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Molecular Microbiology|April 25, 2020
Copper tolerance in bacteria requires the activation of multiple accessory pathwaysAndrea Giachino, Kevin J Waldron
Nature Reviews. Microbiology|December 17, 2008
How do bacterial cells ensure that metalloproteins get the correct metal?Kevin J Waldron, Nigel J Robinson
Advances in Microbial Physiology|May 23, 2017
The Role of Intermetal Competition and Mis-Metalation in Metal ToxicityAnna Barwinska-Sendra, Kevin J Waldron
Journal of Molecular Biology|June 21, 2016
Archaeoglobus Fulgidus DNA Polymerase D: A Zinc-Binding Protein Inhibited by Hypoxanthine and UracilJavier Abellón-Ruiz, Kevin J Waldron, Bernard A Connolly
FEMS Microbiology Ecology|January 27, 2021
Synthetic biology approaches to copper remediation: bioleaching, accumulation and recyclingAndrea Giachino, Francesca Focarelli, Jon Marles-Wright, et al.
Physical Chemistry Chemical Physics : PCCP|January 9, 2018
A charge polarization model for the metal-specific activity of superoxide dismutasesAnna Barwinska-Sendra, Arnaud Baslé, Kevin J Waldron, et al.
Immunology|July 19, 2020
Targeting metabolism to reverse T-cell exhaustion in chronic viral infectionsJohn D Sears, Kevin J Waldron, Jian Wei, et al.
Archives of Biochemistry and Biophysics|December 19, 2025
Glyceraldehyde-3-phosphate dehydrogenase is inhibited by binding of Cu(I) to the essential active site cysteineGustavo Pelicoli Riboldi, Samantha J Firth, Arnaud Baslé, et al.
Nature|August 14, 2009
Metalloproteins and metal sensingKevin J Waldron, Julian C Rutherford, Dianne Ford, et al.
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