4.7 Article

A Novel Insecticidal Spider Peptide that Affects the Mammalian Voltage-Gated Ion Channel hKv1.5

期刊

FRONTIERS IN PHARMACOLOGY
卷 11, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fphar.2020.563858

关键词

atrial fibrillation; Kv1; 5; Oculicosa supermirabilis; recombinant expression; spider venom

资金

  1. Direccion General de Asuntos del Personal Academico (DGAPA-UNAM) [IN203118]
  2. FORDECYT Venenos y Antivenenos [303045]
  3. OTKA Bridging Fund [1G3DBKB0BFPF247]
  4. OTKA [K119417]
  5. Ministry of Human Capacities, Hungary [EFOP-3.6.1-16-2016-00022]
  6. CONACyT-Mexico [925354, 884453, 775900, 487264, 415092]
  7. [GINOP-2.3.2-15-2016-00015]

向作者/读者索取更多资源

Spider venoms contain peptide toxins that modify ion currents in insect cells and exhibit diverse pharmacological properties in mammals. The peptide Osu1 from Oculicosa supermirabilis venom was found to modulate the hK(v)1.5 ion channel and may represent a new family of spider toxins due to its novel primary structure and hypothesized disulfide pairing motif.
Spider venoms include various peptide toxins that modify the ion currents, mainly of excitable insect cells. Consequently, scientific research on spider venoms has revealed a broad range of peptide toxins with different pharmacological properties, even for mammal species. In this work, thirty animal venoms were screened against hK(v)1.5, a potential target for atrial fibrillation therapy. The whole venom of the spider Oculicosa supermirabilis, which is also insecticidal to house crickets, caused voltage-gated potassium ion channel modulation in hK(v)1.5. Therefore, a peptide from the spider O. supermirabilis venom, named Osu1, was identified through HPLC reverse-phase fractionation. Osu1 displayed similar biological properties as the whole venom; so, the primary sequence of Osu1 was elucidated by both of N-terminal degradation and endoproteolytic cleavage. Based on its primary structure, a gene that codifies for Osu1 was constructed de novo from protein to DNA by reverse translation. A recombinant Osu1 was expressed using a pQE30 vector inside the E. coli SHuffle expression system. recombinant Osu1 had voltage-gated potassium ion channel modulation of human hK(v)1.5, and it was also as insecticidal as the native toxin. Due to its novel primary structure, and hypothesized disulfide pairing motif, Osu1 may represent a new family of spider toxins.

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