Literature DB >> 12071945

A chimeric scorpion alpha-toxin displays de novo electrophysiological properties similar to those of alpha-like toxins.

Balkiss Bouhaouala-Zahar1, Rym Benkhalifa, Najet Srairi, Ilhem Zenouaki, Caroline Ligny-Lemaire, Pascal Drevet, François Sampieri, Marcel Pelhate, Mohamed El Ayeb, André Ménez, Habib Karoui, Frédéric Ducancel.   

Abstract

BotXIV and LqhalphaIT are two structurally related long chain scorpion alpha-toxins that inhibit sodium current inactivation in excitable cells. However, while LqhalphaIT from Leiurus quinquestriatus hebraeus is classified as a true and strong insect alpha-toxin, BotXIV from Buthus occitanus tunetanus is characterized by moderate biological activities. To assess the possibility that structural differences between these two molecules could reflect the localization of particular functional topographies, we compared their sequences. Three structurally deviating segments located in three distinct and exposed loops were identified. They correspond to residues 8-10, 19-22, and 38-43. To evaluate their functional role, three BotXIV/LqhalphaIT chimeras were designed by transferring the corresponding LqhalphaIT sequences into BotXIV. Structural and antigenic characterizations of the resulting recombinant chimera show that BotXIV can accommodate the imposed modifications, confirming the structural flexibility of that particular alpha/beta fold. Interestingly, substitution of residues 8-10 yields to a new electrophysiological profile of the corresponding variant, partially comparable to that one of alpha-like scorpion toxins. Taken together, these results suggest that even limited structural deviations can reflect functional diversity, and also that the structure-function relationships between insect alpha-toxins and alpha-like scorpion toxins are probably more complex than expected.

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Year:  2002        PMID: 12071945     DOI: 10.1046/j.1432-1033.2002.02918.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  2 in total

1.  Wheat germ in vitro translation to produce one of the most toxic sodium channel specific toxins.

Authors:  Wael Gad; Rahma Ben-Abderrazek; Khadija Wahni; Didier Vertommen; Serge Muyldermans; Balkiss Bouhaouala-Zahar; Joris Messens
Journal:  Biosci Rep       Date:  2014-07-29       Impact factor: 3.840

2.  Neutralizing Dromedary-Derived Nanobodies Against BotI-Like Toxin From the Most Hazardous Scorpion Venom in the Middle East and North Africa Region.

Authors:  Rahma Ben Abderrazek; Ayoub Ksouri; Faten Idoudi; Sayda Dhaouadi; Emna Hamdi; Cécile Vincke; Azer Farah; Zakaria Benlasfar; Hafedh Majdoub; Mohamed El Ayeb; Serge Muyldermans; Balkiss Bouhaouala-Zahar
Journal:  Front Immunol       Date:  2022-04-19       Impact factor: 8.786

  2 in total

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