Literature DB >> 19842628

Selective characterization of microsecond motions in proteins by NMR relaxation.

D Flemming Hansen1, Haniqiao Feng, Zheng Zhou, Yawen Bai, Lewis E Kay.   

Abstract

The three-dimensional structures of macromolecules fluctuate over a wide range of time-scales. Separating the individual dynamic processes according to frequency is of importance in relating protein motions to biological function and stability. We present here a general NMR method for the specific characterization of microsecond motions at backbone positions in proteins even in the presence of other dynamics such as large-amplitude nanosecond motions and millisecond chemical exchange processes. The method is based on measurement of relaxation rates of four bilinear coherences and relies on the ability of strong continuous radio frequency fields to quench millisecond chemical exchange. The utility of the methodology is demonstrated and validated through two specific examples focusing on the thermo-stable proteins, ubiquitin and protein L, where it is found that small-amplitude microsecond dynamics are more pervasive than previously thought. Specifically, these motions are localized to alpha helices, loop regions, and regions along the rim of beta sheets in both of the proteins examined. A third example focuses on a 28 kDa ternary complex of the chaperone Chz1 and the histones H2A.Z/H2B, where it is established that pervasive microsecond motions are localized to a region of the chaperone that is important for stabilizing the complex. It is further shown that these motions can be well separated from extensive millisecond dynamics that are also present and that derive from exchange of Chz1 between bound and free states. The methodology is straightforward to implement, and data recorded at only a single static magnetic field are required.

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Year:  2009        PMID: 19842628      PMCID: PMC7386800          DOI: 10.1021/ja906842s

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  43 in total

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  20 in total

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Review 3.  Nucleosome structure and dynamics are coming of age.

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5.  Detection of chemical exchange in methyl groups of macromolecules.

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Review 6.  An introduction to NMR-based approaches for measuring protein dynamics.

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Journal:  Biochim Biophys Acta       Date:  2010-11-06

7.  Microsecond Protein Dynamics from Combined Bloch-McConnell and Near-Rotary-Resonance R1p Relaxation-Dispersion MAS NMR.

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8.  Protein flexibility and conformational entropy in ligand design targeting the carbohydrate recognition domain of galectin-3.

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9.  Conformational stabilization of ubiquitin yields potent and selective inhibitors of USP7.

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10.  Protein Dynamics revealed by NMR Relaxation Methods.

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