13CH2-multiplet nuclear magnetic resonance relaxation studies on proline (P)-containing glycine (G)-based peptides, GP, PG, GPG, PGG, and GPGG, provided numerous dipolar auto- and cross-correlation times for various motional model analyses of backbone and proline-ring bond rotations. Molecular dynamics simulations and bond rotation energy profiles were calculated to assess which motions could contribute most to observed relaxation phenomena. Results indicate that proline restricts backbone psi 1, psi 2, and phi 2 motions by 50% relative to those found for a polyglycine control peptide. psi 1 rotations are more restricted in the trans-proline isomer state than in the cis form. A two-state jump model best approximates proline ring puckering w...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
It is important to identify proline cis/trans isomers that appear in several regulatory mechanisms o...
Proline homopolymer motifs are found in many proteins; their peculiar conformational and dynamic pro...
13CH2-multiplet nuclear magnetic resonance relaxation studies on proline (P)-containing glycine (G)-...
Abstract The spin-lattice relaxation times (T1) of carbon 13 in natural abundance were determined fo...
About a quarter of the total mass of proteins in vertebrates is collagen, so, improved knowledge of...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
Solid state deuterium (2H) NMR inversion-recovery and Jeener-Broekaert relaxation experiments were p...
The molecular motions of a 21-amino-acid glycopeptide (Gp21) containing multiple glycoforms of an N-...
New developments in nuclear magnetic resonance (NMR) relaxation spectroscopy and the availability of...
Dissolution-dynamic nuclear polarization (d-DNP) is a state-of-the-art technology that can dramatica...
Experimental NMR dataset related to the publication in Magnetic Resonance 2021 entitled: "Fluorine ...
Abstract. Proline homopolymer motifs are found in many proteins; their peculiar conformational and d...
Designed model transmembrane peptides and oriented 2H and 15N solid-state nuclear magnetic resonance...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
It is important to identify proline cis/trans isomers that appear in several regulatory mechanisms o...
Proline homopolymer motifs are found in many proteins; their peculiar conformational and dynamic pro...
13CH2-multiplet nuclear magnetic resonance relaxation studies on proline (P)-containing glycine (G)-...
Abstract The spin-lattice relaxation times (T1) of carbon 13 in natural abundance were determined fo...
About a quarter of the total mass of proteins in vertebrates is collagen, so, improved knowledge of...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
Solid state deuterium (2H) NMR inversion-recovery and Jeener-Broekaert relaxation experiments were p...
The molecular motions of a 21-amino-acid glycopeptide (Gp21) containing multiple glycoforms of an N-...
New developments in nuclear magnetic resonance (NMR) relaxation spectroscopy and the availability of...
Dissolution-dynamic nuclear polarization (d-DNP) is a state-of-the-art technology that can dramatica...
Experimental NMR dataset related to the publication in Magnetic Resonance 2021 entitled: "Fluorine ...
Abstract. Proline homopolymer motifs are found in many proteins; their peculiar conformational and d...
Designed model transmembrane peptides and oriented 2H and 15N solid-state nuclear magnetic resonance...
The internal motions of biomolecules were examined by analyzing NMR relaxation in terms of the model...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
It is important to identify proline cis/trans isomers that appear in several regulatory mechanisms o...
Proline homopolymer motifs are found in many proteins; their peculiar conformational and dynamic pro...