Literature DB >> 26039939

Probing the Redox States of Sodium Channel Cysteines at the Binding Site of μO§-Conotoxin GVIIJ.

Min-Min Zhang1, Joanna Gajewiak1, Layla Azam1, Grzegorz Bulaj2, Baldomero M Olivera1, Doju Yoshikami1.   

Abstract

μO§-Conotoxin GVIIJ is a 35-amino acid peptide that readily blocks six of eight tested NaV1 subunit isoforms of voltage-gated sodium channels. μO§-GVIIJ is unusual in having an S-cysteinylated cysteine (at residue 24). A proposed reaction scheme involves the peptide-channel complex stabilized by a disulfide bond formed via thiol-disulfide exchange between Cys24 of the peptide and a Cys residue at neurotoxin receptor site 8 in the pore module of the channel (specifically, Cys910 of rat NaV1.2). To examine this model, we synthesized seven derivatives of μO§-GVIIJ in which Cys24 was disulfide-bonded to various thiols (or SR groups) and tested them on voltage-clamped Xenopus laevis oocytes expressing NaV1.2. In the proposed model, the SR moiety is a leaving group that is no longer present in the final peptide-channel complex; thus, the same koff value should be obtained regardless of the SR group. We observed that all seven derivatives, whose kon values varied over a 30-fold range, had the same koff value. Concordant results were observed with NaV1.6, for which the koff was 17-fold larger. Additionally, we tested two μO§-GVIIJ derivatives (where SR was glutathione or a free thiol) on two NaV1.2 Cys replacement mutants (NaV1.2[C912A] and NaV1.2[C918A]) without and with reduction of channel disulfides by dithiothreitol. The results indicate that Cys910 in wild-type NaV1.2 has a free thiol and conversely suggest that in NaV1.2[C912A] and NaV1.2[C918A], Cys910 is disulfide-bonded to Cys918 and Cys912, respectively. Redox states of extracellular cysteines of sodium channels have hitherto received scant attention, and further experiments with GVIIJ may help fill this void.

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Year:  2015        PMID: 26039939     DOI: 10.1021/acs.biochem.5b00390

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  2 in total

1.  Structural Basis for the Inhibition of Voltage-gated Sodium Channels by Conotoxin μO§-GVIIJ.

Authors:  Brad R Green; Joanna Gajewiak; Sandeep Chhabra; Jack J Skalicky; Min-Min Zhang; Jean E Rivier; Grzegorz Bulaj; Baldomero M Olivera; Doju Yoshikami; Raymond S Norton
Journal:  J Biol Chem       Date:  2016-01-27       Impact factor: 5.157

2.  Binary architecture of the Nav1.2-β2 signaling complex.

Authors:  Samir Das; John Gilchrist; Frank Bosmans; Filip Van Petegem
Journal:  Elife       Date:  2016-02-19       Impact factor: 8.140

  2 in total

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