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Characterization of Sodium Channel Peptides Obtained from the Venom of the Scorpion . | LitMetric

Characterization of Sodium Channel Peptides Obtained from the Venom of the Scorpion .

Toxins (Basel)

Departamento de Medicina Molecular y Bioprocesos, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca 62210, Mexico.

Published: March 2024

AI Article Synopsis

  • * The toxic peptides affect sodium channels, particularly Nav1.6, and their amino acid sequences show high similarity to known beta type scorpion toxins (β-ScTx).
  • * The study also evaluated the potential neutralization of these toxins using specific antibody fragments developed by the researchers, which can recognize some of the toxic peptides.

Article Abstract

Five peptides were isolated from the venom of the Mexican scorpion by chromatographic procedures (molecular weight sieving, ion exchange columns, and HPLC) and were denoted Cbo1 to Cbo5. The first four peptides contain 66 amino acid residues and the last one contains 65 amino acids, stabilized by four disulfide bonds, with a molecular weight spanning from about 7.5 to 7.8 kDa. Four of them are toxic to mice, and their function on human Na channels expressed in HEK and CHO cells was verified. One of them (Cbo5) did not show any physiological effects. The ones toxic to mice showed that they are modifiers of the gating mechanism of the channels and belong to the beta type scorpion toxin (β-ScTx), affecting mainly the Nav1.6 channels. A phylogenetic tree analysis of their sequences confirmed the high degree of amino acid similarities with other known β-ScTx. The envenomation caused by this venom in mice is treated by using commercially horse antivenom available in Mexico. The potential neutralization of the toxic components was evaluated by means of surface plasmon resonance using four antibody fragments (10FG2, HV, LR, and 11F) which have been developed by our group. These antitoxins are antibody fragments of single-chain antibody type, expressed in and capable of recognizing Cbo1 to Cbo4 toxins to various degrees.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10974992PMC
http://dx.doi.org/10.3390/toxins16030125DOI Listing

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