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Dissertation
Modifications de la composition protéique sarcoplasmique de divers muscles de rat sous l'influence d'un entraînement en endurance (natation en eau tiède)
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Year: 1975 Publisher: Liège : Université de Liège. Faculté de Médecine. Institut supérieur d'éducation physique,

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Dissertation
Comparaison des réticulums sarcoplasmiques des muscles blancs et rouges de carpe
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Year: 1983 Publisher: Liège : Université de Liège. Faculté de Médecine. Institut supérieur d'éducation physique,

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Dissertation
Comparaison des reticulums sarcoplasmiques d'Oreochromis Niloticus (poisson d'eau chaude) et de Perca Fluviatilis (poisson d'eau froide)
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Year: 1987 Publisher: Liège : Université de Liège. Faculté de Médecine. Institut supérieur d'éducation physique,

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The sarcoplasmic reticulum : transport and energy transduction
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ISBN: 0471050253 Year: 1981 Publisher: New York (N.Y.): Wiley

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Dissertation
Structure and mechanism of the sarcoplasmic reticulum Ca² + pump : an appraisal of the role of subunit interaction
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Year: 1990 Publisher: Aarhus Institute of physiology. University of Aarhus

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Cardiac sarcoplasmic reticulum function and regulation of contractility
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ISBN: 1573311308 Volume: 853


Dissertation
Isolement et caractérisation de la calci-protéine sarcoplasmique des muscles de NEREIS VIRENS
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Year: 1980 Publisher: Liège : Université de Liège. Faculté de Médecine. Institut supérieur d'éducation physique,

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Dissertation
Effects of the thyroid status on the sarcoplasmic reticulum in skeletal muscle of the rat
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Year: 1985 Publisher: 's-Gravenhage Pasmans

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Book
Protein Adsorption and Conformational Changes
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Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Protein adsorption to solids, nanomaterials, and biological surfaces is of central interest in many fields, including biomedicine, bioanalytical chemistry, materials engineering, bio-nanotechnology, and basic biomolecular research. Although protein adsorption may sometimes occur with little consequence on molecular structure, interactions with surfaces frequently cause changes in local or global conformations and dynamics, perturbations to secondary structures or tertiary folds, eventually resulting in dramatically altered protein function. Importantly, surfaces may trigger protein misfolding and self-aggregation, or, conversely, promote protein structure formation. The use of nanoscale surfaces to remodel the conformational landscape and the aggregation pathways of amyloidogenic peptides and proteins has been proposed as a promising strategy against several severe human diseases. The rapid growth of applications and technological innovation which is based on or concerned with protein adsorption necessitates renewed efforts to provide molecular-level insights into adsorption-induced protein structural perturbations. In this Special Issue, we gathered the recent findings of experimental and computational investigations that contributed novel insights into protein adsorption with a focus on the structural and dynamic aspects of proteins.


Book
Protein Adsorption and Conformational Changes
Author:
Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

Protein adsorption to solids, nanomaterials, and biological surfaces is of central interest in many fields, including biomedicine, bioanalytical chemistry, materials engineering, bio-nanotechnology, and basic biomolecular research. Although protein adsorption may sometimes occur with little consequence on molecular structure, interactions with surfaces frequently cause changes in local or global conformations and dynamics, perturbations to secondary structures or tertiary folds, eventually resulting in dramatically altered protein function. Importantly, surfaces may trigger protein misfolding and self-aggregation, or, conversely, promote protein structure formation. The use of nanoscale surfaces to remodel the conformational landscape and the aggregation pathways of amyloidogenic peptides and proteins has been proposed as a promising strategy against several severe human diseases. The rapid growth of applications and technological innovation which is based on or concerned with protein adsorption necessitates renewed efforts to provide molecular-level insights into adsorption-induced protein structural perturbations. In this Special Issue, we gathered the recent findings of experimental and computational investigations that contributed novel insights into protein adsorption with a focus on the structural and dynamic aspects of proteins.

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