Literature DB >> 19462391

Recent advances in solution NMR: fast methods and heteronuclear direct detection.

Isabella C Felli1, Bernhard Brutscher.   

Abstract

Today, NMR spectroscopy is the technique of choice to investigate molecular structure, dynamics, and interactions in solution at atomic resolution. A major limitation of NMR spectroscopy for the study of biological macromolecules such as proteins, nucleic acids, and their complexes, has always been its low sensitivity, a consequence of the weak magnetic spin interactions. Therefore many efforts have been invested in the last decade to improve NMR instrumentation in terms of experimental sensitivity. As a result of these efforts, the availability of high-field magnets, cryogenically cooled probes, and probably in the near future hyperpolarization techniques, the intrinsic NMR sensitivity has increased by at least one order of magnitude. Stimulated by new challenges in the life sciences, these technical improvements have triggered the development of new NMR methods for the study of molecular systems of increasing size and complexity. Herein, we focus on two examples of recently developed NMR methodologies. First, advanced multidimensional data acquisition schemes provide a speed increase of several orders of magnitude. Second, NMR methods based on the direct detection of low-gamma nuclei present a new spectroscopic tool, highly complementary to conventional NMR techniques. These new methods provide powerful new NMR tools for the study of short-lived molecules, large and intrinsically unstructured proteins, paramagnetic systems, as well as for the characterization of molecular kinetic processes at atomic resolution. These examples illustrate how NMR is continuously adapting to the new challenges in the life sciences, with the focus shifting from the characterization of single biomolecules to an integrated view of interacting molecular networks observed at varying levels of biological organization.

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Year:  2009        PMID: 19462391     DOI: 10.1002/cphc.200900133

Source DB:  PubMed          Journal:  Chemphyschem        ISSN: 1439-4235            Impact factor:   3.102


  36 in total

1.  Paramagnetic relaxation enhancement to improve sensitivity of fast NMR methods: application to intrinsically disordered proteins.

Authors:  François-Xavier Theillet; Andres Binolfi; Stamatis Liokatis; Silvia Verzini; Philipp Selenko
Journal:  J Biomol NMR       Date:  2011-10-19       Impact factor: 2.835

Review 2.  Advances in metabolomics of thyroid cancer diagnosis and metabolic regulation.

Authors:  Raziyeh Abooshahab; Morteza Gholami; Maryam Sanoie; Fereidoun Azizi; Mehdi Hedayati
Journal:  Endocrine       Date:  2019-04-01       Impact factor: 3.633

3.  Resonance assignment for a particularly challenging protein based on systematic unlabeling of amino acids to complement incomplete NMR data sets.

Authors:  Peter Bellstedt; Thomas Seiboth; Sabine Häfner; Henriette Kutscha; Ramadurai Ramachandran; Matthias Görlach
Journal:  J Biomol NMR       Date:  2013-08-14       Impact factor: 2.835

Review 4.  Sensitivity enhancement in solution NMR: emerging ideas and new frontiers.

Authors:  Jung Ho Lee; Yusuke Okuno; Silvia Cavagnero
Journal:  J Magn Reson       Date:  2014-04       Impact factor: 2.229

5.  Aliasing in reduced dimensionality NMR spectra: (3,2)D HNHA and (4,2)D HN(COCA)NH experiments as examples.

Authors:  David Pantoja-Uceda; Jorge Santoro
Journal:  J Biomol NMR       Date:  2009-10-23       Impact factor: 2.835

6.  AUTOBA: automation of backbone assignment from HN(C)N suite of experiments.

Authors:  Aditi Borkar; Dinesh Kumar; Ramakrishna V Hosur
Journal:  J Biomol NMR       Date:  2011-05-29       Impact factor: 2.835

7.  Rapid measurement of residual dipolar couplings for fast fold elucidation of proteins.

Authors:  Rodolfo M Rasia; Ewen Lescop; Javier F Palatnik; Jérôme Boisbouvier; Bernhard Brutscher
Journal:  J Biomol NMR       Date:  2011-09-14       Impact factor: 2.835

8.  A six-dimensional alpha proton detection-based APSY experiment for backbone assignment of intrinsically disordered proteins.

Authors:  Xuejun Yao; Stefan Becker; Markus Zweckstetter
Journal:  J Biomol NMR       Date:  2014-11-04       Impact factor: 2.835

Review 9.  The role of small-angle scattering in structure-based screening applications.

Authors:  Po-Chia Chen; Janosch Hennig
Journal:  Biophys Rev       Date:  2018-10-10

10.  Nitrogen detected TROSY at high field yields high resolution and sensitivity for protein NMR.

Authors:  Koh Takeuchi; Haribabu Arthanari; Ichio Shimada; Gerhard Wagner
Journal:  J Biomol NMR       Date:  2015-10-23       Impact factor: 2.835

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