Related ArticlesHigh pressure (31)P NMR spectroscopy on guanine nucleotides.
J Biomol NMR. 2016 Dec 23;:
Authors: Spoerner M, Karl M, Lopes P, Hoering M, Loeffel K, Nuehs A, Adelsberger J, Kremer W, Kalbitzer HR
Abstract
The (31)P NMR pressure response of guanine nucleotides bound to proteins has been studied in the past for characterizing the pressure perturbation of conformational equilibria. The pressure response of the (31)P NMR chemical shifts of the phosphate groups of GMP, GDP, and GTP as well as the commonly used GTP analogs GppNHp, GppCH2p and GTP?S was measured in the absence and presence of Mg(2+)-ions within a pressure range up to 200*MPa. The pressure dependence of chemical shifts is clearly non-linear. For all nucleotides a negative first order pressure coefficient B 1 was determined indicating an upfield shift of the resonances with pressure. With exception of the ?-phosphate group of Mg(2+)·GMP and Mg(2+)·GppNHp the second order pressure coefficients are positive. To describe the data of Mg(2+)·GppCH2p and GTP?S a Taylor expansion of 3rd order is required. For distinguishing pH effects from pressure effects a complete pH titration set is presented for GMP, as well as GDP and GTP in absence and presence of Mg(2+) ions using indirect referencing to DSS under identical experimental conditions. By a comparison between high pressure (31)P NMR data on free Mg(2+)-GDP and Mg(2+)-GDP in complex with the proto-oncogene Ras we demonstrate that pressure induced changes in chemical shift are clearly different between both forms.
PMID: 28012125 [PubMed - as supplied by publisher]
High pressure 31 P NMR spectroscopy on guanine nucleotides
High pressure 31 P NMR spectroscopy on guanine nucleotides
Abstract
The 31P NMR pressure response of guanine nucleotides bound to proteins has been studied in the past for characterizing the pressure perturbation of conformational equilibria. The pressure response of the 31P NMR chemical shifts of the phosphate groups of GMP, GDP, and GTP as well as the commonly used GTP analogs GppNHp, GppCH2p and GTPγS was measured in the absence and presence of Mg2+-ions within a pressure range up to 200Â*MPa. The pressure dependence of chemical shifts is clearly...
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12-24-2016 08:34 AM
[NMR paper] Solid-state 31P NMR investigation on the status of guanine nucleotides in paclitaxel-stabilized microtubules.
Solid-state 31P NMR investigation on the status of guanine nucleotides in paclitaxel-stabilized microtubules.
http://www.bionmr.com//www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--media.wiley.com-assets-7315-19-Wiley_FullText_120x30_orange.png Related Articles Solid-state 31P NMR investigation on the status of guanine nucleotides in paclitaxel-stabilized microtubules.
Magn Reson Chem. 2015 May;53(5):330-6
Authors: Lee GH, Oh SY, Yeo KJ, Ferdous T, Cho M, Paik Y
Abstract
Microtubule dynamics is a target for many chemotherapeutic...
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01-09-2016 04:06 PM
[NMR paper] The Energetics of a Three-State Protein Folding System Probed by High-Pressure Relaxation Dispersion NMR Spectroscopy.
The Energetics of a Three-State Protein Folding System Probed by High-Pressure Relaxation Dispersion NMR Spectroscopy.
Related Articles The Energetics of a Three-State Protein Folding System Probed by High-Pressure Relaxation Dispersion NMR Spectroscopy.
Angew Chem Int Ed Engl. 2015 Sep 14;54(38):11157-11161
Authors: Tugarinov V, Libich DS, Meyer V, Roche J, Clore GM
Abstract
The energetic and volumetric properties of a three-state protein folding system, comprising a metastable triple mutant of the Fyn SH3 domain, have been...
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09-10-2015 02:01 PM
[NMR paper] High Pressure NMR Spectroscopy.
High Pressure NMR Spectroscopy.
Related Articles High Pressure NMR Spectroscopy.
Subcell Biochem. 2015;72:707-721
Authors: Akasaka K
Abstract
The combination of high-resolution NMR spectroscopy with pressure perturbation, known as variable-pressure NMR spectroscopy or simply high pressure NMR spectroscopy, is a relatively recent accomplishment, but is a technique expanding rapidly with high promise in future. The importance of the method is that it allows, for the first time in history, a systematic means of detecting and...
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07-16-2015 11:21 AM
[NMR paper] Distinct conformational states of the Alzheimer ?-amyloid peptide can be detected by high-pressure NMR spectroscopy.
Distinct conformational states of the Alzheimer ?-amyloid peptide can be detected by high-pressure NMR spectroscopy.
http://www.bionmr.com//www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--media.wiley.com-assets-2250-98-WileyOnlineLibrary-Button_120x27px_FullText.gif Related Articles Distinct conformational states of the Alzheimer ?-amyloid peptide can be detected by high-pressure NMR spectroscopy.
Angew Chem Int Ed Engl. 2013 Aug 19;52(34):8943-7
Authors: Munte CE, Beck Erlach M, Kremer W, Koehler J, Kalbitzer HR
PMID: 23843225
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[NMR paper] Impact of Hydrostatic Pressure on an Intrinsically Disordered Protein: A High-Pressure NMR Study of ?-Synuclein.
Impact of Hydrostatic Pressure on an Intrinsically Disordered Protein: A High-Pressure NMR Study of ?-Synuclein.
Related Articles Impact of Hydrostatic Pressure on an Intrinsically Disordered Protein: A High-Pressure NMR Study of ?-Synuclein.
Chembiochem. 2013 Jun 28;
Authors: Roche J, Ying J, Maltsev AS, Bax A
Abstract
The impact of pressure on the backbone (15) N, (1) H and (13) C chemical shifts in N-terminally acetylated ?-synuclein has been evaluated over a pressure range 1-2500 bar. Even while the chemical shifts fall very close...
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07-03-2013 01:46 PM
[NMR paper] High-pressure NMR spectroscopy for characterizing folding intermediates and denatured
High-pressure NMR spectroscopy for characterizing folding intermediates and denatured states of proteins.
Related Articles High-pressure NMR spectroscopy for characterizing folding intermediates and denatured states of proteins.
Methods. 2004 Sep;34(1):133-43
Authors: Kamatari YO, Kitahara R, Yamada H, Yokoyama S, Akasaka K
Extensive structural studies using high-pressure NMR spectroscopy have recently been carried out on proteins, which potentially contribute to our understanding of the mechanisms of protein folding. Pressure shifts the...
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11-24-2010 10:01 PM
[NMR images] High pressure NMR spectroscopy
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1/11/2010 8:48:44 AM GMT
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