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The Redox-Active Conopeptide Derived from the Venom Duct Transcriptome of Conus lividus Assists in the Oxidative Folding of Conotoxin.
Dolle, Ashwini; Vijayasarathy, Marimuthu; Shekh, Shamasoddin; Hunashal, Yamanappa; Reddy, K Kasi Amarnath; Prakash, Sunita; Rana, Abhijit; Biswal, Himansu S; Raghothama, Srinivasarao; Gowd, Konkallu Hanumae.
Afiliação
  • Dolle A; Department of Chemistry, School of Chemical Sciences, Central University of Karnataka, Kalaburagi 585367, Karnataka, India.
  • Vijayasarathy M; Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.
  • Shekh S; Department of Chemistry, School of Chemical Sciences, Central University of Karnataka, Kalaburagi 585367, Karnataka, India.
  • Hunashal Y; NMR Research Centre, Indian Institute of Science, Bangalore 560012, Karnataka, India.
  • Reddy KKA; Department of Chemistry, School of Chemical Sciences, Central University of Karnataka, Kalaburagi 585367, Karnataka, India.
  • Prakash S; Proteomic Facility, Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, Karnataka, India.
  • Rana A; School of Chemical Sciences, National Institute of Science Education and Research, Bhubaneswar 752050, Odisha, India.
  • Biswal HS; School of Chemical Sciences, National Institute of Science Education and Research, Bhubaneswar 752050, Odisha, India.
  • Raghothama S; NMR Research Centre, Indian Institute of Science, Bangalore 560012, Karnataka, India.
  • Gowd KH; Department of Chemistry, School of Chemical Sciences, Central University of Karnataka, Kalaburagi 585367, Karnataka, India.
Biochemistry ; 60(16): 1299-1311, 2021 04 27.
Article em En | MEDLINE | ID: mdl-33829763
ABSTRACT
The tetrapeptides Li504 and Li520, differing in the modification of the 4-trans-hydroxylation of proline, are novel conopeptides derived from the venom duct transcriptome of the marine cone snail Conus lividus. These predicted mature peptides are homologous to the active site motif of oxidoreductases that catalyze the oxidation, reduction, and rearrangement of disulfide bonds in peptides and proteins. The estimated reduction potential of the disulfide of Li504 and Li520 is within the range of disulfide reduction potentials of oxidoreductases, indicating that they may catalyze the oxidative folding of conotoxins. Conformational features of Li504 and Li520 include the trans configuration of the Cys1-Pro2/Hyp2 peptide bond with a type 1 turn that is similar to the active site motif of glutaredoxin that regulates the oxidation of cysteine thiols to disulfides. Li504- and Li520-assisted oxidative folding of α-conotoxin ImI confirms that Li520 improves the yield of the natively folded peptide by concomitantly decreasing the yield of the non-native disulfide isomer and thus acts as a miniature disulfide isomerase. The geometry of the Cys1-Hyp2 peptide bond of Li520 shifts between the trans and cis configurations in the disulfide form and thiol/thiolate form, which regulates the deprotonation of the N-terminal cysteine residue. Hydrogen bonding of the hydroxyl group of 4-trans-hydroxyproline with the interpeptide chain unit in the mixed disulfide form may play a vital role in shifting the geometry of the Cys1-Hyp2 peptide bond from cis to trans configuration. The Li520 conopeptide together with similar peptides derived from other species may constitute a new family of "redox-active" conopeptides that are integral components of the oxidative folding machinery of conotoxins.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Oligopeptídeos / Peçonhas / Dobramento de Proteína / Conotoxinas / Caramujo Conus / Transcriptoma Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Oligopeptídeos / Peçonhas / Dobramento de Proteína / Conotoxinas / Caramujo Conus / Transcriptoma Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article