a<p>Peak position of the amide I band components, as deduced by the second derivative spectra.</p>b<p>Percentage area of the amide I band components, as obtained by integrating the area under each deconvoluted band.</p
<p>Secondary structure elements (%) of Polydim-I as determined by the deconvolution of CD and FTIR s...
The frequency of the so-called "amide I" band (amide C=O stretching vibration, vC=O) of proteins is ...
Prediction of protein secondary structure from FTIR spectra usually relies on the absorbance in the ...
a<p>Peak position of the amide I band components, as deduced by the second derivative spectra.</p>b<...
<p>Components of the amide I band of ReP1-NCXSQ and proportion of secondary structure determined by ...
<p>Protein fibrils obtained after one month of incubation were dissolved in 20 mM Tris·DCl, 150 mM N...
<p>Secondary structure composition of shaking-induced oligomers as determined from deconvolution and...
A-C: Rhodopsin in H20, D-F: Rhodopsin in D20: A, D: WT; B, E: N15S; and C, F: P23H. Bands assigned t...
<p>Secondary structure composition of shaking-induced fibrils as determined from deconvolution and c...
(A) Circular Dichroism and (B) FTIR spectra of DHA αSOs, HNE αSOs, aSN monomer, sonicated aSN fibril...
The FTIR spectroscopy has been used to quantify the secondary structures of proteins, using amide I ...
*<p>CD spectra for Mini-B in TFE were analyzed for secondary structure using the methods of Sreerama...
<p>(<b>A</b>) The FTIR absorption (continuous line) and second derivative spectrum (dotted line) of ...
<p>FT-IR spectra are showing Amide I and Amide II bands in the region of 1850–1250 cm<sup>-1</sup> d...
<p>A) FTIR spectra of non-pegylated Met-G-CSF and of the two isomeric Met-G-CSF-Met1-PEG and Met-G-C...
<p>Secondary structure elements (%) of Polydim-I as determined by the deconvolution of CD and FTIR s...
The frequency of the so-called "amide I" band (amide C=O stretching vibration, vC=O) of proteins is ...
Prediction of protein secondary structure from FTIR spectra usually relies on the absorbance in the ...
a<p>Peak position of the amide I band components, as deduced by the second derivative spectra.</p>b<...
<p>Components of the amide I band of ReP1-NCXSQ and proportion of secondary structure determined by ...
<p>Protein fibrils obtained after one month of incubation were dissolved in 20 mM Tris·DCl, 150 mM N...
<p>Secondary structure composition of shaking-induced oligomers as determined from deconvolution and...
A-C: Rhodopsin in H20, D-F: Rhodopsin in D20: A, D: WT; B, E: N15S; and C, F: P23H. Bands assigned t...
<p>Secondary structure composition of shaking-induced fibrils as determined from deconvolution and c...
(A) Circular Dichroism and (B) FTIR spectra of DHA αSOs, HNE αSOs, aSN monomer, sonicated aSN fibril...
The FTIR spectroscopy has been used to quantify the secondary structures of proteins, using amide I ...
*<p>CD spectra for Mini-B in TFE were analyzed for secondary structure using the methods of Sreerama...
<p>(<b>A</b>) The FTIR absorption (continuous line) and second derivative spectrum (dotted line) of ...
<p>FT-IR spectra are showing Amide I and Amide II bands in the region of 1850–1250 cm<sup>-1</sup> d...
<p>A) FTIR spectra of non-pegylated Met-G-CSF and of the two isomeric Met-G-CSF-Met1-PEG and Met-G-C...
<p>Secondary structure elements (%) of Polydim-I as determined by the deconvolution of CD and FTIR s...
The frequency of the so-called "amide I" band (amide C=O stretching vibration, vC=O) of proteins is ...
Prediction of protein secondary structure from FTIR spectra usually relies on the absorbance in the ...