
Conformational Studies of Neurotoxin II from Naja naja oxiana
Author(s) -
TSETLIN Viktor I.,
ARSENIEV Aleksandr S.,
UTKIN Yuri N.,
GUREVICH Aleksandr Z.,
SENYAVINA Lyudmila B.,
BYSTROV Vladimir F.,
IVANOV Vadim T.,
OVCHINNIKOV Yuri A.
Publication year - 1979
Publication title -
european journal of biochemistry
Language(s) - English
Resource type - Journals
eISSN - 1432-1033
pISSN - 0014-2956
DOI - 10.1111/j.1432-1033.1979.tb12899.x
Subject(s) - chemistry , neurotoxin , hexa , circular dichroism , stereochemistry , naja , cobra , side chain , crystallography , venom , organic chemistry , biochemistry , polymer , computer science , programming language
After treatment of neurotoxin II, a component part of the venom of the Middle Asian cobra Naja naja oxiana , with acetoxysuccinimide all five possible ∼‐acetylated‐lysyl derivatives were obtained and the position of the label was established. Trifluoroacetylation of both the derivatives and the parent toxin yielded, respectively, the five acetyl‐penta(trifluoroacetyl)‐neurotoxins II and the hexa(trifluoroacetyl)‐neurotoxin II, which were studied by circular dichroism (CD), 1 H and 19 F nuclear magnetic resonance (NMR) spectroscopy. The availability of this series of compounds made possible assignment of all six fluorine signals (from the N‐terminal and the five ɛ‐amino groups) in the hexa(trifluoroacetyl)‐neurotoxin II NMR spectra and disclosure of the proximity of the Lys‐26 and Lys‐46 trifluoroacetyl groups. The pH dependence of the 19 F NMR signals was determined and the p K values of the groups affecting the signal chemical shifts were calculated by a computer iterative program. In order to ascertain the relative accessibility of the Iysyl side chains, the change in halfwidths of the hexatrifluoroacetylated neurotoxin II 19 F signals, with addition of varying amounts of an iminoxyl spin probe, was determined. The data obtained are compared with the X‐ray data on sea snake neurotoxins and the significance of the side chain interactions observed in solution is discussed.