Literature DB >> 30946568

Probing the Cys-Tyr Cofactor Biogenesis in Cysteine Dioxygenase by the Genetic Incorporation of Fluorotyrosine.

Jiasong Li1, Teruaki Koto1, Ian Davis1, Aimin Liu1.   

Abstract

Cysteine dioxygenase (CDO) is a nonheme iron enzyme that adds two oxygen atoms from dioxygen to the sulfur atom of l-cysteine. Adjacent to the iron site of mammalian CDO, there is a post-translationally generated Cys-Tyr cofactor, whose presence substantially enhances the oxygenase activity. The formation of the Cys-Tyr cofactor in CDO is an autocatalytic process, and it is challenging to study by traditional techniques because the cross-linking reaction is a side, uncoupled, single-turnover oxidation buried among multiple turnovers of l-cysteine oxygenation. Here, we take advantage of our recent success in obtaining a purely uncross-linked human CDO due to site-specific incorporation of 3,5-difluoro-l-tyrosine (F2-Tyr) at the cross-linking site through the genetic code expansion strategy. Using EPR spectroscopy, we show that nitric oxide (•NO), an oxygen surrogate, similarly binds to uncross-linked F2-Tyr157 CDO as in wild-type human CDO. We determined X-ray crystal structures of uncross-linked F2-Tyr157 CDO and mature wild-type CDO in complex with both l-cysteine and •NO. These structural data reveal that the active site cysteine (Cys93 in the human enzyme), rather than the generally expected tyrosine (i.e., Tyr157), is well-aligned to be oxidized should the normal oxidation reaction uncouple. This structure-based understanding is further supported by a computational study with models built on the uncross-linked ternary complex structure. Together, these results strongly suggest that the first target to oxidize during the iron-assisted Cys-Tyr cofactor biogenesis is Cys93. Based on these data, a plausible reaction mechanism implementing a cysteine radical involved in the cross-link formation is proposed.

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Year:  2019        PMID: 30946568      PMCID: PMC6658890          DOI: 10.1021/acs.biochem.9b00006

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


  10 in total

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Authors:  Dianna L Forbes; Kathleen M Meneely; Annemarie S Chilton; Audrey L Lamb; Holly R Ellis
Journal:  Biochemistry       Date:  2020-05-19       Impact factor: 3.162

2.  Crystal Structures of L-DOPA Dioxygenase from Streptomyces sclerotialus.

Authors:  Yifan Wang; Inchul Shin; Yizhi Fu; Keri L Colabroy; Aimin Liu
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3.  Characterization of the nonheme iron center of cysteamine dioxygenase and its interaction with substrates.

Authors:  Yifan Wang; Ian Davis; Yan Chan; Sunil G Naik; Wendell P Griffith; Aimin Liu
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4.  Differences in the Second Coordination Sphere Tailor the Substrate Specificity and Reactivity of Thiol Dioxygenases.

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Authors:  Jiasong Li; Ian Davis; Wendell P Griffith; Aimin Liu
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7.  Spectroscopic and Computational Comparisons of Thiolate-Ligated Ferric Nonheme Complexes to Cysteine Dioxygenase: Second-Sphere Effects on Substrate (Analogue) Positioning.

Authors:  Anne A Fischer; Joshua R Miller; Richard J Jodts; Danushka M Ekanayake; Sergey V Lindeman; Thomas C Brunold; Adam T Fiedler
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Review 8.  Carbon-fluorine bond cleavage mediated by metalloenzymes.

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Review 9.  Chemical modifications of proteins and their applications in metalloenzyme studies.

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Journal:  Synth Syst Biotechnol       Date:  2021-02-15

Review 10.  Biosynthesis of sulfonamide and sulfamate antibiotics in actinomycete.

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Journal:  J Ind Microbiol Biotechnol       Date:  2021-06-04       Impact factor: 4.258

  10 in total

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