On-line electrogeneration of copper-peptide complexes in microspray mass spectrometry (original) (raw)

Copper(I) and copper(II) binding to β-amyloid 16 (Aβ16) studied by electrospray ionization mass spectrometry

Hubert Girault

Metallomics : integrated biometal science, 2010

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Model Studies on the Coordination of Copper in Biological Systems. The Deprotonated Peptide Nitrogen as a Potential Binding Site for Copper(II)

Peter Kroneck

European Journal of Biochemistry, 1980

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Copper-induced oligomerization of peptides: a model study

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European Mass Spectrometry, 2007

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The affinity of HGGG, GHGG, GGHG, and GGGH peptides for copper (II) and the structures of their complexes An ab initio study1

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The Contribution of Electrospray Mass Spectrometry to the Study of Metal Complexes: The Case of Copper(II)-Dipeptide Systems

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European Journal of Inorganic Chemistry, 2009

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Copper(ii) binding to Cap43 protein fragments

Henryk Kozlowski, Massimiliano Peana

Dalton Transactions, 2008

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Electrospray ionization mass spectrometric approach of conformationally- induced metal binding to oligopeptides

Ecaterina Stela Dragan

European Mass Spectrometry, 2010

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Copper and nickel binding in multi-histidinic peptide fragments

Massimiliano Peana

Journal of Inorganic Biochemistry, 2009

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Copper(ii) complex formation with a linear peptide encompassing the putative cell binding site of angiogenin

Diego La Mendola, Raffaele Bonomo

Dalton Transactions, 2010

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Solution and solid state study of copper(II) ternary complexes with some dipeptides presence in Aβ-42 peptide and methionine

Felipe Vilhena

Polyhedron, 2013

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The role of the βAsp residue in copper(II) binding by modified peptides

Hanna Czapor, Marek Cebrat

Tetrahedron Letters, 2012

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Study of Binary and Ternary Metal Complex Formation by Peptides by Solution Electrophoresis in Solution [Cu (Ii)/Ni (Ii)/Co (Ii)/Zn (Ii) – Glycyl Sarcosine -Nta-System]

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Copper-Binding Motifs: Structural and Theoretical Aspects

Charles Bock

Helvetica Chimica Acta, 2003

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Mechanistic Studies of Cu(II) Binding to Amyloid-β Peptides and the Fluorescence and Redox Behaviors of the Resulting Complexes

Hoàng Đinh

The Journal of Physical Chemistry B, 2008

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Cu and Zn Interactions with Peptides Revealed by High-Resolution Mass Spectrometry

Monica Iavorschi

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Copper(II) Interaction with Prion Peptide Fragments Encompassing Histidine Residues Within and Outside the Octarepeat Domain: Speciation, Stability Constants and Binding Details

Giovanni Micera

Chemistry - A European Journal, 2007

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Electrochemical generation of Cu(I) complexes in aqueous solutions studied by on-line mass spectrometry

Hubert Girault

Electrochemistry Communications, 2007

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EPR and potentiometric reinvestigation of copper(II) complexation with simple oligopeptides and related compounds

Giovanni Micera

Journal of Inorganic Biochemistry, 1996

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Quantification of the Binding Properties of Cu2+ to the Amyloid-Beta Peptide: Coordination Spheres for Human and Rat Peptides and Implication on Cu2+-Induced Aggregation

Lian Hong

2010

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Interaction of Cu (II) ions with a fragment of Park9 protein

Massimiliano Francesco Peana

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Complexation Abilities of Neuropeptide Gamma toward Copper(II) Ions and Products of Metal-Catalyzed Oxidation

Zbigniew Szewczuk

Inorganic Chemistry, 2011

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Design of histidine containing peptides for better understanding of their coordination mode toward copper(II) by CD spectroscopy

Erik Larsen

Journal of Inorganic Biochemistry, 2007

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Copper(II) complexes of peptide-group-containing amino acids bis(N-acetyl-l-alaninate)copper(II) complexes and their amine adducts

G. Pellacani

Journal of Inorganic and Nuclear Chemistry, 1978

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Coordination Environment of Cu(II) Ions Bound to N-Terminal Peptide Fragments of Angiogenin Protein

Massimiliano Peana

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Model peptide-based system used for the investigation of metal ions binding to histidine-containing polypeptides

Gabi Drochioiu

Biopolymers, 2010

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