How Proteins Shape-Shift By the Hour is Central to Figuring Out How Circadian Clocks Work - Technology Networks
How Proteins Shape-Shift By the Hour is Central to Figuring Out How Circadian Clocks Work - Technology Networks
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Technology Networks
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How Proteins Shape-Shift By the Hour is Central to Figuring Out How Circadian Clocks Work
Technology Networks
Cyanobacterial circadian clock proteins are unique because they can be reconstituted within a test tube in the absence of live cells. Researchers made a solution of these proteins and...
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02-20-2018 10:04 AM
Researchers discovered that how proteins wiggle, jiggle, and shape-shift by the hour is central to figuring out how ... - Science Daily
Researchers discovered that how proteins wiggle, jiggle, and shape-shift by the hour is central to figuring out how ... - Science Daily
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Researchers discovered that how proteins wiggle, jiggle, and shape-shift by the hour is central to figuring out how ...
Science Daily
Researchers made a solution of these proteins and adenosine triphosphate (ATP), food for the proteins, to create a circadian clock that functioned for weeks. LiWang's structural biology lab uses nuclear magnetic resonance (NMR) spectroscopy, the parent ...
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02-19-2018 08:25 AM
Visualizing assemblies of the proteins that direct cyanobacterial circadian rhythms - Medical Xpress
Visualizing assemblies of the proteins that direct cyanobacterial circadian rhythms - Medical Xpress
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Medical Xpress
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Visualizing assemblies of the proteins that direct cyanobacterial circadian rhythms
Medical Xpress
They were amazed that they obtained crystals within a day of combining the proteins. They also solved an NMR structure of a complex between the active form of KaiB and the domain of a protein (CikA) that...
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03-17-2017 08:34 PM
MYC clocks on - Nature.com
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Nature.com
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MYC clocks on
Nature.com
What effect does suppression of BMAL1 by MYC-induced expression of REV-ERB proteins have on tumour cells? Nuclear magnetic resonance was used to look at specific metabolites and indicated that cells expressing high levels of MYC consumed glucose ...
MYC clocks on - Nature.com
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10-16-2015 12:49 AM
Proteins awakened from deep sleep to study their motions - Biotechin.Asia
Proteins awakened from deep sleep to study their motions - Biotechin.Asia
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Proteins awakened from deep sleep to study their motions
Biotechin.Asia
For the first time ever, scientists from PFL, IBS-Grenoble, and ENS-Lyon have captured the â??awakeningâ?? of a protein, that is to say, its gradual shift from an inert state to a functional state using an NMR spectroscopy device. The breakthrough approach ...
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06-06-2015 12:01 PM
Waking proteins up from deep sleep to study their motions - Phys.Org
Waking proteins up from deep sleep to study their motions - Phys.Org
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Waking proteins up from deep sleep to study their motions
Phys.Org
In order to carry out their functions, proteins need to move. Scientists at EPFL have developed a new technique to study motions in proteins with unprecedented accuracy. The method, which is based on NMR, freezes proteins down to immobility, then ...
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04-30-2015 09:13 PM
Review of Methods to Assign the NMR Peaks of Reductively Methylated Proteins
Review of Methods to Assign the NMR Peaks of Reductively Methylated Proteins
Publication date: Available online 28 August 2014
Source:Analytical Biochemistry</br>
Author(s): Kevin J. Roberson , Megan A. Macnaughtan</br>
Reductive methylation of lysyl side-chain amines has been a successful tool in the advancement of high resolution structural biology. The utility of this method has continuously gained ground as a protein chemical modification; first, as a tool to aid protein crystallization and later, as a probe in protein nuclear magnetic resonance (NMR)...
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08-29-2014 05:36 PM
[NMR paper] NMR structure of the KaiC-interacting C-terminal domain of KaiA, a circadian clock pr
NMR structure of the KaiC-interacting C-terminal domain of KaiA, a circadian clock protein: implications for KaiA-KaiC interaction.
Related Articles NMR structure of the KaiC-interacting C-terminal domain of KaiA, a circadian clock protein: implications for KaiA-KaiC interaction.
Proc Natl Acad Sci U S A. 2004 Feb 10;101(6):1479-84
Authors: Vakonakis I, Sun J, Wu T, Holzenburg A, Golden SS, LiWang AC
KaiA is a two-domain circadian clock protein in cyanobacteria, acting as the positive element in a feedback loop that sustains the oscillation....