4piy Citations

Structure-Based Insights into the Role of the Cys-Tyr Crosslink and Inhibitor Recognition by Mammalian Cysteine Dioxygenase.

J Mol Biol 428 3999-4012 (2016)
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Cited: 20 times
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Abstract

In mammals, the non-heme iron enzyme cysteine dioxygenase (CDO) helps regulate Cys levels through converting Cys to Cys sulfinic acid. Its activity is in part modulated by the formation of a Cys93-Tyr157 crosslink that increases its catalytic efficiency over 10-fold. Here, 21 high-resolution mammalian CDO structures are used to gain insight into how the Cys-Tyr crosslink promotes activity and how select competitive inhibitors bind. Crystal structures of crosslink-deficient C93A and Y157F variants reveal similar ~1.0-Å shifts in the side chain of residue 157, and both variant structures have a new chloride ion coordinating the active site iron. Cys binding is also different from wild-type CDO, and no Cys-persulfenate forms in the C93A or Y157F active sites at pH6.2 or 8.0. We conclude that the crosslink enhances activity by positioning the Tyr157 hydroxyl to enable proper Cys binding, proper oxygen binding, and optimal chemistry. In addition, structures are presented for homocysteine (Hcy), D-Cys, thiosulfate, and azide bound as competitive inhibitors. The observed binding modes of Hcy and D-Cys clarify why they are not substrates, and the binding of azide shows that in contrast to what has been proposed, it does not bind in these crystals as a superoxide mimic.

Articles - 4piy mentioned but not cited (1)

  1. Structure-Based Insights into the Role of the Cys-Tyr Crosslink and Inhibitor Recognition by Mammalian Cysteine Dioxygenase. Driggers CM, Kean KM, Hirschberger LL, Cooley RB, Stipanuk MH, Karplus PA. J Mol Biol 428 3999-4012 (2016)


Reviews citing this publication (4)

  1. ROS and RNS signalling: adaptive redox switches through oxidative/nitrosative protein modifications. Moldogazieva NT, Mokhosoev IM, Feldman NB, Lutsenko SV. Free Radic Res 52 507-543 (2018)
  2. Protein-Derived Cofactors Revisited: Empowering Amino Acid Residues with New Functions. Davidson VL. Biochemistry 57 3115-3125 (2018)
  3. Carbon-fluorine bond cleavage mediated by metalloenzymes. Wang Y, Liu A. Chem Soc Rev 49 4906-4925 (2020)
  4. Cysteine dioxygenase type 1 (CDO1): Its functional role in physiological and pathophysiological processes. Chen M, Zhu JY, Mu WJ, Guo L. Genes Dis 10 877-890 (2023)

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