Occupancy of a C2‐C2 type ‘Zinc‐finger’ protein domain by copper Direct observation by electrospray ionization mass spectrometry
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T. Yip | T. Hutchens | M. Allen | C. Li | C. Li
[1] T. Hutchens,et al. Differences in the conformational state of a zinc-finger DNA-binding protein domain occupied by zinc and copper revealed by electrospray ionization mass spectrometry. , 1992, Rapid communications in mass spectrometry : RCM.
[2] T. Yip,et al. Synthetic metal-binding protein surface domains for metal ion-dependent interaction chromatography. I. Analysis of bound metal ions by matrix-assisted UV laser desorption time-of-flight mass spectrometry. , 1992, Journal of chromatography.
[3] T. Hutchens,et al. Electrospray-ionization mass spectrometry for the detection of discrete peptide/metal-ion complexes involving multiple cysteine (sulfur) ligands. , 1992, Rapid communications in mass spectrometry : RCM.
[4] P. Predki,et al. Effect of replacement of "zinc finger" zinc on estrogen receptor DNA interactions. , 1992, The Journal of biological chemistry.
[5] T. Yip,et al. Peptide-metal ion interactions in solution: Detection by laser desorption time-of-flight mass spectrometry and electrospray ionization mass spectrometry† , 1992 .
[6] T. Yip,et al. Recognition of transition metal ions by peptides Identification of specific metal‐binding peptides in proteolytic digest maps by UV laser desorption time‐of‐flight mass spectrometry , 1992, FEBS letters.
[7] T. Hutchens,et al. Mass spectrometric analysis of a transition-metal-binding peptide using matrix-assisted leaser-desorption time-of-flight mass spectrometry. A demonstration of probe tip chemistry , 1992 .
[8] M. Vestal,et al. Design and performance of a novel electrospray interface , 1992, Journal of the American Society for Mass Spectrometry.
[9] T. Yip,et al. Evaluation of peptide/metal ion interactions by UV laser desorption time‐of‐flight mass spectrometry , 1991, Journal of molecular recognition : JMR.
[10] R. Kaptein. Zinc fingers: Current Opinion in Structural Biology 1991, 1:63–70 , 1991 .
[11] B. Vallee,et al. Zinc fingers, zinc clusters, and zinc twists in DNA-binding protein domains. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[12] J. Schwabe,et al. Solution structure of the DNA-binding domain of the oestrogen receptor. , 1990, Nature.
[13] T. Yip,et al. Protein interactions with immobilized transition metal ions: quantitative evaluations of variations in affinity and binding capacity. , 1990, Analytical biochemistry.
[14] T. Hutchens,et al. Ligand‐binding properties of estrogen receptor proteins after interaction with surface‐immobilized Zn(II) ions: Evidence for localized surface interactions and minimal conformational changes , 1990, Journal of molecular recognition : JMR.
[15] J. Berg. Zinc finger domains: hypotheses and current knowledge. , 1990, Annual review of biophysics and biophysical chemistry.
[16] T. Yip,et al. Multiple DNA-binding estrogen receptor forms resolved by interaction with immobilized metal ions. Identification of a metal-binding domain. , 1989, The Journal of biological chemistry.
[17] J. Fishman. Copper and endogenous mediators of estradiol action. , 1988, Biochemical and biophysical research communications.
[18] T. Hutchens,et al. Estrogen receptor interaction with immobilized metals: Differential molecular recognition of Zn2+, Cu2+ and Ni2+ and separation of receptor isoforms , 1988, Journal of molecular recognition : JMR.
[19] R. Weiner,et al. Resistance to copper toxicity of cultured hepatoma cells. Characterization of resistant cell lines. , 1986, The Journal of biological chemistry.
[20] P. Chambon,et al. Localisation of the oestradiol‐binding and putative DNA‐binding domains of the human oestrogen receptor. , 1986, The EMBO journal.
[21] A Klug,et al. Repetitive zinc‐binding domains in the protein transcription factor IIIA from Xenopus oocytes. , 1985, The EMBO journal.
[22] Douglas,et al. Nucleic Acids Research Nucleic Acids Research , 2022 .
[23] E. Diczfalusy,et al. Trace elements in the human endometrium and decidua. A multielement analysis. , 1977, Acta endocrinologica.
[24] R. Cleary,et al. Effect Of Metal Ions On The Binding Of 17β-Estradiol To Humai Endometrial Cytosol , 1977 .
[25] T. Tamaya,et al. The mechanism of action of the copper intrauterine device. , 1976, Fertility and sterility.
[26] H. N. Pawar,et al. Some gross observations of the epididymides following vasectomy: a clinical study. , 1976, Fertility and sterility.
[27] F. W. Heaton,et al. The subcellular distribution of copper, zinc and iron in liver and kidney. Changes during copper deficiency in the rat , 1974, British Journal of Nutrition.
[28] G. Ellman,et al. Tissue sulfhydryl groups. , 1959, Archives of biochemistry and biophysics.