Animal, Plant, and Microbial Toxins: Volume 2 Chemistry, by Nobuyo Maeda, Nobuo Tamiya, Y. M. Chen, C. Y. Lee (auth.),

By Nobuyo Maeda, Nobuo Tamiya, Y. M. Chen, C. Y. Lee (auth.), Akira Ohsaka, Kyozo Hayashi, Yoshio Sawai, Ryosuke Murata, Masaru Funatsu, Nobuo Tamiya (eds.)

During the earlier 20 years, learn on animal, plant, and microbial pollutants has increased speedily, and new and fascinating details has seemed to make clear either the scientific and healing features of intoxication and, much more impor­ tant, to assist us comprehend extra precisely the constitution and the mode of motion of poisons on a molecular foundation. end result of the interdisciplinary nature of toxin study, it truly is of significant impor­ tance that employees focusing on its various facets may still make a specific attempt to interchange and stay alongside of new advancements during this rapidly-expanding box. This has been one of many major reasons of the sequence of overseas conferences which have been held during the last ten years. The expanding curiosity within the result of toxin learn may be defined partially through the turning out to be normal preoccupation with pollutants and its poisonous results, because of this extra anq extra experts in different fields are discovering it essential to keep up a correspondence with present learn into obviously happening pollution. The papers in those volumes have been awarded on the Fourth overseas Symposium on Animal, Plant and Microbial pollutants, equipped via the Inter­ nationwide Society on Toxicology, held in Tokyo in September, 1974. The editors have made up our minds to incorporate either unique reviews and assessment articles, prepared based on disciplines. enhancing has been stored to the minimal helpful for enough comprehension of the materials.

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Extra resources for Animal, Plant, and Microbial Toxins: Volume 2 Chemistry, Pharmacology, and Immunology

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EctrqD:>resis ClynDtryptic digestion (62') (15\) . I\E-cellulooe chranatography A-3b-1 . 9. Enzymatic fragmentation of RCM-LsIIl . The percentage values are the yields of the pep tides at each digestion step. Nobuyo Maeda et of. ). The whole scheme of fragmentation and separation of resulting peptides are summarized in Fig. 9. The N-terminal sequences of RCM-LsIII, peptides A and A-4 were analyzed with the sequence analyzer, and the sequences of small peptides were determined by the direct manual PTH method according to Iwanaga et al.

9. Enzymatic fragmentation of RCM-LsIIl . The percentage values are the yields of the pep tides at each digestion step. Nobuyo Maeda et of. ). The whole scheme of fragmentation and separation of resulting peptides are summarized in Fig. 9. The N-terminal sequences of RCM-LsIII, peptides A and A-4 were analyzed with the sequence analyzer, and the sequences of small peptides were determined by the direct manual PTH method according to Iwanaga et al. (I969). In some cases the amino acid released was subtractively identified by amino acid analysis of a portion of the peptide remaining after a round of Edman degradation.

1971). Snake venom toxins. Purification and properties of three toxins from Naja nivea (linnaeus) (Cape cobra) venom and the amino acid sequence of toxin {j, J. BioI. Chern. 246: 3132-3139. Biilbring, E. (1946). Observations on the isolated nerve-diaphragm preparation of the rat, Brit. J. Pharmacol. I: 38-61. , and Porath, 1. (1967). The amino acid sequence of a neurotoxin from Naja nigricollis venom, Japan. J. Microbiol. 11: 353-355. , and Tamiya, N. (1971). The disulphide bonds of erabutoxin a, a neurotixic protein of a sea snake (Laticauda semifasciata) venom, Biochem J.

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