Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5406793 | Journal of Magnetic Resonance | 2009 | 5 Pages |
Abstract
We present a new version of the 3D TROSY HNCO pulse scheme, referred to as HR-TROSY HNCO, with comparable resolution in the 15N dimension to a 2D 1H-15N HSQC experiment. In the conventional 3D TROSY HNCO, the constant time period (1/2JNC â¼Â 32 ms) severely limits the maximum resolution in the 15N dimension. In the HR-TROSY HNCO experiment presented here, both constant time periods (â¼32 ms each) for coherence forward and backward transfer between 15N and 13Câ² are utilized to double the 15N evolution time. This leads to a dramatic enhancement in peak separation along the 15N dimension, making the HR-TROSY HNCO an ideal pulse scheme for accurate paramagnetic relaxation enhancement and residual dipolar coupling measurements.
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Physical and Theoretical Chemistry
Authors
Kaifeng Hu, Michaeleen Doucleff, G. Marius Clore,