Journal Highlight: Reducing the computational cost of NMR crystallography of organic powders at natural isotopic abundance with the help of 13C-13C dipolar couplings
Journal Highlight: Reducing the computational cost of NMR crystallography of organic powders at natural isotopic abundance with the help of 13C-13C dipolar couplings
13C-13C Dipolar couplings quantified on powdered theophylline at natural isotopic abundance have been used with the help of dynamic nuclear polarisation to carry out DFT-free, rapid screening of a pool of structures predicted by AIRSS.
[NMR paper] Solid-state NMR at natural isotopic abundance for the determination of conformational polymorphism - the case of designed ?-turn peptides containing di-prolines.
Solid-state NMR at natural isotopic abundance for the determination of conformational polymorphism - the case of designed ?-turn peptides containing di-prolines.
http://www.bionmr.com//www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--www.rsc.org-images-entities-char_z_RSClogo.gif Related Articles Solid-state NMR at natural isotopic abundance for the determination of conformational polymorphism - the case of designed ?-turn peptides containing di-prolines.
Chem Commun (Camb). 2017 Jan 19;53(7):1317-1320
Authors: Yarava JR, Sonti R, Kantharaju K,...
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Journal club
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03-23-2018 11:18 AM
Journal Highlight: The new face of isotopic NMR at natural abundance
Journal Highlight: The new face of isotopic NMR at natural abundance
http://www.spectroscopynow.com/common/images/thumbnails/15a8f2d5562.jpgThe main concepts, definitions, applications and improvements of NMR-based isotope analysis at natural abundance have been reviewed.
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General
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03-06-2017 01:20 PM
Journal Highlight: Authentication of the origin of sucrose-based sugar products using quantitative natural abundance 13C NMR
Journal Highlight: Authentication of the origin of sucrose-based sugar products using quantitative natural abundance 13C NMR
http://www.spectroscopynow.com/common/images/thumbnails/154eca4d25d.jpgA direct 13C nuclear magnetic resonance (NMR) method can differentiate between sucrose-based sugar products produced from sugar beet (C3 plant) and sugar cane (C4 plant), providing an alternative to isotope ratio MS.
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[NMR paper] Application of Natural Isotopic Abundance (1)H-(13)C- and (1)H-(15)N-Correlated Two-Dimensional NMR for Evaluation of the Structure of Protein Therapeutics.
Application of Natural Isotopic Abundance (1)H-(13)C- and (1)H-(15)N-Correlated Two-Dimensional NMR for Evaluation of the Structure of Protein Therapeutics.
Related Articles Application of Natural Isotopic Abundance (1)H-(13)C- and (1)H-(15)N-Correlated Two-Dimensional NMR for Evaluation of the Structure of Protein Therapeutics.
Methods Enzymol. 2016;566:3-34
Authors: Arbogast LW, Brinson RG, Marino JP
Abstract
Methods for characterizing the higher-order structure of protein therapeutics are in great demand for establishing...
Matrix-free dynamic nuclear polarization enables solid-state NMR (13)C-(13)C correlation spectroscopy of proteins at natural isotopic abundance
From The DNP-NMR Blog:
Matrix-free dynamic nuclear polarization enables solid-state NMR (13)C-(13)C correlation spectroscopy of proteins at natural isotopic abundance
Takahashi, H., S. Hediger, and G. De Paepe, Matrix-free dynamic nuclear polarization enables solid-state NMR (13)C-(13)C correlation spectroscopy of proteins at natural isotopic abundance. Chem Commun (Camb), 2013. 49(82): p. 9479-81.
http://www.ncbi.nlm.nih.gov/pubmed/24013616
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News from NMR blogs
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11-21-2013 01:14 AM
Identifying Guanosine Self Assembly at Natural Isotopic Abundance by High-Resolution 1H and 13C Solid-State NMR Spectroscopy
Identifying Guanosine Self Assembly at Natural Isotopic Abundance by High-Resolution 1H and 13C Solid-State NMR Spectroscopy
Amy L. Webber, Stefano Masiero, Silvia Pieraccini, Jonathan C. Burley, Andrew S. Tatton, Dinu Iuga, Tran N. Pham, Gian Piero Spada and Steven P. Brown
http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jacsat/0/jacsat.ahead-of-print/ja206516u/aop/images/medium/ja-2011-06516u_0007.gif
Journal of the American Chemical Society
DOI: 10.1021/ja206516u
http://feeds.feedburner.com/~ff/acs/jacsat?d=yIl2AUoC8zA...