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Articles

How the disulfide conformation determines the disulfide/thiol redox potential

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Pages 93-103 | Received 13 Aug 2013, Accepted 30 Sep 2013, Published online: 21 Nov 2013

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Nahid Shahabadi, Farshad Shiri, Saba Hadidi & Soheila Kashanian. (2021) Direct effects of low-energy electrons on including sulfur bonds in proteins: a second-order Møller–Plesset perturbation (MP2) theory approach. Journal of Biomolecular Structure and Dynamics 39:5, pages 1681-1687.
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Adriana Sacristán-Martín, Daniel Miguel, Héctor Barbero & Celedonio M. Álvarez. (2022) Self-Resetting Bistable Redox Molecular Machines for Fullerene Recognition. Organic Letters 24:32, pages 5879-5883.
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Craig A. Bayse & Deanna B. Pollard. (2019) Conformation dynamics of cyclic disulfides and selenosulfides in CXXC(U) (X = Gly, Ala) tetrapeptide redox motifs. Journal of Peptide Science 25:6, pages e3160.
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David YoungBrandan PedreDaria EzeriņaBarbara De SmetAleksandra LewandowskaMaria-Armineh TossounianNandita BodraJingjing HuangLeonardo Astolfi RosadoFrank Van BreusegemJoris Messens. (2019) Protein Promiscuity in H 2 O 2 Signaling . Antioxidants & Redox Signaling 30:10, pages 1285-1324.
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Zhiguang Xiao, Sharon La Fontaine, Ashley I. Bush & Anthony G. Wedd. (2019) Molecular Mechanisms of Glutaredoxin Enzymes: Versatile Hubs for Thiol–Disulfide Exchange between Protein Thiols and Glutathione. Journal of Molecular Biology 431:2, pages 158-177.
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Johannes Knuesting & Renate Scheibe. (2018) Small Molecules Govern Thiol Redox Switches. Trends in Plant Science 23:9, pages 769-782.
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Goedele Roos, Ramón Alain Miranda-Quintana & Marco Martínez González. (2018) How Biochemical Environments Fine-Tune a Redox Process: From Theoretical Models to Practical Applications. The Journal of Physical Chemistry B 122:34, pages 8157-8165.
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Richard S. Glass. (2018) Sulfur Radicals and Their Application. Topics in Current Chemistry 376:3.
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Gavin R. Owen, Doris Le, Stoyan Stoychev, Nichole M. Cerutti & Maria Papathanasopoulos. (2018) Redox exchange of the disulfides of human two-domain CD4 regulates the conformational dynamics of each domain, providing insight into its mechanisms of control. Biochemical and Biophysical Research Communications 497:2, pages 811-817.
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Barbara Franczuk & Witold Danikiewicz. (2018) Gas-Phase Reactions of Dimethyl Disulfide with Aliphatic Carbanions - A Mass Spectrometry and Computational Study. Journal of the American Society for Mass Spectrometry 29:3, pages 588-599.
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Ashwinie A. Ukuwela, Ashley I. Bush, Anthony G. Wedd & Zhiguang Xiao. (2017) Reduction potentials of protein disulfides and catalysis of glutathionylation and deglutathionylation by glutaredoxin enzymes. Biochemical Journal 474:22, pages 3799-3815.
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Peter M. NdangiliMilua Masikini, Usisipho Feleni, Samantha Douman, Oluwakemi Tovide, Avril WilliamsPriscilla Baker & Emmanuel I. Iwuoha. (2017) Gallium-Induced Perturbation of Zinc Selenide Quantum Dots Electronics. ChemistrySelect 2:24, pages 7054-7062.
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Gavin R. Owen, Jennifer A. Channell, V. Trevor Forsyth, Michael Haertlein, Edward P. Mitchell, Alexio Capovilla, Maria Papathanasopoulos & Nichole M. Cerutti. (2016) Human CD4 Metastability Is a Function of the Allosteric Disulfide Bond in Domain 2. Biochemistry 55:15, pages 2227-2237.
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Erica C.M. Ording-Wenker, Martijn van der Plas, Maxime A. Siegler, Sylvestre Bonnet, F. Matthias Bickelhaupt, Célia Fonseca Guerra & Elisabeth Bouwman. (2014) Thermodynamics of the Cu II μ-Thiolate and Cu I Disulfide Equilibrium: A Combined Experimental and Theoretical Study . Inorganic Chemistry 53:16, pages 8494-8504.
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