Efficient oxidative folding and site-specific labeling of human hepcidin to study its interaction with receptor ferroportin
Published 2012 View Full Article
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Title
Efficient oxidative folding and site-specific labeling of human hepcidin to study its interaction with receptor ferroportin
Authors
Keywords
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Journal
FEBS Journal
Volume 279, Issue 17, Pages 3166-3175
Publisher
Wiley
Online
2012-07-09
DOI
10.1111/j.1742-4658.2012.08695.x
References
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Note: Only part of the references are listed.- Molecular Mechanism of Hepcidin-Mediated Ferroportin Internalization Requires Ferroportin Lysines, Not Tyrosines or JAK-STAT
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- (2010) Jingwen Zhang et al. BIOPOLYMERS
- Two to Tango: Regulation of Mammalian Iron Metabolism
- (2010) Matthias W. Hentze et al. CELL
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- Click Chemistry and Bioorthogonal Reactions: Unprecedented Selectivity in the Labeling of Biological Molecules
- (2009) Michael D. Best BIOCHEMISTRY
- Hepcidin, the iron watcher
- (2009) Lydie Viatte et al. BIOCHIMIE
- The molecular basis of hepcidin-resistant hereditary hemochromatosis
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- To be Excluded or to Bind, that is the Question: Arginine Effects on Proteins
- (2009) Makoto Nakakido et al. CURRENT PHARMACEUTICAL BIOTECHNOLOGY
- Suppression of Protein Aggregation by L-Arginine
- (2009) Christian Lange et al. CURRENT PHARMACEUTICAL BIOTECHNOLOGY
- Hepcidin Revisited, Disulfide Connectivity, Dynamics, and Structure
- (2009) John B. Jordan et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Iron regulatory and bactericidal properties of human recombinant hepcidin expressed in Pichia pastoris
- (2008) Vasiliki Koliaraki et al. BIOCHIMIE
- RETRACTED: The Hepcidin-Binding Site on Ferroportin Is Evolutionarily Conserved
- (2008) Ivana De Domenico et al. Cell Metabolism
- Production of biologically active forms of recombinant hepcidin, the iron-regulatory hormone
- (2008) Bruno Gagliardo et al. FEBS Journal
- Folding of Conotoxins: Formation of the Native Disulfide Bridges During Chemical Synthesis and Biosynthesis of Conus Peptides
- (2007) Grzegorz Bulaj et al. ANTIOXIDANTS & REDOX SIGNALING
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