This paper presents an exploratory study of the binding interactions of xenon with the surface of several different proteins in the solution and solid states using both conventional and hyperpolarized (129)Xe NMR. The generation of hyperpolarized (129)Xe by spin exchange optical pumping affords an enhancement by 3-4 orders of magnitude of its NMR signal. As a result, it is possible to observe Xe directly bound to the surface of micromolar quantities of lyophilized protein. The highly sensitive nature of the (129)Xe line shape and chemical shift are used as indicators for the conditions most likely to yield maximal dipolar contact between (129)Xe nuclei and nuclear spins situated on the protein. This is an intermediate step toward achieving the ultimate goal of NMR enhancement of the binding-site nuclei by polarization transfer from hyperpolarized (129)Xe. The hyperpolarized (129)Xe spectra resulting from exposure of four different proteins in the lyophilized, powdered form have been examined for evidence of binding. Each of the proteins, namely, metmyoglobin, methemoglobin, hen egg white lysozyme, and soybean lipoxygenase, yielded a distinctly different NMR line shape. With the exception of lysozyme, the proteins all possess a paramagnetic iron center which can be expected to rapidly relax the (129)Xe and produce a net shift in its resonance position if the noble gas atom occupies specific binding sites near the iron. At temperatures from 223 to 183 K, NMR signals were observed in the 0-40 ppm chemical shift range, relative to Xe in the gas phase. The signals broadened and shifted downfield as the temperature was reduced, indicating that Xe is exchanging between the gas phase and internal or external binding sites of the proteins. Additionally, conventional (129)Xe NMR studies of metmyoglobin and lipoxygenase in the solution state are presented. The temperature dependence of the chemical shift and line shape indicate exchange of Xe between adsorption sites on lipoxygenase and Xe in the solvent on the slow to intermediate exchange time scale. The NMR results are compared with N(2), Xe, and CH(4) gas adsorption isotherms. It is found that lipoxygenase is unique among the proteins studied in possessing a relatively high affinity for gas molecules, and in addition, demonstrating the most clearly resolved adsorbed (129)Xe NMR peak in the lyophilized state.
Exploring translocation of proteins on DNA by NMR
Exploring translocation of proteins on DNA by NMR
Abstract While an extensive body of knowledge has accumulated on the structures of transcription factors, DNA and their complexes from both NMR and crystallography, much less is known at a molecular level regarding the mechanisms whereby transcription factors locate their specific DNA target site within an overwhelming sea of non-specific DNA sites. Indirect kinetic data suggested that three processes are involved in the search procedure: jumping by dissociation of the protein from the DNA followed by re-association at another site,...
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08-22-2011 05:22 AM
Exploring translocation of proteins on DNA by NMR.
Exploring translocation of proteins on DNA by NMR.
Exploring translocation of proteins on DNA by NMR.
J Biomol NMR. 2011 Aug 17;
Authors: Marius Clore G
Abstract
While an extensive body of knowledge has accumulated on the structures of transcription factors, DNA and their complexes from both NMR and crystallography, much less is known at a molecular level regarding the mechanisms whereby transcription factors locate their specific DNA target site within an overwhelming sea of non-specific DNA sites. Indirect kinetic data suggested that...
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08-19-2011 02:56 PM
Solution NMR of Polypeptides Hyperpolarized by Dynamic Nuclear Polarization.
Solution NMR of Polypeptides Hyperpolarized by Dynamic Nuclear Polarization.
Solution NMR of Polypeptides Hyperpolarized by Dynamic Nuclear Polarization.
Anal Chem. 2011 Jun 7;
Authors: Ragavan M, Chen HY, Sekar G, Hilty C
Hyperpolarization of nuclear spins through techniques such as Dynamic Nuclear Polarization (DNP) can greatly increase the signal to noise ratio in NMR measurements, thus eliminating the need for signal averaging. This enables the study of many dynamic processes which would otherwise not be amenable to study by NMR spectroscopy....
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06-10-2011 11:52 AM
Exploring NMR ensembles of calcium binding proteins: perspectives to design inhibitors of protein-protein interactions.
Exploring NMR ensembles of calcium binding proteins: perspectives to design inhibitors of protein-protein interactions.
Exploring NMR ensembles of calcium binding proteins: perspectives to design inhibitors of protein-protein interactions.
BMC Struct Biol. 2011 May 12;11(1):24
Authors: Isvoran A, Badel A, Craescu CT, Miron S, Miteva MA
ABSTRACT: BACKGROUND: Disrupting protein-protein interactions by small organic molecules is nowadays a promising strategy employed to block protein targets involved in different pathologies. However, structural...
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05-17-2011 06:21 PM
Exploring NMR ensembles of calcium binding proteins: perspectives to design ... - 7thSpace Interactive (press release)
Exploring NMR ensembles of calcium binding proteins: perspectives to design ... - 7thSpace Interactive (press release)
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Exploring NMR ensembles of calcium binding proteins: perspectives to design ...
7thSpace Interactive (press release)
We employed several scoring methods in order to find the best protein conformations. Our results show that docking on NMR structures of calmodulin and centrin can be very helpful to take into account conformational changes occurring at protein-protein ...
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05-13-2011 07:41 AM
[NMR paper] Identification of protein surfaces by NMR measurements with a pramagnetic Gd(III) che
Identification of protein surfaces by NMR measurements with a pramagnetic Gd(III) chelate.
Related Articles Identification of protein surfaces by NMR measurements with a pramagnetic Gd(III) chelate.
J Am Chem Soc. 2002 Jan 23;124(3):372-3
Authors: Pintacuda G, Otting G
Gd-diethylenetriamine pentaacetic acid-bismethylamide, Gd(DTPA-BMA), is shown to be a reagent suitable for the identification of protein surfaces. Compared to the conventionally used spin-label TEMPOL, Gd(DTPA-BMA) is a stronger relaxation agent, requiring lesser concentrations...
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11-24-2010 08:49 PM
[NMR paper] NMR identification of hydrophobic cavities with low water occupancies in protein stru
NMR identification of hydrophobic cavities with low water occupancies in protein structures using small gas molecules.
Related Articles NMR identification of hydrophobic cavities with low water occupancies in protein structures using small gas molecules.
Nat Struct Biol. 1997 May;4(5):396-404
Authors: Otting G, Liepinsh E, Halle B, Frey U
Magnetization transfer through dipole-dipole interactions (nuclear Overhauser effects, NOEs) between water protons and the protons lining two small hydrophobic cavities in hen egg-white lysozyme demonstrates...
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08-22-2010 03:31 PM
[NMR paper] NMR identification of hydrophobic cavities with low water occupancies in protein stru
NMR identification of hydrophobic cavities with low water occupancies in protein structures using small gas molecules.
Related Articles NMR identification of hydrophobic cavities with low water occupancies in protein structures using small gas molecules.
Nat Struct Biol. 1997 May;4(5):396-404
Authors: Otting G, Liepinsh E, Halle B, Frey U
Magnetization transfer through dipole-dipole interactions (nuclear Overhauser effects, NOEs) between water protons and the protons lining two small hydrophobic cavities in hen egg-white lysozyme demonstrates...