[ASAP] Quantitative NMR Study of Insulin-Degrading Enzyme Using Amyloid-? and HIV-1 p6 Elucidates Its Chaperone Activity
Quantitative NMR Study of Insulin-Degrading Enzyme Using Amyloid-? and HIV-1 p6 Elucidates Its Chaperone Activity
https://pubs.acs.org/na101/home/literatum/publisher/achs/journals/content/bichaw/0/bichaw.ahead-of-print/acs.biochem.1c00342/20210803/images/medium/bi1c00342_0005.gif
Biochemistry
DOI: 10.1021/acs.biochem.1c00342
http://feeds.feedburner.com/~r/acs/bichaw/~4/rYtDmRoWk6c
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nmrlearner
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08-04-2021 02:34 PM
[ASAP] Methyl-Based NMR Spectroscopy Methods for Uncovering Structural Dynamics in Large Proteins and Protein Complexes
Methyl-Based NMR Spectroscopy Methods for Uncovering Structural Dynamics in Large Proteins and Protein Complexes
https://pubs.acs.org/appl/literatum/publisher/achs/journals/content/bichaw/0/bichaw.ahead-of-print/acs.biochem.8b00953/20181026/images/medium/bi-2018-00953s_0006.gif
Biochemistry
DOI: 10.1021/acs.biochem.8b00953
http://feeds.feedburner.com/~ff/acs/bichaw?d=yIl2AUoC8zA
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11-25-2018 06:02 AM
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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05-30-2016 01:15 PM
[NMR paper] NMR profiling of biomolecules at natural abundance using 2D (1)H-(15)N and (1)H-(13)C multiplicity-separated (MS) HSQC spectra.
NMR profiling of biomolecules at natural abundance using 2D (1)H-(15)N and (1)H-(13)C multiplicity-separated (MS) HSQC spectra.
NMR profiling of biomolecules at natural abundance using 2D (1)H-(15)N and (1)H-(13)C multiplicity-separated (MS) HSQC spectra.
J Magn Reson. 2014 Dec 4;251C:65-70
Authors: Chen K, Freedberg DI, Keire DA
Abstract
2D NMR (1)H-X (X=(15)N or (13)C) HSQC spectra contain cross-peaks for all XHn moieties. Multiplicity-edited(1)H-(13)C HSQC pulse sequences generate opposite signs between peaks of CH2 and...
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01-07-2015 11:26 AM
[NMR paper] NMR profiling of biomolecules at natural abundance using 2D 1H-15N and 1H-13C multiplicity-separated (MS) HSQC spectra
NMR profiling of biomolecules at natural abundance using 2D 1H-15N and 1H-13C multiplicity-separated (MS) HSQC spectra
Publication date: Available online 4 December 2014
Source:Journal of Magnetic Resonance</br>
Author(s): Kang Chen , Darón I. Freedberg , David A. Keire</br>
2D NMR 1H-X (X=15N or 13C) HSQC spectra contain cross-peaks for all XHn moieties. Multiplicity-edited 1H-13C HSQC pulse sequences generate opposite signs between peaks of CH2 and CH/CH3 at a cost of lower signal-to-noise due to the 13C T2 relaxation during an additional 1/1 J CH period. Such...
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12-08-2014 01:05 PM
Journal Highlight: 1H and 13C NMR-based sugar profiling with chemometric analysis and antioxidant activity of herbhoneys and honeys
Journal Highlight: 1H and 13C NMR-based sugar profiling with chemometric analysis and antioxidant activity of herbhoneys and honeys
http://www.spectroscopynow.com/common/images/thumbnails/1447e6dff3b.jpg1H and 13C NMR spectroscopy coupled with chemometric analysis (PCA and PLS-DA) and antioxidant assays were used to study 25 samples of Polish herbhoneys and honeys.
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03-03-2014 04:55 PM
[NMR paper] Assignment of the natural abundance 13C spectrum of proteins using 13C 1H-detected he
Assignment of the natural abundance 13C spectrum of proteins using 13C 1H-detected heteronuclear multiple-bond correlation NMR spectroscopy: structural information and stereospecific assignments from two- and three-bond carbon-hydrogen coupling constants.
Related Articles Assignment of the natural abundance 13C spectrum of proteins using 13C 1H-detected heteronuclear multiple-bond correlation NMR spectroscopy: structural information and stereospecific assignments from two- and three-bond carbon-hydrogen coupling constants.
Biochemistry. 1991 Oct 29;30(43):10457-66
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