Zinc requirements and the risks and benefits of zinc supplementation W Maret, HH Sandstead Journal of trace elements in medicine and biology 20 (1), 3-18, 2006 | 1486 | 2006 |
Zinc biochemistry: from a single zinc enzyme to a key element of life W Maret Advances in nutrition 4 (1), 82-91, 2013 | 800 | 2013 |
Coordination dynamics of zinc in proteins W Maret, Y Li Chemical reviews 109 (10), 4682-4707, 2009 | 709 | 2009 |
Thiolate ligands in metallothionein confer redox activity on zinc clusters W Maret, BL Vallee Proceedings of the National Academy of Sciences 95 (7), 3478-3482, 1998 | 709 | 1998 |
The biological inorganic chemistry of zinc ions A Krężel, W Maret Archives of biochemistry and biophysics 611, 3-19, 2016 | 705 | 2016 |
Control of zinc transfer between thionein, metallothionein, and zinc proteins C Jacob, W Maret, BL Vallee Proceedings of the National Academy of Sciences 95 (7), 3489-3494, 1998 | 577 | 1998 |
The function of zinc metallothionein: a link between cellular zinc and redox state W Maret The Journal of nutrition 130 (5), 1455S-1458S, 2000 | 561 | 2000 |
Cytosolic zinc buffering and muffling: Their role in intracellularzinc homeostasis RA Colvin, WR Holmes, CP Fontaine, W Maret Metallomics 2 (5), 306-317, 2010 | 490 | 2010 |
Inhibitory sites in enzymes: zinc removal and reactivation by thionein W Maret, C Jacob, BL Vallee, EH Fischer Proceedings of the National Academy of Sciences 96 (5), 1936-1940, 1999 | 482 | 1999 |
Zinc-buffering capacity of a eukaryotic cell at physiological pZn A Krężel, W Maret JBIC Journal of Biological Inorganic Chemistry 11, 1049-1062, 2006 | 462 | 2006 |
Oxidative metal release from metallothionein via zinc-thiol/disulfide interchange. W Maret Proceedings of the National Academy of Sciences 91 (1), 237-241, 1994 | 445 | 1994 |
The glutathione redox couple modulates zinc transfer from metallothionein to zinc-depleted sorbitol dehydrogenase LJ Jiang, W Maret, BL Vallee Proceedings of the National Academy of Sciences 95 (7), 3483-3488, 1998 | 389 | 1998 |
Zinc in cellular regulation: the nature and significance of “zinc signals” W Maret International journal of molecular sciences 18 (11), 2285, 2017 | 388 | 2017 |
Zinc coordination environments in proteins as redox sensors and signal transducers W Maret Antioxidants & redox signaling 8 (9-10), 1419-1441, 2006 | 368 | 2006 |
Zinc and sulfur: a critical biological partnership W Maret Biochemistry 43 (12), 3301-3309, 2004 | 339 | 2004 |
Molecular aspects of human cellular zinc homeostasis: redox control of zinc potentials and zinc signals W Maret Biometals 22, 149-157, 2009 | 334 | 2009 |
Intracellular zinc fluctuations modulate protein tyrosine phosphatase activity in insulin/insulin-like growth factor-1 signaling H Haase, W Maret Experimental cell research 291 (2), 289-298, 2003 | 333 | 2003 |
Dual nanomolar and picomolar Zn (II) binding properties of metallothionein A Krȩżel, W Maret Journal of the American Chemical Society 129 (35), 10911-10921, 2007 | 327 | 2007 |
Zinc metallothionein imported into liver mitochondria modulates respiration B Ye, W Maret, BL Vallee Proceedings of the National Academy of Sciences 98 (5), 2317-2322, 2001 | 299 | 2001 |
Total iron measurement in human serum with a novel smartphone-based assay M Serhan, D Jackemeyer, M Long, M Sprowls, ID Perez, W Maret, F Chen, ... IEEE Journal of Translational Engineering in Health and Medicine 8, 1-9, 2020 | 295 | 2020 |