Villar-Briones, A., and Aird, S.D. 2018. Organic and peptidyl constituents of snake venoms: The picture is vastly more complex than we imagined. Toxins. 10:392-441. |
|
Wei, J.-F., Yang, H.-W., Wei, X.-L., Qiao, L.-Y., Wang, W.-Y. and He, S.-H. 2009. Purification, characterization and biological activities of the L-amino acid oxidase from Bungarus fasciatus snake venom. Toxicon. 54:262-271. |
|
Aird, S.D. 2005. Taxonomic distribution and quantitative analysis of free purine and pyrimidine nucleosides in snake venoms. Comp. Biochem. Physiol. B. 140:109-126. |
|
Nirthanan, S., Charpantier, E., Gopalakrishnakone, P., Gwee, M.C., Khoo, H.E., Cheah, L.S., Bertrand, D., and Kini, R.M. 2002. Candoxin, a novel toxin from Bungarus candidus, is a reversible antagonist of muscle (aß?d) but a poorly reversible antagonist of neuronal a7 nicotinic acetylcholine receptors. J. Biol. Chem. 277:17811-17820. |
|
Kudo, K., and Tu, A.T. 2001. Characterization of hyaluronidase isolated from Agkistrodon contortrix contortrix (southern copperhead) venom. Arch. Biochem. Biophys. 386:154-162. |
|
Torres, A.M., Kini, R.M., Selvanayagam, N., and Kuchel, P.W. 2001. NMR structure of bucandin, a neurotoxin from the venom of the Malayan krait (Bungarus candidus). Biochem. J. 360:539-548. |
|
Aird, S.D., Womble, G.C., Yates, J.R., and Griffin, P.R. 1999. Primary structure of g-bungarotoxin, a new postsynaptic neurotoxin from venom of Bungarus multicinctus. Toxicon. 37:609-625. |
|
Frobert, Y., Creminon, C., Cousin, X., Remy, M.H., Chatel, J.M., Bon, S., Bon, C., and Grassi, J. 1997. Acetylcholinesterases from Elapidae snake venoms: Biochemical, immunological and enzymatic characterization. Biochim. Biophys. Acta. 1339:253-267. |
|
Tan, N.-H., and Ponnudurai, G. 1992a. The biological properties of venoms of some American coral snakes (genus Micrurus). Comp. Biochem. Physiol. B. 101:471-474. |
|
Tan, N.-H., and Ponnudurai, G. 1991c. A comparative study of the biological properties of some sea snake venoms. Comp. Biochem. Physiol. B. 99:351-354. |
|
Tan, N.-H., Arunmozhiarasi, A., and Ponnudurai, G. 1991a. A comparative study of the biological properties of Dendroaspis (mamba) snake venoms. Comp. Biochem. Physiol. C. 99:463-466. |
|
Tan, N.-H., and Ponnudurai, G. 1990d. A comparative study of the biological properties of Australian elapid venoms. Comp. Biochem. Physiol. C. 97:99-106. |
|
Tan, N.-H., and Ponnudurai, G. 1990b. A comparative study of the biological properties of krait (genus Bungarus) venoms. Comp. Biochem. Physiol. C. 95:105-109. |
|
Pukrittayakamee, S., Warrell, D.A., Desakorn, V., McMichael, A.J., White, N.J., and Dunnag, D. 1988. The hyaluronidase activities of some Southeast Asian snake venoms Toxicon. 26:629-637. |
|
Chiappinelli, V.A. 1983. kappa-Bungarotoxin: a probe for the neuronal nicotinic receptor in the avian ciliary ganglion. Brain Res. 277:9-22. |
|
Durkin, J.P., Pickwell, G.V., Trotter, J.T., and Shier, W.T. 1981. Phospholipase A2 electrophoretic variants in reptile venoms. Toxicon. 19:535-546. |
|
Strong, P.N., Goerke, J., Oberg, S.G., and Kelly, R.B. 1976. beta-Bungarotoxin, a pre-synaptic toxin with enzymatic activity. Proc. Natl. Acad. Sci. USA. 73:178-182. |
|
Eterovic, V.A., Hebert, M.S., Hanley, M.R., and Bennett, E.L. 1975. The lethality and spectroscopic properties of toxins from Bungarus multicinctus (Blyth) venom. Toxicon. 13:37-48. |
|
Kumar, V., and Elliot, W.B. 1975. Acetylcholinesterase from Bungarus fasciatus venom. I. Substrate specificity. Comp. Biochem. Physiol. C. 51:249-253. |
|
Lee, C.Y., Chang, S.L., Kau, S.T., and Luh, S.-H. 1972. Chromatographic separation of the venom of Bungarus multicinctus and characterization of its components. J. Chromatogr. 72:71-82. |
|
Mebs, D. 1970. A comparative study of enzyme activities in snake venoms. Int. J. Biochem. 2:335-342. |
|
Wei, A.-L., and Lee, C.Y. 1965. A nucleoside isolated from the venom of Bungarus multicinctus. Toxicon. 3:1-4. |
|