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Primary Structure Effects on Peptide Group Hydrogen Exchange

Yawen Bai, +3 more
- 01 Sep 1993 - 
- Vol. 17, Iss: 1, pp 75-86
TLDR
The results provide the information necessary to evaluate measured protein NH to ND exchange rates by comparing them with rates to be expected for the same amino acid sequence is unstructured aligo‐ and polypeptides.
Abstract
The rate of exchange of peptide group NH hydrogens with the hydrogens of aqueous solvent is sensitive to neighboring side chains. To evaluate the effects of protein side chains, all 20 naturally occurring amino acids were studied using dipeptide models. Both inductive and steric blocking effects are apparent. The additivity of nearest-neighbor blocking and inductive effects was tested in oligo- and polypeptides and, surprisingly, confirmed. Reference rates for alanine-containing peptides were determined and effects of temperature considered. These results provide the information necessary to evaluate measured protein NH to ND exchange rates by comparing them with rates to be expected for the same amino acid sequence is unstructured oligo- and polypeptides. The application of this approach to protein studies is discussed.

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Citations
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Journal ArticleDOI

Isomerization and Oxidation in the Complementarity-Determining Regions of a Monoclonal Antibody: A Study of the Modification–Structure–Function Correlations by Hydrogen–Deuterium Exchange Mass Spectrometry

TL;DR: Direct evidence of local and global conformational changes caused by two of the most common degradation pathways in the CDRs of a mAb is revealed and correlations between chemical modification, structure, and function of the therapeutic monoclonal antibody are identified.
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Protein folding and stability investigated by fluorescence, circular dichroism (CD), and nuclear magnetic resonance (NMR) spectroscopy: the flavodoxin story.

TL;DR: In this review, the experimental results obtained on the folding and stability of Azotobacter vinelandii flavodoxin are summarised and three main spectroscopic techniques used to investigate protein fold and stability are briefly introduced.
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Factors involved in the stability of isolated β‐sheets: Turn sequence, β‐sheet twisting, and hydrophobic surface burial

TL;DR: Analysis of several NMR parameters, NOE data, as well as ΔδCαH, Δ δCβ, and ΔηCβ values, demonstrates that the new peptide forms a β‐sheet structure in aqueous solution more stable than the original one, whereas the substitution of the DPro residues by LPro leads to a random coil peptide.
Journal ArticleDOI

A model of the changes in denatured state structure underlying m value effects in staphylococcal nuclease

TL;DR: Differences in exchange protection between the C-terminus and the β-barrel region correlate with mGuHCl, suggesting that a residual barrel-like structure becomes more highly populated in the denatured states of m- mutants and less populated in m+ mutants.
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Transfer of Flexibility between Ankyrin Repeats in IκBα upon Formation of the NF-κB Complex

TL;DR: NMR studies that confirm the enhanced flexibility of ANK 5 and 6 in free IkappaB* are reported, providing a variety of examples of the structural and functional utility of intrinsically unstructured or partly folded protein domains.
References
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Journal ArticleDOI

MLEV-17-based two-dimensional homonuclear magnetization transfer spectroscopy

TL;DR: In this article, a new mixing scheme based on the MLEV-16 composite pulse decoupling cycle (II) was proposed, which is less sensitive to pulse imperfections and provides net magnetization transfer over a substantial bandwidth with only limited rf power.
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Use of glass electrodes to measure acidities in deuterium oxide1,2

TL;DR: In this article, a pH meter reading in D/sub 2/O solutions was 0-40 pH unit lower than in H/sub O solutions, attributed to the glass electrode.
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Dithiothreitol, a New Protective Reagent for SH Groups*

W. Wallace Cleland
- 01 Apr 1964 - 
TL;DR: Strominger, J. L. H. (1960), Instruction Manual and Handbook, Beckman/Spinco Model 120 Amino Acid Analyzer, Palo Alto, California,Beckman Instruments Inc., Spinco Division.
Journal ArticleDOI

A two-dimensional nuclear overhauser enhancement (2d noe) experiment for the elucidation of complete proton-proton cross-relaxation networks in biological macromolecules

TL;DR: The 2D NOE experiment has the principal advantage that it avoids detrimental effects arising from the limited selectivity of preirradiation in crowded spectral regions, and yields with a single instrument setting a complete network of NOE's between all the protons in the macromolecule.
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