Grabarczyk Daniel B, Berks Ben C
Department of Biochemistry, University of Oxford, Oxford, United Kingdom.
PLoS One. 2017 Mar 3;12(3):e0173395. doi: 10.1371/journal.pone.0173395. eCollection 2017.
The Sox pathway found in many sulfur bacteria oxidizes thiosulfate to sulfate. Pathway intermediates are covalently bound to a cysteine residue in the carrier protein SoxYZ. We have used biochemical complementation by SoxYZ-conjugates to probe the identity of the intermediates in the Sox pathway. We find that unconjugated SoxYZ and SoxYZ-S-sulfonate are unlikely to be intermediates during normal turnover in disagreement with current models. By contrast, conjugates with multiple sulfane atoms are readily metabolised by the Sox pathway. The most parsimonious interpretation of these data is that the true carrier species in the Sox pathway is a SoxYZ-S-sulfane adduct.
在许多硫细菌中发现的Sox途径将硫代硫酸盐氧化为硫酸盐。途径中间体与载体蛋白SoxYZ中的半胱氨酸残基共价结合。我们利用SoxYZ缀合物进行生化互补来探究Sox途径中中间体的身份。我们发现,未缀合的SoxYZ和SoxYZ-S-磺酸盐在正常周转过程中不太可能是中间体,这与当前模型不一致。相比之下,具有多个硫烷原子的缀合物很容易被Sox途径代谢。对这些数据最简洁的解释是,Sox途径中真正的载体物种是SoxYZ-S-硫烷加合物。