Affiliation:
1. Institute of Biological Chemistry, Academia Sinica, POB 23-106, Taipei, Taiwan
2. Institute of Biochemical Sciences, National Taiwan University, Taipei, Taiwan
Abstract
Some myotoxic or neurotoxic PLA2s (phospholipases A2) from pit viper venoms contain characteristic N6 substitutions. Our survey of the venoms of more than ten pit viper genera revealed that N6-PLA2s exist only in limited Asian pit vipers of two genera, Protobothrops and Gloydius, and exist as either monomers or the basic subunits of heterodimers in some New World pit vipers. For the newly identified N6-PLA2s, the neuromuscular blocking activities were assayed with the chick biventer cervicis neuromuscular tissue, whereas the increased serum creatine kinase level assessed their myotoxicities. The purified N6-PLA2s from Protobothrops mangshanensis and Gloydius intermedius saxatilis were found to be presynaptic neurotoxins. In contrast, all N6-PLA2s from the venoms of Sistrurus miliarius strackeri, S. m. barbouri, Crotalus viridis viridis, C. lepidus lepidus, Cerrophidion godmani and Bothreichis schlegelii were myotoxins without neurotoxicity even in the presence of crotoxin A. Crotoxin-like complexes were for the first time purified from the venoms of Sitrurus catenatus tergeminus, C. mitchelli mitchelli, C. horridus atricaudatus, C. basiliscus and C. durissus cumanensis. The cDNAs encoding six novel N6-PLA2s and subunits of the crotoxin-like complex from S. c. tergeminus were cloned and fully sequenced. Phylogeny analysis showed that two structural subtypes of N6-PLA2s with either F24 or S24 substitution have been evolved in parallel, possibly descended respectively from species related to present-day Protobothrops and Gloydius. Calmodulin binds all the N6-PLA2s but crotoxin A may inhibit its binding to crotoxin B and to other neurotoxic N6-PLA2s. Structure–activity relationships at various regions of the PLA2 molecules were extensively discussed.
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference54 articles.
1. The rattlesnake and their venom yield and lethal activity;Glenn,1982
2. Rattlesnake neurotoxins: biochemical and biological aspects;Bieber;J. Toxicol. Toxin Rev.,1990
3. Comparison of crotoxin isoforms reveals that stability of the complex plays a major role in its pharmacological action;Faure;Eur. J. Biochem.,1993
4. The distribution among ophidian venoms of a toxin isolated from the venom of the Mojave rattlesnake (Crotalus scutulatus scutulatus);Weinstein;Toxicon,1985
5. Hemorrhagic and mojave toxins in the venoms of the offspring of two Mojave rattlesnakes (Crotalus scutulatus scutulatus);Rael;Comp. Biochem. Physiol.,1993
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