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Molten globule
Molten-Globule’ State Accumulates in Carbonic Anhydrase Folding
State Folding of Globular Proteins
The Molten Globule Concept: 45 Years Later
DEPARTMENT of BIOLOGY Vladimir Uversky University of Southern Florida, Tampa “Intrinsic Disorder and Protein Structure-Function Continuum”
Formation of the Molten Globule-Like State of Cytochrome C Induced by N-Alkyl Sulfates at Low Concentrations
Hydration of Denatured and Molten Globule Proteins
Molten Globule Monomers in Human Superoxide Dismutase
Mechanism of Formation of a Productive Molten Globule Form of Barstar† Bhadresh R
Chapter 5 Structural Features of the Cytochrome C Molten Globule
Molten-Globule Conformation of Arc Repressor Monomers Determined By
The Nature of Protein Folding Pathways S
Folding Funnel J
Protein Tertiary Structure and the Myoglobin Phase Diagram Alexander Begun1, Alexander Molochkov1 & Antti J
Characterization of the Molten Globule Conformation of V26A Ubiquitin by Far-UV Circular Dichroic Spectroscopy and Amide Hydrogen/Deuterium Exchange
The Anti-Inflammatory Protein TNIP1 Is Intrinsically Disordered With
Potential Functions of LEA Proteins from the Brine Shrimp Artemia Franciscana - Anhydrobiosis Meets Bioinformatics
Folding and Flexibility
Discrete Intermediates Versus Molten Globule Models for Protein
Top View
Conformational Selection in the Molten Globule State of the Nuclear Coactivator Binding Domain of CBP
Milk Protein
Acid-Induced Folding of Proteins (Acid Denaturation/Molten Globule/Anion Binding/Protein Folding) Yuji Goto*, LINDA J
Salt-Induced Formation of the Molten Globule State of Cytochrome C
The Characteristics of Molten Globule States and Folding Pathways Strongly Depend on the Sequence of a Protein
New Structural Insights Into Golgi Reassembly and Stacking Protein (GRASP) in Solution Received: 30 October 2015 Luís F
Hydrodynamic Behavior of the Intrinsically Disordered Potyvirus Protein Vpg, of the Translation Initiation Factor Eif4e and of Their Binary Complex