[ASAP] Polyanions Cause Protein Destabilization Similar to That in Live Cells
Polyanions Cause Protein Destabilization Similar to That in Live Cells
https://pubs.acs.org/na101/home/literatum/publisher/achs/journals/content/bichaw/0/bichaw.ahead-of-print/acs.biochem.0c00889/20210226/images/medium/bi0c00889_0009.gif
Biochemistry
DOI: 10.1021/acs.biochem.0c00889
http://feeds.feedburner.com/~r/acs/bichaw/~4/GMUhclWUxd4
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nmrlearner
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02-28-2021 06:53 AM
[ASAP] Rational Design of Monodispersed Mutants of Proteins by Identifying Aggregation Contact Sites Using Solubilizing Agents
Rational Design of Monodispersed Mutants of Proteins by Identifying Aggregation Contact Sites Using Solubilizing Agents
https://pubs.acs.org/na101/home/literatum/publisher/achs/journals/content/bichaw/0/bichaw.ahead-of-print/acs.biochem.0c00414/20200921/images/medium/bi0c00414_0009.gif
Biochemistry
DOI: 10.1021/acs.biochem.0c00414
http://feeds.feedburner.com/~r/acs/bichaw/~4/04EE2_i8i74
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nmrlearner
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09-24-2020 07:17 PM
[NMR paper] Rational tuning of fluorobenzene probes for cysteine-selective protein modification
Rational tuning of fluorobenzene probes for cysteine-selective protein modification
Fluorobenzene probes for protein profiling through selective cysteine labeling have been developed by rational reactivity tuning. Tuning was achieved by selecting an electron-withdrawing para-substituent combined with variation of the number of fluorine substituents. Optimized probes chemo-selectively arylated cysteine residues in proteins under aqueous conditions. Probes linked to azide, biotin or a fluorophore were applicable to labeling of eGFP and albumin. Selective inhibition of cysteine proteases...
nmrlearner
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02-22-2018 02:48 PM
A Fluorescent Probe with Improved Water SolubilityPermits the Analysis of Protein S-DepalmitoylationActivity in Live Cells
A Fluorescent Probe with Improved Water SolubilityPermits the Analysis of Protein S-DepalmitoylationActivity in Live Cells
http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/bichaw/0/bichaw.ahead-of-print/acs.biochem.7b00835/20171018/images/medium/bi-2017-00835x_0005.gif
Biochemistry
DOI: 10.1021/acs.biochem.7b00835
http://feeds.feedburner.com/~ff/acs/bichaw?d=yIl2AUoC8zA
http://feeds.feedburner.com/~r/acs/bichaw/~4/D_OdeXwPKoc
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nmrlearner
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10-19-2017 08:03 AM
Visualizing RNA-protein Interactions in Live Human Cells - Bioscience Technology
Visualizing RNA-protein Interactions in Live Human Cells - Bioscience Technology
http://www.bionmr.com//t3.gstatic.com/images?q=tbn:ANd9GcRoPawKAwV63VcpQ8t5e9ZjpOvT0S-FLAVv5fJ1CFHJeDztic5RkQBERPvhe9MhZmtvPn17oDdy
Bioscience Technology
<img alt="" height="1" width="1">
Visualizing RNA-protein Interactions in Live Human Cells
Bioscience Technology
UAlbany chemists Alan Chen Ph.D, Maksim Royzen Ph.D, and Alex Shekhtman Ph.D have combined their labs on a collaborative project aimed at visualizing RNA-protein interactions inside live human cells by using multi-dimensional NMR (nuclear ...
nmrlearner
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06-03-2017 11:49 AM
[NMR paper] Atomic-resolution monitoring of protein maturation in live human cells by NMR.
Atomic-resolution monitoring of protein maturation in live human cells by NMR.
Atomic-resolution monitoring of protein maturation in live human cells by NMR.
Nat Chem Biol. 2013 Mar 3;
Authors: Banci L, Barbieri L, Bertini I, Luchinat E, Secci E, Zhao Y, Aricescu AR
Abstract
We use NMR directly in live human cells to describe the complete post-translational maturation process of human superoxide dismutase 1 (SOD1). We follow, at atomic resolution, zinc binding, homodimer formation and copper uptake, and discover that copper chaperone for...
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03-05-2013 03:25 PM
[NMR paper] Quantitative comparison of protein dynamics in live cells and in vitro by in-cell (19)F-NMR.
Quantitative comparison of protein dynamics in live cells and in vitro by in-cell (19)F-NMR.
Quantitative comparison of protein dynamics in live cells and in vitro by in-cell (19)F-NMR.
Chem Commun (Camb). 2013 Feb 26;
Authors: Takaoka Y, Kioi Y, Morito A, Otani J, Arita K, Ashihara E, Ariyoshi M, Tochio H, Shirakawa M, Hamachi I
Abstract
Here we describe how a (19)F-probe incorporated into an endogenous protein by a chemical biology method revealed protein dynamics. By explicit determination of ligand-bound and unbound structures with...
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02-27-2013 06:47 PM
Systematic Study of Protein Detection Mechanism of Self-Assembling 19F NMR/MRI Nanoprobes toward Rational Design and Improved Sensitivity
Systematic Study of Protein Detection Mechanism of Self-Assembling 19F NMR/MRI Nanoprobes toward Rational Design and Improved Sensitivity
Yousuke Takaoka, Keishi Kiminami, Keigo Mizusawa, Kazuya Matsuo, Michiko Narazaki, Tetsuya Matsuda and Itaru Hamachi
http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jacsat/0/jacsat.ahead-of-print/ja203996c/aop/images/medium/ja-2011-03996c_0004.gif
Journal of the American Chemical Society
DOI: 10.1021/ja203996c
http://feeds.feedburner.com/~ff/acs/jacsat?d=yIl2AUoC8zA
http://feeds.feedburner.com/~r/acs/jacsat/~4/fqTSjFalrGg