Javascript must be enabled to continue!
Keeping PASE with WEFT: SHWEFT–PASE pulse sequences for 1H NMR spectra of highly paramagnetic molecules
View through CrossRef
Metalloproteins are a category of biomolecules in which the metal site is usually the locus of activity or function. In many cases, the metal ions are paramagnetic or have accessible paramagnetic states, many of which can be studied using NMR spectroscopy. Extracting useful information from 1H NMR spectra of highly paramagnetic proteins can be difficult because the paramagnetism leads to large resonance shifts (~400 ppm), extremely broad lines, extreme baseline nonlinearity, and peak shape distortion. It is demonstrated that employing polychromatic and adiabatic shaped pulses in simple pulse sequences, then combining existing sequences, leads to significant spectral improvement for highly paramagnetic proteins. These sequences employ existing technology, with available hardware, and are of short duration to accommodate short nuclear T1 and T2. They are shown to display uniform excitation over large spectral widths (~75 kHz), accommodate high repetition rates, produce flat baselines over 75 kHz while maintaining peak shape fidelity, and can be used to reduce spectral dynamic range. High‐spin (S = 5/2) metmyoglobin, a prototypical highly paramagnetic protein, was used as the test molecule. The resulting one‐dimensional (1D) pulse sequences combine shaped pulses with super‐water elimination Fourier transform, which can be further combined with paramagnetic spectroscopy to give shaped pulses with super‐water elimination Fourier transform–paramagnetic spectroscopy. These sequences require, at most, direct current offset correction and minimal phasing. The performance of these sequences in simple 1H 1D, 1D NOE, and two‐dimensional NOESY experiments is demonstrated for metmyoglobin and Paracoccus denitrificans Co2+‐amicyanin (S = 3/2), and employed to make new heme hyperfine resonance assignments for high‐spin metBjFixLH151–256, the heme sensing domain of Bradyrhizobium japonicum FixL. Copyright © 2013 John Wiley & Sons, Ltd.
Title: Keeping PASE with WEFT: SHWEFT–PASE pulse sequences for 1H NMR spectra of highly paramagnetic molecules
Description:
Metalloproteins are a category of biomolecules in which the metal site is usually the locus of activity or function.
In many cases, the metal ions are paramagnetic or have accessible paramagnetic states, many of which can be studied using NMR spectroscopy.
Extracting useful information from 1H NMR spectra of highly paramagnetic proteins can be difficult because the paramagnetism leads to large resonance shifts (~400 ppm), extremely broad lines, extreme baseline nonlinearity, and peak shape distortion.
It is demonstrated that employing polychromatic and adiabatic shaped pulses in simple pulse sequences, then combining existing sequences, leads to significant spectral improvement for highly paramagnetic proteins.
These sequences employ existing technology, with available hardware, and are of short duration to accommodate short nuclear T1 and T2.
They are shown to display uniform excitation over large spectral widths (~75 kHz), accommodate high repetition rates, produce flat baselines over 75 kHz while maintaining peak shape fidelity, and can be used to reduce spectral dynamic range.
High‐spin (S = 5/2) metmyoglobin, a prototypical highly paramagnetic protein, was used as the test molecule.
The resulting one‐dimensional (1D) pulse sequences combine shaped pulses with super‐water elimination Fourier transform, which can be further combined with paramagnetic spectroscopy to give shaped pulses with super‐water elimination Fourier transform–paramagnetic spectroscopy.
These sequences require, at most, direct current offset correction and minimal phasing.
The performance of these sequences in simple 1H 1D, 1D NOE, and two‐dimensional NOESY experiments is demonstrated for metmyoglobin and Paracoccus denitrificans Co2+‐amicyanin (S = 3/2), and employed to make new heme hyperfine resonance assignments for high‐spin metBjFixLH151–256, the heme sensing domain of Bradyrhizobium japonicum FixL.
Copyright © 2013 John Wiley & Sons, Ltd.
Related Results
NMR structures of paramagnetic metalloproteins
NMR structures of paramagnetic metalloproteins
1. Introduction 1681.1 Genomic annotation of metalloproteins 1681.2 Why NMR structures? 1681.3 Why paramagnetic metalloproteins? 1692. General theory 1702.1 Nuclear and electron sp...
Solid State Nuclear Magnetic Resonance of Paramagnetic Metal-Organic and -Inorganic Systems
Solid State Nuclear Magnetic Resonance of Paramagnetic Metal-Organic and -Inorganic Systems
RMN du solide en présence de centres paramagnétiques
The thesis aims at developing techniques in solid state nuclear magnetic resonance (ssNMR) of paramagnetic meta...
P107 Gastrointestinal symptoms in US patients with moderate-severe psoriasis and psoriatic arthritis
P107 Gastrointestinal symptoms in US patients with moderate-severe psoriasis and psoriatic arthritis
BACKGROUND:
In patients with psoriasis (PsO), increasing severity and the presence of psoriatic arthritis (PsA) elevate the risk of developing inflammatory bowel diseas...
Learnings from a New Slim Hole LWD NMR Technology
Learnings from a New Slim Hole LWD NMR Technology
Abstract
This paper presents recent experience with a new 4 ¾-in logging-while-drilling (LWD) nuclear magnetic resonance (NMR) tool. Data from several wells drilled ...
Key Insights from Comparing LWD and Core NMR in Heavy Oil Carbonates
Key Insights from Comparing LWD and Core NMR in Heavy Oil Carbonates
Abstract
Recent advances in LWD (logging-while-drilling) NMR (nuclear magnetic resonance) have enabled the simultaneous measurement of T1 and T2. These advances b...
Paramagnetic Organometallic ComplexesUpdate based on the original article by Daniel B. Leznoff and Garry Mund,Encyclopedia of Inorganic ChemistrySecond Edition © 2005, John Wiley & Sons, Ltd
Paramagnetic Organometallic ComplexesUpdate based on the original article by Daniel B. Leznoff and Garry Mund,Encyclopedia of Inorganic ChemistrySecond Edition © 2005, John Wiley & Sons, Ltd
AbstractThe synthesis, characterization, and reactivity of paramagnetic (or open‐shell) organometallic species are described. Many stable complexes featuring transition metals, lan...
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
Isolation, characterization of natural products dimeric amide alkaloids from roots of the Piper chaba Hunter. The synthesis of these products using intermolecular [4+2] cycloaddit...
Study on theoretical model and actual deformation of weft-knitted transfer loop based on particle constraint
Study on theoretical model and actual deformation of weft-knitted transfer loop based on particle constraint
Abstract
In order to derive the structural properties and deformation behavior of the weft-knitted transfer fabric, a multilayer spring-mass geometric circle model w...

