Literature DB >> 21841965

Solid-State NMR of a Large Membrane Protein by Paramagnetic Relaxation Enhancement.

Ming Tang1, Deborah A Berthold, Chad M Rienstra.   

Abstract

Membrane proteins play an important role in many biological functions. Solid-state NMR spectroscopy is uniquely suited for studying structure and dynamics of membrane proteins in a membranous environment. The major challenge to obtain high quality solid-state NMR spectra of membrane proteins is sensitivity, due to limited quantities of labeled high-molecular-weight proteins. Here we demonstrate the incorporation of paramagnetic metal (Cu(2+)) ions, through either EDTA or a chelator lipid, into membrane protein samples for rapid data collection under fast magic-angle spinning (MAS) and low power (1)H decoupling. Spectral sensitivity of DsbB (20 kDa), an integral membrane protein, more than doubles in the same experimental time due to (1)H T(1) relaxation enhancement by Cu(2+) ions, with DsbB native fold and active site intact. This technique can be implemented to acquire multidimensional solid-state NMR spectra for chemical shift assignments and structure elucidation of large membrane proteins with small sample quantities.

Entities:  

Year:  2011        PMID: 21841965      PMCID: PMC3153064          DOI: 10.1021/jz200768r

Source DB:  PubMed          Journal:  J Phys Chem Lett        ISSN: 1948-7185            Impact factor:   6.475


  32 in total

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4.  Solid-state protein-structure determination with proton-detected triple-resonance 3D magic-angle-spinning NMR spectroscopy.

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Journal:  Annu Rev Biophys       Date:  2009       Impact factor: 12.981

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Journal:  Nat Struct Mol Biol       Date:  2008-05-18       Impact factor: 15.369

7.  Spectroscopic validation of the pentameric structure of phospholamban.

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8.  NMRPipe: a multidimensional spectral processing system based on UNIX pipes.

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10.  Chemical shift referencing in MAS solid state NMR.

Authors:  Corey R Morcombe; Kurt W Zilm
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  14 in total

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Authors:  Dwaipayan Mukhopadhyay; Chitrak Gupta; Theint Theint; Christopher P Jaroniec
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2.  High-resolution paramagnetically enhanced solid-state NMR spectroscopy of membrane proteins at fast magic angle spinning.

Authors:  Meaghan E Ward; Shenlin Wang; Sridevi Krishnamurthy; Howard Hutchins; Michael Fey; Leonid S Brown; Vladimir Ladizhansky
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3.  Evolution of CPMAS under fast magic-angle-spinning at 100 kHz and beyond.

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4.  Sensitivity and resolution enhanced solid-state NMR for paramagnetic systems and biomolecules under very fast magic angle spinning.

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5.  Paramagnetic relaxation enhancement of membrane proteins by incorporation of the metal-chelating unnatural amino acid 2-amino-3-(8-hydroxyquinolin-3-yl)propanoic acid (HQA).

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6.  Structural studies of proteins by paramagnetic solid-state NMR spectroscopy.

Authors:  Christopher P Jaroniec
Journal:  J Magn Reson       Date:  2015-04       Impact factor: 2.229

7.  Gd3+-chelated lipid accelerates solid-state NMR spectroscopy of seven-transmembrane proteins.

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8.  Solid-state NMR analysis of membrane proteins and protein aggregates by proton detected spectroscopy.

Authors:  Donghua H Zhou; Andrew J Nieuwkoop; Deborah A Berthold; Gemma Comellas; Lindsay J Sperling; Ming Tang; Gautam J Shah; Elliott J Brea; Luisel R Lemkau; Chad M Rienstra
Journal:  J Biomol NMR       Date:  2012-09-18       Impact factor: 2.835

9.  Cellular solid-state NMR investigation of a membrane protein using dynamic nuclear polarization.

Authors:  Kazutoshi Yamamoto; Marc A Caporini; Sang-Choul Im; Lucy Waskell; Ayyalusamy Ramamoorthy
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10.  Acceleration of natural-abundance solid-state MAS NMR measurements on bone by paramagnetic relaxation from gadolinium-DTPA.

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Journal:  J Magn Reson       Date:  2014-05-10       Impact factor: 2.229

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