The application of infrared spectroscopy to biological samples has been made possible largely by the advent of FTIR. The advances in instrumentation which have allowed this application are well documented, however, there are still some barriers to the full utilization of this technique for biological samples such as proteins. The general objectives are to obtain spectra in the 1700 - 1600 cm -1 region, where the Amide I band is located. This broad, generally featureless, band is a complex composite of bands which are characteristic of specific types of secondary structure in the protein 1. The problems to be overcome fall into several categories. The need to work in aqueous solutions, where water has a very large absorption band at 1650 cm4...
The infrared spectrum of a solution of a protein contains bands due to both the peptide backbone and...
ABSTRACTAmide I difference spectroscopy is widely used to investigate protein function and structure...
Infrared light (IR) was first discovered by Friedrich Wilhelm Herschel in 1800. However, until 1940’...
AbstractIn this minireview, some of the new findings using infrared spectroscopy to study cytochrome...
Cytochrome P450 proteins (CYPs) are a big class of heme proteins which are involved in various metab...
The FTIR spectroscopy has been used to quantify the secondary structures of proteins, using amide I ...
Fourier transform infrared (FTIR) spectroscopy is a powerful tool for analyzing the biochemical prop...
The form of the amide I infrared absorption band provides a sensitive probe of the secondary structu...
This thesis describes the use of (FT-)IR spectroscopy in general biochemical research. In chapter 3,...
The amide I region Fourier transform infrared (FTIR) spectra of alpha-chymotrypsin have been studied...
AbstractThe position, intensity and width of bands in infrared spectra that arise from vibrational m...
119 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Fourier Transform Infrared Sp...
The paper presents a simple and robust method to determine protein secondary structure from circular...
Fourier transform infrared (FTIR) spectroscopy has been applied to the characterisation of structura...
The challenge of deriving quantitative information from the infrared spectra of proteins arises from...
The infrared spectrum of a solution of a protein contains bands due to both the peptide backbone and...
ABSTRACTAmide I difference spectroscopy is widely used to investigate protein function and structure...
Infrared light (IR) was first discovered by Friedrich Wilhelm Herschel in 1800. However, until 1940’...
AbstractIn this minireview, some of the new findings using infrared spectroscopy to study cytochrome...
Cytochrome P450 proteins (CYPs) are a big class of heme proteins which are involved in various metab...
The FTIR spectroscopy has been used to quantify the secondary structures of proteins, using amide I ...
Fourier transform infrared (FTIR) spectroscopy is a powerful tool for analyzing the biochemical prop...
The form of the amide I infrared absorption band provides a sensitive probe of the secondary structu...
This thesis describes the use of (FT-)IR spectroscopy in general biochemical research. In chapter 3,...
The amide I region Fourier transform infrared (FTIR) spectra of alpha-chymotrypsin have been studied...
AbstractThe position, intensity and width of bands in infrared spectra that arise from vibrational m...
119 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Fourier Transform Infrared Sp...
The paper presents a simple and robust method to determine protein secondary structure from circular...
Fourier transform infrared (FTIR) spectroscopy has been applied to the characterisation of structura...
The challenge of deriving quantitative information from the infrared spectra of proteins arises from...
The infrared spectrum of a solution of a protein contains bands due to both the peptide backbone and...
ABSTRACTAmide I difference spectroscopy is widely used to investigate protein function and structure...
Infrared light (IR) was first discovered by Friedrich Wilhelm Herschel in 1800. However, until 1940’...