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The Journal of Biological Chemistry|October 6, 2000
Mechanism of Cu,Zn-superoxide dismutase activation by the human metallochaperone hCCST D Rae, A S Torres, R A Pufahl, et al.Biochemistry|May 1, 2001
Solution structure of the Cu(I) and apo forms of the yeast metallochaperone, Atx1F Arnesano, L Banci, I Bertini, et al.The Journal of Biological Chemistry|June 16, 2001
The independent cue and cus systems confer copper tolerance during aerobic and anaerobic growth in Escherichia coliF W Outten, D L Huffman, J A Hale, et al.The Journal of Biological Chemistry|November 18, 2000
Solution structure of the yeast copper transporter domain Ccc2a in the apo and Cu(I)-loaded statesL Banci, I Bertini, S Ciofi-Baffoni, et al.Biochemistry|December 21, 1993
Evidence for retention of biological activity of a non-heme iron enzyme adsorbed on a silver colloid: a surface-enhanced resonance Raman scattering studyJ B Broderick, M J Natan, T V O'Halloran, et al.Biochemistry|August 29, 2001
Characterization of the metal receptor sites in Escherichia coli Zur, an ultrasensitive zinc(II) metalloregulatory proteinC E Outten, D A Tobin, J E Penner-Hahn, et al.The EMBO Journal|February 1, 1993
Construction and characterization of a mercury-independent MerR activator (MerRAC): transcriptional activation in the absence of Hg(II) is accompanied by DNA distortionJ Parkhill, A Z Ansari, J G Wright, et al.The Journal of Biological Chemistry|April 4, 1997
A role for the Saccharomyces cerevisiae ATX1 gene in copper trafficking and iron transportS J Lin, R A Pufahl, A Dancis, et al.Cell|January 13, 1989
The MerR heavy metal receptor mediates positive activation in a topologically novel transcription complexT V O'Halloran, B Frantz, M K Shin, et al.Biochemistry|June 3, 1999
The ferric uptake regulation (Fur) repressor is a zinc metalloproteinE W Althaus, C E Outten, K E Olson, et al.Pageof 5