[NMR paper] LF-NMR determination of water distribution and its relationship with protein- related properties of yak and cattle during postmortem aging
LF-NMR determination of water distribution and its relationship with protein- related properties of yak and cattle during postmortem aging
The water distribution have a profound influence on meat quality, and proteins play a critical role in water distribution. The water distribution detected with proton NMR and its relationship with protein related properties were investigated. Three populations of water were detected: bound water (T(21), P(21)), immobilized water (T(22), P(22)), and free water (T(23), P(23)). The decreased T(22) and T(23) indicated an increase in water-holding capacity...
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12-27-2023 08:40 AM
A combined rheology and time domain NMR approach for determining water distribution in protein blends
A combined rheology and time domain NMR approach for determining water distribution in protein blends
Publication date: Available online 20 April 2016
Source:Food Hydrocolloids</br>
Author(s): Birgit Dekkers, Daan W. De Kort, Katarzyna J. Grabowska, Bei Tian, Henk Van As, Atze Jan Van der Goot</br>
We present a combined time domain NMR and rheology approach to quantify the water distribution in a phase separated protein blend. The approach forms the basis for a new tool to assess the microstructural properties of phase separated biopolymer blends, making...
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04-20-2016 04:54 AM
â??Invisibleâ?? protein structure explains the power of enzymes - HealthCanal.com
â??Invisibleâ?? protein structure explains the power of enzymes - HealthCanal.com
http://www.bionmr.com//t0.gstatic.com/images?q=tbn:ANd9GcQb2mGwl_8RHF7r9wqwya-Z3hyewwbkgO1Gg2JV3b6JhiG9nk3OR84srZev2UrXbzYttnMB0zM
HealthCanal.com
<img alt="" height="1" width="1">
â??Invisibleâ?? protein structure explains the power of enzymes
HealthCanal.com
Based on major funding by Wallenberg and Kempe foundations, the NMR platform at Umeå University has access to instruments in world class. The instrumentation is a national NMR infrastructure operated in collaboration with the University of...
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07-04-2015 09:21 AM
'Invisible' protein structure explains the power of enzymes - Phys.Org
'Invisible' protein structure explains the power of enzymes - Phys.Org
http://www.bionmr.com//t3.gstatic.com/images?q=tbn:ANd9GcRJeF5G2jmoqIG-4dY1tKobWbSiwmf4FmwBqublhTOiHh6zkZAYoKD-5N0dKxqGaUYjP_yL-4s
Phys.Org
<img alt="" height="1" width="1">
'Invisible' protein structure explains the power of enzymes
Phys.Org
The discovery has been made possible thanks to a broad scientific approach where numerous advanced biophysical techniques have been used; Nuclear Magnetic Resonance (NMR) and x-ray crystallography being the main techniques. "One of the ...
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07-03-2015 07:40 PM
[NMR paper] Interpretation of NMR relaxation properties of Pin1, a two-domain protein, based on B
Interpretation of NMR relaxation properties of Pin1, a two-domain protein, based on Brownian dynamic simulations.
Related Articles Interpretation of NMR relaxation properties of Pin1, a two-domain protein, based on Brownian dynamic simulations.
J Biomol NMR. 2004 May;29(1):21-35
Authors: Bernadó P, Fernandes MX, Jacobs DM, Fiebig K, García de la Torre J, Pons M
Many important proteins contain multiple domains connected by flexible linkers. Inter-domain motion is suggested to play a key role in many processes involving molecular recognition....
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11-24-2010 09:51 PM
[NMR paper] Bound water in apo and holo bovine heart fatty-acid-binding protein determined by het
Bound water in apo and holo bovine heart fatty-acid-binding protein determined by heteronuclear NMR spectroscopy.
Related Articles Bound water in apo and holo bovine heart fatty-acid-binding protein determined by heteronuclear NMR spectroscopy.
Eur J Biochem. 1998 Feb 1;251(3):781-6
Authors: Mesgarzadeh A, Pfeiffer S, Engelke J, Lassen D, Rüterjans H
Two- and three-dimensional heteronuclear NMR experiments have been performed to identify internally bound water molecules in the solution structure of bovine heart fatty-acid-binding protein...