Light microscopy provides a deep look into protein structure - Phys.org - Phys.Org
Light microscopy provides a deep look into protein structure - Phys.org - Phys.Org
http://www.bionmr.com//t2.gstatic.com/images?q=tbn:ANd9GcQG69FMdjaOzVdvO8fNDx9c1t6uv0SeGKAywKjRdVRRma0SZH4sGlq9-_q3JW8xkTHitn6biYqD
Phys.Org
<img alt="" height="1" width="1">
Light microscopy provides a deep look into protein structure - Phys.org
Phys.Org
Light microscopy continues to reveal the microscopic world at an ever increasing resolution. Using a new method coined COLD, scientists at the Max Planck ...
and more »
Paramagnetic relaxation enhancement to improve sensitivity of fast NMR methods: application to intrinsically disordered proteins
Paramagnetic relaxation enhancement to improve sensitivity of fast NMR methods: application to intrinsically disordered proteins
Abstract We report enhanced sensitivity NMR measurements of intrinsically disordered proteins in the presence of paramagnetic relaxation enhancement (PRE) agents such as Ni2+-chelated DO2A. In proton-detected 1H-15N SOFAST-HMQC and carbon-detected (H-flip)13CO-15N experiments, faster longitudinal relaxation enables the usage of even shorter interscan delays. This results in higher NMR signal intensities per units of experimental time, without adverse line...
nmrlearner
Journal club
0
10-21-2011 10:04 PM
Methods of NMR structure refinement: molecular dynamics simulations improve the agree
Methods of NMR structure refinement: molecular dynamics simulations improve the agreement with measured NMR data of a C-terminal peptide of GCN4-p1.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--production.springer.de-OnlineResources-Logos-springerlink.gif Related Articles Methods of NMR structure refinement: molecular dynamics simulations improve the agreement with measured NMR data of a C-terminal peptide of GCN4-p1.
J Biomol NMR. 2010 Jul;47(3):221-35
Authors: Dolenc J, Missimer JH, Steinmetz MO, van Gunsteren WF
The C-terminal trigger...
nmrlearner
Journal club
0
09-15-2010 02:26 PM
Methods of NMR structure refinement: molecular dynamics simulations improve the agree
Abstract The C-terminal trigger sequence is essential in the coiled-coil formation of GCN4-p1; its conformational properties are thus of importance for understanding this process at the atomic level. A solution NMR model structure of a peptide, GCN4p16â??31, encompassing the GCN4-p1 trigger sequence was proposed a few years ago. Derived using a standard single-structure refinement protocol based on 172 nuclear Overhauser effect (NOE) distance restraints, 14 hydrogen-bond and 11 Ï? torsional-angle restraints, the resulting set of 20 NMR model structures exhibits regular α-helical structure....