
  7. Synthesis of acetylcholine receptor by denervated rat diaphragm muscle.
    Proc Natl Acad Sci U S A. 1975 Apr;72(4):1368-72 PMID: 1055412
  8. Acetylcholine receptors in normal and denervated rat diaphragm muscle. II. Comparison of junctional and extrajunctional receptors.
    Biochemistry. 1975 May 20;14(10):2100-6 PMID: 1148161
  9. Acetylcholine receptor turnover in membranes of developing muscle fibers.
    J Cell Biol. 1975 May;65(2):335-58 PMID: 236319
  10. Turnover of junctional and extrajunctional acetylcholine receptors of the rat diaphragm.
    Nature. 1975 Feb 20;253(5493):643-4 PMID: 1113859
  11. Acetylcholine receptors in normal and denervated rat diaphragm muscle. I. Purification and interaction with [125I]-alpha-bungarotoxin.
    Biochemistry. 1975 May 20;14(10):2092-9 PMID: 1148160
  12. Influence of denervation on localization of neurotoxins from clapid venoms in rat diaphragm.
    Nature. 1967 Sep 9;215(5106):1177-8 PMID: 4294063
  13. Binding of -bungarotoxin to acetylcholine receptors in mammalian muscle (snake venom-denervated muscle-neonatal muscle-rat diaphragm-SDS-polyacrylamide gel electrophoresis).
    Proc Natl Acad Sci U S A. 1972 Jan;69(1):147-51 PMID: 4333037
  14. Acetylcholine receptors in muscle fibres.
    Nature. 1971 Oct 29;233(5322):599-603 PMID: 4329739
  15. Control of ACh sensitivity by muscle activity in the rat.
    J Physiol. 1972 Mar;221(2):493-513 PMID: 4336524
  16. Acetylcholine receptors. Distribution and extrajunctional density in rat diaphragm after denervation correlated with acetylcholine sensitivity.
    J Gen Physiol. 1972 Sep;60(3):248-62 PMID: 5055788
  17. Cholinergic receptor molecules and cholinesterase molecules at mouse skeletal muscle junctions.
    Nature. 1971 Nov 26;234(5326):207-9 PMID: 4943086
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1975-11-00
Pages
771-89
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1348494
Subset
IM
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