FINE STRUCTURAL ALTERATIONS ASSOCIATED WITH VENOM ACTION ON SQUID GIANT NERVE FIBERS
Open Access
- 1 February 1968
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 36 (2) , 341-353
- https://doi.org/10.1083/jcb.36.2.341
Abstract
(1) Block of conduction and marked increase in permeability of the squid giant axon, when surrounded by adhering small nerve fibers, is caused by the venoms of cottonmouth, ringhals, and cobra snakes and by phospholipase A (PhA). This phenomenon is associated with a marked breakdown of the substructure of the Schwann sheath into masses of cytoplasmic globules. Low concentrations of these agents which render the axons sensitive to curare cause less marked changes in the structure of the sheath. (2) Rattlesnake venom, the direct lytic factor obtained from ringhals venom, and hyaluronidase caused few observable changes in structure, correlating with the inability of these agents to increase permeability. (3) Cottonmouth venom did not alter the structure of giant axons freed of all adhering small nerve fibers. This is in agreement with previous evidence that the venom effects are due to an action of lysophosphatides liberated as a result of PhA action. Cetyltrimethylammonium chloride, a cationic detergent, produces effects that resemble those of venom and PhA. (4) The results provide evidence that PhA is the component of the venoms that is responsible for their effects. It also appears that the Schwann cell and possibly the axonal membrane are the major permeability barriers in the squid giant axon.Keywords
This publication has 24 references indexed in Scilit:
- Demonstration of phospholipid splitting as the factor responsible for increased permeability and block of axonal conduction induced by snake venom. I. Study on lobster axonsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1967
- ULTRASTRUCTURE OF THE PRAWN NERVE SHEATHSThe Journal of cell biology, 1967
- CHEMICAL CONTROL OF THE PERMEABILITY CYCLE IN EXCITABLE MEMBRANES DURING ELECTRICAL ACTIVITY*Annals of the New York Academy of Sciences, 1966
- Penetration of acetylcholine into squid giant axonsBiochemical Pharmacology, 1965
- Effects of venoms on the squid giant axonToxicon, 1965
- Penetration of Sugars, Steroids, Amino Acids, and Other Organic Compounds into the Interior of the Squid Giant AxonThe Journal of general physiology, 1965
- Increased cholinesterase activity of intact cells caused by snake venomsBiochemical Pharmacology, 1964
- Demonstration of Increased Permeability as a Factor in the Effect of Acetylcholine on the Electrical Activity of Venom-Treated AxonsThe Journal of general physiology, 1963
- Reversible block of axonal conduction by curare after treatment with cobra venomBiochemical Pharmacology, 1961
- THE STRUCTURE OF THE SCHWANN CELL AND ITS RELATION TO THE AXON IN CERTAIN INVERTEBRATE NERVE FIBERSProceedings of the National Academy of Sciences, 1954