DOI

  • Lucia Kuhn-Nentwig
  • Irina M. Fedorova
  • Benjamin P. Luescher
  • Lukas S. Kopp
  • Christian Trachsel
  • Johann Schaller
  • Xuan Lan Vu
  • Thomas Seebeck
  • Kathrin Streitberger
  • Wolfgang Nentwig
  • Erwin Sigel
  • Lev G. Magazanik
CsTx-1, the main neurotoxic acting peptide in the venom of the spider Cupiennius salei, is composed of 74 amino acid residues, exhibits an inhibitory cysteine knot motif, and is further characterized by its highly cationic charged C terminus. Venom gland cDNA library analysis predicted a prepropeptide structure for CsTx-1 precursor. In the presence of trifluoroethanol, CsTx-1 and the long C-terminal part alone (CT1-long; Gly-45-Lys-74) exhibit an alpha-helical structure, as determined by CD measurements. CsTx-1 and CT1-long are insecticidal toward Drosophila flies and destroys Escherichia coli SBS 363 cells. CsTx-1 causes a stable and irreversible depolarization of insect larvae muscle cells and frog neuromuscular preparations, which seem to be receptor-independent. Furthermore, this membranolytic activity could be measured for Xenopus oocytes, in which CsTx-1 and CT1-long increase ion permeability non-specifically. These results support our assumption that the membranolytic activities of CsTx-1 are caused by
Язык оригиналаанглийский
Страницы (с-по)25640-25649
Число страниц10
ЖурналJournal of Biological Chemistry
Том287
Номер выпуска30
DOI
СостояниеОпубликовано - 2012
Опубликовано для внешнего пользованияДа

ID: 5520118