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Общее количество найденных документов : 29
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 1-20    21-29 
1.
Rediocides A and G as potential antitoxins against cobra venom // Chem. and Biodivers., 2009. Vol. 6, N 9.-С.1404-1414

2.
Rediocides A and G as potential antitoxins against cobra venom // Chem. and Biodivers., 2009. Vol. 6, N 9.-С.1404-1414

3.
Cobrotoxin inhibits NF-kB activation and target gene expression through reaction with NF-kB signal molecules // Biochemistry, 2005. Vol. 44, N 23.-С.8327-8336

4.
Cobrotoxin inhibits NF-kB activation and target gene expression through reaction with NF-kB signal molecules // Biochemistry, 2005. Vol. 44, N 23.-С.8327-8336

5.
Expression and metagenesis studies of cobrotoxin from Taiwan cobra // Biochem. and Biophys. Res. Commun., 1999. Vol. 263, N 3.-С.652-656

6.
Chang Unfolding/folding studies on cobrotoxin from Taiwan cobra venom: pH and GSH/GSSG govern disulfide isomerization at the C-terminus // Arch. Biochem. and Biophys., 1998. Vol. 354, N 1.-С.1-8

7.
Disulfide isomerization within the C-terminus of cobrotoxin decelerates by thiol compounds and trinitrophenylation, but accelerates by modification of carboxyl groups // Arch. Biochem. and Biophys., 1998. Vol. 358, N 1.-С.164-170

8.
A novel neurotoxin, cobrotoxin b, from Naja naja atra (Taiwan cobra) venom: Purification, characterization, and gene organization // J. Biochem., 1997. Vol. 122, N 6.-С.1252-1259

9.
A new neurotoxin (cobrotoxin II) from the venom of Naja naja atra // Toxicon, 1997. Vol. 35, N 4.-С.495-496

10.
A new neurotoxin (cobrotoxin II) from the venom of Naja naja atra // Toxicon, 1997. Vol. 35, N 4.-С.495-496

11.
Genomic structures of cardiotoxin 4 and cobrotoxin from Naja naja atra (Taiwan cobra) // Biochem. and Biophys. Res. Commun., 1997. Vol. 239, N 3.-С.756-762

12.
A novel neurotoxin, cobrotoxin b, from Naja naja atra (Taiwan cobra) venom: Purification, characterization, and gene organization // J. Biochem., 1997. Vol. 122, N 6.-С.1252-1259

13.
Chang Evidence showing a different repertoire of antibodies against unfolded cobrotoxin in anticobrotoxin and antireduced and S-carboxymethylated cobrotoxin antisera // Biochem. and Mol. Biol. Int., 1995. Vol. 35, N 4.-С.733-738

14.
Characterization of epitopes in native and unfolded cobrotoxin: Evidence of an immunodominant C-terminal region related to the production of precipitating and non-precipitating antibodies against cobrotoxin // J. Biochem., 1995. Vol. 118, N 4.-С.686-692

15.
Moore Marjorie A. Snake vanom toxins, unlike smaller antagonists, appear to stabilize a resting state conformation of the nicotinic acetylcholine receptor // Biochim. et biophys. acta. Biomembranes, 1995. Vol. 1235, N 2.-С.336-342

16.
Interaction of protein ligands with receptor fragments. On the residues of curaremimetic toxins that recognize fragments 128-142 and 185-199 of the 'альфа'-subunit of the nicotinic acetylcholine receptor // FEBS Lett., 1994. Vol. 338, N 3.-С.331-338

17.
Yang C.C. Structure and function of cobrotoxin // J. Toxicol. Toxin Rev., 1994. Vol. 13, N 3.-С.275-290

18.
Immunological neutralization of cobrotoxin by its homologous precipitin and non-precipitin antibodies // J. Biochem., 1994. Vol. 116, N 6.-С.1227-1232

19.
Yu C. Structures in solution of toxins from Taiwan cobra venom, Naja naja atra, derived drom NMR spectra // J. Toxicol. Toxin Rev., 1994. Vol. 13, N 3.-С.291-315

20.
Yu C. Structures in solution of toxins from Taiwan cobra venom, Naja naja atra, derived drom NMR spectra // J. Toxicol. Toxin Rev., 1994. Vol. 13, N 3.-С.291-315

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