Rapid resonance assignment is a key requirement in structural genomics research by NMR. In this context we present here two new pulse sequences, namely, HNN-A and HN(C)N-A that have been developed by simple modification of the previously described pulse sequences, HNN and HN(C)N [S.C. Panchal, N.S. Bhavesh, R.V. Hosur, Improved 3D triple resonance experiments, HNN and HN(C)N, for HN and 15N sequential correlations in (13C, 15N) labeled proteins: application to unfolded proteins, J. Biomol. NMR, 20 (2001) 135-147]. These increase the number of start/check points in HNN and/or HN(C)N spectra and hence help in pacing up resonance assignment in proteins
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
Recently it has been convincingly demonstrated that 3D triple-resonance NMR provides a practical alt...
A three-dimensional nuclear magnetic resonance (NMR) pulse sequence named as hNCOcanH has been descr...
A novel protocol, based on the HN(C)N experiment, has been developed for rapid assignment of backbon...
Two triple resonance experiments, HNN and HN(C)N, are presented which correlate HN and 15N resonance...
Time-saving in data acquisition is a major thrust of NMR pulse sequence development in the context o...
Time-saving in data acquisition is a major thrust of NMR pulse sequence development in the context o...
Sequence specific resonance assignment is the primary requirement for all investigations of proteins...
We describe here the tunability of the HNN experiment to obtain certain residue specific peak patter...
We describe here a simple modification of the HN(C)N experiment for the generation of serine/threoni...
Sequence-specific assignments of the backbone resonances of proteins form the basis for further stud...
We recently described a triple resonance experiment, HN(C)N, for sequential correlation of HN and 15...
NMR spectroscopy is by far the most versatile and information rich technique to study intrinsically ...
While nuclear magnetic resonance (NMR) has had commendable success in atomic-level investigation of ...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
Recently it has been convincingly demonstrated that 3D triple-resonance NMR provides a practical alt...
A three-dimensional nuclear magnetic resonance (NMR) pulse sequence named as hNCOcanH has been descr...
A novel protocol, based on the HN(C)N experiment, has been developed for rapid assignment of backbon...
Two triple resonance experiments, HNN and HN(C)N, are presented which correlate HN and 15N resonance...
Time-saving in data acquisition is a major thrust of NMR pulse sequence development in the context o...
Time-saving in data acquisition is a major thrust of NMR pulse sequence development in the context o...
Sequence specific resonance assignment is the primary requirement for all investigations of proteins...
We describe here the tunability of the HNN experiment to obtain certain residue specific peak patter...
We describe here a simple modification of the HN(C)N experiment for the generation of serine/threoni...
Sequence-specific assignments of the backbone resonances of proteins form the basis for further stud...
We recently described a triple resonance experiment, HN(C)N, for sequential correlation of HN and 15...
NMR spectroscopy is by far the most versatile and information rich technique to study intrinsically ...
While nuclear magnetic resonance (NMR) has had commendable success in atomic-level investigation of ...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
Sequence specific resonance assignment constitutes an important step towards high-resolution structu...
Recently it has been convincingly demonstrated that 3D triple-resonance NMR provides a practical alt...