Automated projection spectroscopy (APSY) is an NMR technique for the recording of discrete sets of projection spectra from higher-dimensional NMR experiments, with automatic identification of the multidimensional chemical shift correlations by the dedicated algorithm GAPRO. This paper presents technical details for optimizing the set-up and the analysis of APSY-NMR experiments with proteins. Since experience so far indicates that the sensitivity for signal detection may become the principal limiting factor for applications with larger proteins or more dilute samples, we performed an APSY-NMR experiment at the limit of sensitivity, and then investigated the effects of varying selected experimental parameters. To obtain the desired reference ...
Nuclear magnetic resonance spectroscopy of proteins (protein NMR) is a powerful analytical technique...
Nuclear magnetic resonance spectroscopy of proteins (protein NMR) is a powerful analytical technique...
With an increasing rate of protein expressions the need for fast protein characterization has become...
Automated projection spectroscopy (APSY) is an NMR technique for the recording of discrete sets of p...
Detailed structural and functional characterization of proteins by solution NMR requires sequence-sp...
High resolution nuclear magnetic resonance (NMR) spectroscopy in solution is an established techniqu...
The 6-dimensional (6D) APSY-seq-HNCOCANH NMR experiment correlates two sequentially neighboring amid...
The 6-dimensional(6D) APSY-seq-HNCOCANH NMR experiment correlates two sequentially neighbor in gamid...
A standard set of three APSY-NMR experiments has been used in daily practice to obtain polypeptide b...
A standard set of three APSY-NMR experiments has been used in daily practice to obtain polypeptide b...
International audienceA standard set of three APSY-NMR experiments has been used in daily practice t...
This paper describes an automated method for sequence-specific NMR assignment of the aliphatic reson...
The necessity to acquire large multidimensional datasets, a basis for assignment of NMR resonances, ...
This work presents the automated projection spectroscopy (APSY) method for the recording of discrete...
A novel automated approach for the sequence specific NMR assignments of 1HN, 13Cα, 13Cβ, 1...
Nuclear magnetic resonance spectroscopy of proteins (protein NMR) is a powerful analytical technique...
Nuclear magnetic resonance spectroscopy of proteins (protein NMR) is a powerful analytical technique...
With an increasing rate of protein expressions the need for fast protein characterization has become...
Automated projection spectroscopy (APSY) is an NMR technique for the recording of discrete sets of p...
Detailed structural and functional characterization of proteins by solution NMR requires sequence-sp...
High resolution nuclear magnetic resonance (NMR) spectroscopy in solution is an established techniqu...
The 6-dimensional (6D) APSY-seq-HNCOCANH NMR experiment correlates two sequentially neighboring amid...
The 6-dimensional(6D) APSY-seq-HNCOCANH NMR experiment correlates two sequentially neighbor in gamid...
A standard set of three APSY-NMR experiments has been used in daily practice to obtain polypeptide b...
A standard set of three APSY-NMR experiments has been used in daily practice to obtain polypeptide b...
International audienceA standard set of three APSY-NMR experiments has been used in daily practice t...
This paper describes an automated method for sequence-specific NMR assignment of the aliphatic reson...
The necessity to acquire large multidimensional datasets, a basis for assignment of NMR resonances, ...
This work presents the automated projection spectroscopy (APSY) method for the recording of discrete...
A novel automated approach for the sequence specific NMR assignments of 1HN, 13Cα, 13Cβ, 1...
Nuclear magnetic resonance spectroscopy of proteins (protein NMR) is a powerful analytical technique...
Nuclear magnetic resonance spectroscopy of proteins (protein NMR) is a powerful analytical technique...
With an increasing rate of protein expressions the need for fast protein characterization has become...