Plegamiento defectuoso de proteínas y enfermedad
University of Bergen
Bergen, NoruegaPublicaciones en colaboración con investigadores/as de University of Bergen (16)
2021
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Inhibition of the human hsc70 system by small ligands as a potential anticancer approach
Cancers, Vol. 13, Núm. 12
2013
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Screening and evaluation of small organic molecules as ClpB inhibitors and potential antimicrobials
Journal of Medicinal Chemistry, Vol. 56, Núm. 18, pp. 7177-7189
2012
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A dynamic model of long-range conformational adaptations triggered by nucleotide binding in GroEL-GroES
Proteins: Structure, Function and Bioinformatics, Vol. 80, Núm. 10, pp. 2333-2346
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The Peripheral Binding of 14-3-3γ to Membranes Involves Isoform-Specific Histidine Residues
PLoS ONE, Vol. 7, Núm. 11
2011
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Conformational sampling and nucleotide-dependent transitions of the GroEL subunit probed by unbiased molecular dynamics simulations
PLoS Computational Biology, Vol. 7, Núm. 3
2009
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Linking new paradigms in protein chemistry to reversible membrane protein interactions
Current Protein and Peptide Science, Vol. 10, Núm. 4, pp. 339-359
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Three-way interaction between 14-3-3 proteins, the N-terminal region of tyrosine hydroxylase, and negatively charged membranes
Journal of Biological Chemistry, Vol. 284, Núm. 47, pp. 32758-32769
2008
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Engineering proteins with tunable thermodynamic and kinetic stabilities
Proteins: Structure, Function and Genetics, Vol. 71, Núm. 1, pp. 165-174
2003
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Platelet-derived growth factor (PDGF)-C, a PDGF family member with a vascular endothelial growth factor-like structure
Journal of Biological Chemistry, Vol. 278, Núm. 19, pp. 17114-17120
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The interaction of peripheral proteins and membranes studied with α-lactalbumin and phospholipid bilayers of various compositions
Journal of Biological Chemistry, Vol. 278, Núm. 24, pp. 21790-21797
2002
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The binding of tyrosine hydroxylase to negatively charged lipid bilayers involves the N-terminal region of the enzyme
FEBS Letters, Vol. 519, Núm. 1-3, pp. 221-226
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The membrane-bound conformation of α-lactalbumin studied by NMR-monitored 1H exchange
Journal of Molecular Biology, Vol. 321, Núm. 1, pp. 99-110
1999
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Tyrosine hydroxylase binds tetrahydrobiopterin cofactor with negative cooperativity, as shown by kinetic analyses and surface plasmon resonance detection
European Journal of Biochemistry, Vol. 262, Núm. 3, pp. 840-849
1998
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Domain structure and stability of human phenylalanine hydroxylase inferred from infrared spectroscopy
FEBS Letters, Vol. 422, Núm. 2, pp. 225-230
1997
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The Effect of Phosphorylation at Ser-40 on the Structure and Thermal Stability of Tyrosine Hydroxylase
Advances in Pharmacology, Vol. 42, Núm. C, pp. 15-18
1996
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Conformational properties and stability of tyrosine hydroxylase studied by infrared spectroscopy: Effect of iron/catecholamine binding and phosphorylation
Journal of Biological Chemistry, Vol. 271, Núm. 33, pp. 19737-19742