Literature DB >> 9080593

Purification, structure and activity of three insect toxins from Buthus occitanus tunetanus venom.

L Borchani1, M Stankiewicz, C Kopeyan, P Mansuelle, R Kharrat, S Cestèle, H Karoui, H Rochat, M Pelhate, M el Ayeb.   

Abstract

One contractive and two depressant toxins active on insect were purified by high-performance liquid chromatography from the venom of Buthus occitanus tunetanus (Bot). The two depressant toxins, BotIT4 and BotIT5, differ only at position 6 (Arg for Lys) and are equally toxic to insects (LD50 to Blatella germanica = 110 ng/100 mg body weight). They show a strong antigenic cross-reaction with a depressive toxin from Leiurus quinquestriatus quinquestriatus (LqqIT2). The two toxins are able to inhibit with high affinity (K0.5 between 2 and 3 nM) the specific binding of the radioiodinated excitatory insect toxin (125I-AaHIT) on its receptor site on Periplaneta americana synaptosomal membranes. These toxins depolarize the cockroach axon, irreversibly block the action potential, and slow down and very progressively block the transmembrane transient Na+ current. The contracturant toxin BotIT1 is highly toxic to B. germanica (LD50 = 60 ng/ 100 mg body weight) and barely toxic to mice (LD50 = 1 microgram/20 g body weight) when injected intracerebroventricularly. It does not compete with 125I-AaHIT for its receptor site on P. americana synaptosomal membranes. On cockroach axon, BotIT1 develops plateau potentials and slows down the inactivation mechanism of the Na+ channels. Thus, BotIT1 belongs to the group of alpha insect-selective toxins and shows a strong sequence identity (> 90%) with Lqh alpha IT and LqqIII, two insect alpha-toxins previously purified from the venom of L. q. hebraeus and L. q. quinquestriatus. respectively.

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Year:  1997        PMID: 9080593     DOI: 10.1016/s0041-0101(96)00173-0

Source DB:  PubMed          Journal:  Toxicon        ISSN: 0041-0101            Impact factor:   3.033


  5 in total

Review 1.  Scorpion venom components that affect ion-channels function.

Authors:  V Quintero-Hernández; J M Jiménez-Vargas; G B Gurrola; H H Valdivia; L D Possani
Journal:  Toxicon       Date:  2013-07-26       Impact factor: 3.033

2.  Modular organization of α-toxins from scorpion venom mirrors domain structure of their targets, sodium channels.

Authors:  Anton O Chugunov; Anna D Koromyslova; Antonina A Berkut; Steve Peigneur; Jan Tytgat; Anton A Polyansky; Vladimir M Pentkovsky; Alexander A Vassilevski; Eugene V Grishin; Roman G Efremov
Journal:  J Biol Chem       Date:  2013-05-01       Impact factor: 5.157

3.  Nervous System of Periplaneta americana Cockroach as a Model in Toxinological Studies: A Short Historical and Actual View.

Authors:  Maria Stankiewicz; Marcin Dąbrowski; Maria Elena de Lima
Journal:  J Toxicol       Date:  2012-05-14

4.  The unfulfilled promises of scorpion insectotoxins.

Authors:  Ernesto Ortiz; Lourival D Possani
Journal:  J Venom Anim Toxins Incl Trop Dis       Date:  2015-06-17

5.  Mass spectrometry-based top-down and bottom-up approaches for proteomic analysis of the Moroccan Buthus occitanus scorpion venom.

Authors:  Khadija Daoudi; Christian Malosse; Ayoub Lafnoune; Bouchra Darkaoui; Salma Chakir; Jean-Marc Sabatier; Julia Chamot-Rooke; Rachida Cadi; Naoual Oukkache
Journal:  FEBS Open Bio       Date:  2021-05-28       Impact factor: 2.693

  5 in total

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