1.
Exploring the Extended Biological Functions of the Human Copper Chaperone of Superoxide Dismutase 1
by Ge, Yan
The Protein Journal, 2019-05-28, Vol.38 (4), p.463-471

2.
Adipocyte-specific disruption of ATPase copper transporting α in mice accelerates lipoatrophy
by Tao, Cong
Diabetologia, 2019-08-08, Vol.62 (12), p.2340-2353

3.
Structure to function relationships in ceruloplasmin: a 'moonlighting' protein
by Bielli, P
Cellular and molecular life sciences : CMLS, 2002-09, Vol.59 (9), p.1413-1427

4.
Basic and Clinical Aspects of Copper
by Harris, Edward D
Critical reviews in clinical laboratory sciences, 2003, Vol.40 (5), p.547-586

5.
Cellular copper transport and metabolism
by HARRIS, E. D
Annual review of nutrition, 2000, Vol.20 (1), p.291-310

6.
Evaluation of copper chaperone ATOX1 as prognostic biomarker in breast cancer
by Blockhuys, Stéphanie
Breast cancer (Tokyo, Japan), 2020-01-02, Vol.27 (3), p.505-509

7.
Superoxide Dismutases: Role in Redox Signaling, Vascular Function, and Diseases
by Fukai, Tohru
Antioxidants & redox signaling, 2011-09-15, Vol.15 (6), p.1583-1606

8.
Ceruloplasmin gene expression profile changes in the rat mammary gland during pregnancy, lactation and involution
by Platonova, Natalia A
Journal of trace elements in medicine and biology, 2017-09, Vol.43, p.126-134

9.
Copper metallochaperones
by Robinson, Nigel J
Annual review of biochemistry, 2010, Vol.79 (1), p.537-562

10.
Total parenteral nutrition induced liver pathology: an autopsy series of 24 newborn cases
by Zambrano, Eduardo
Pediatric and developmental pathology, 2004-09, Vol.7 (5), p.425-432

11.
Mechanisms for copper acquisition, distribution and regulation
by Nevitt, Tracy
Nature chemical biology, 2008-03, Vol.4 (3), p.176-185

12.
Role of divalent metals in infectious disease susceptibility and outcome
by Weiss, G
Clinical microbiology and infection, 2018-01, Vol.24 (1), p.16-23

13.
Molybdenum cofactors, enzymes and pathways
by Schwarz, Günter
Nature (London), 2009-08-13, Vol.460 (7257), p.839-847

14.
Cell-specific ATP7A transport sustains copper-dependent tyrosinase activity in melanosomes
by Sviderskaya, Elena V
Nature, 2008-08-28, Vol.454 (7208), p.1142-1146

15.
The neurotoxicity of iron, copper and manganese in Parkinson's and Wilson's diseases
by Dusek, Petr
Journal of trace elements in medicine and biology, 2015-07, Vol.31, p.193-203

16.
Facing the challenges of Cu, Fe and Zn homeostasis in plants
by Guerinot, Mary Lou
Nature chemical biology, 2009-05, Vol.5 (5), p.333-340

17.
Dietary copper and human health: Current evidence and unresolved issues
by Bost, Muriel
Journal of trace elements in medicine and biology, 2016-05, Vol.35, p.107-115

18.
Metabolic crossroads of iron and copper
by Collins, James F
Nutrition reviews, 2010-03, Vol.68 (3), p.133-147

19.
The cellular redox state as a modulator in cadmium and copper responses in Arabidopsis thaliana seedlings
by Cuypers, Ann
Journal of plant physiology, 2011, Vol.168 (4), p.309-316

20.
Coping with copper: legacy effect of copper on potential activity of soil bacteria following a century of exposure
by Nunes, Inês
FEMS microbiology ecology, 2016-11-01, Vol.92 (11), p.fiw175
