Literature DB >> 15066414

An overview of peptide toxins from the venom of the Chinese bird spider Selenocosmia huwena Wang [=Ornithoctonus huwena (Wang)].

Songping Liang1.   

Abstract

The bird spider Selenocosmia huwena Wang [=Ornithoctonus huwena (Wang)] is one of the most venomous spiders in China. The venom of this spider contains a mixture of compounds with different types of biological activity. About 400 proteins and peptides from the venom can be separated and detected by 2D electrophoresis. Of these, 14 peptide toxins have been purified and characterized from the venom of this spider, with several peptide toxins exhibiting structural similarity but high functional diversity. Most of these huwentoxins (HWTX) contain 30-40 amino acids with three disulfide bonds and adopt an "inhibitor cystine-knot" (ICK) motif in their three dimensional structure, except for huwentoxin-II (HWTX-II) which adopts a novel scaffold different from the ICK motif. As a group, the toxins possess quite different biological activities including inhibition of voltage-gated calcium and sodium channels, insecticidal activity, lectin-like agglutination, and inhibition of trypsin. Eight cDNAs encoding seven toxins, HWTX-I, -II, -III, -IIIa, -IV -V, and, -VII and one lectin, S. huwena lectin-I (SHL-I), have been cloned and sequenced. Comparison of the cDNA sequences of the eight peptides from S. huwena indicates that they can be classified into two different superfamilies according to the "prepro" region of their cDNA sequences.

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Year:  2004        PMID: 15066414     DOI: 10.1016/j.toxicon.2004.02.005

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


  32 in total

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2.  Isolation, amino acid sequence and biological activities of novel long-chain polyamine-associated peptide toxins from the sponge Axinyssa aculeata.

Authors:  Satoko Matsunaga; Mitsuru Jimbo; Martin B Gill; L Leanne Lash-Van Wyhe; Michio Murata; Ken'ichi Nonomura; Geoffrey T Swanson; Ryuichi Sakai
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Review 3.  Molecular diversification in spider venoms: a web of combinatorial peptide libraries.

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4.  t-boc synthesis of huwentoxin-i through native chemical ligation incorporating a trifluoromethanesulfonic acid cleavage strategy.

Authors:  Parashar Thapa; Chino C Cabalteja; Edwin E Philips; Michael J Espiritu; Steve Peigneur; Bea G Mille; Jan Tytgat; Theodore R Cummins; Jon-Paul Bingham
Journal:  Biopolymers       Date:  2016-09       Impact factor: 2.505

5.  TRPV1 pore turret dictates distinct DkTx and capsaicin gating.

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Review 6.  Anticancer, antimicrobial, and analgesic activities of spider venoms.

Authors:  Hassan M Akef
Journal:  Toxicol Res (Camb)       Date:  2018-03-08       Impact factor: 3.524

7.  Molecular cloning and in silico characterization of knottin peptide, U2-SCRTX-Lit2, from brown spider (Loxosceles intermedia) venom glands.

Authors:  Gabriel Otto Meissner; Pedro Túlio de Resende Lara; Luis Paulo Barbour Scott; Antônio Sérgio Kimus Braz; Daniele Chaves-Moreira; Fernando Hitomi Matsubara; Eduardo Mendonça Soares; Dilza Trevisan-Silva; Luiza Helena Gremski; Silvio Sanches Veiga; Olga Meiri Chaim
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8.  A bivalent tarantula toxin activates the capsaicin receptor, TRPV1, by targeting the outer pore domain.

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9.  Structural and Functional Diversity of Peptide Toxins from Tarantula Haplopelma hainanum (Ornithoctonus hainana) Venom Revealed by Transcriptomic, Peptidomic, and Patch Clamp Approaches.

Authors:  Yi-Ya Zhang; Yong Huang; Quan-Ze He; Ji Luo; Li Zhu; Shan-Shan Lu; Jin-Yan Liu; Peng-Fei Huang; Xiong-Zhi Zeng; Song-Ping Liang
Journal:  J Biol Chem       Date:  2015-03-13       Impact factor: 5.157

10.  The first gene-encoded amphibian neurotoxin.

Authors:  Dewen You; Jing Hong; Mingqiang Rong; Haining Yu; Songping Liang; Yufang Ma; Hailong Yang; Jing Wu; Donghai Lin; Ren Lai
Journal:  J Biol Chem       Date:  2009-06-17       Impact factor: 5.157

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