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J Biosci Bioeng ; 123(2): 230-238, 2017 Feb.
Article in English | MEDLINE | ID: mdl-27618533

ABSTRACT

To investigate the binding properties of a peptide sequence, we conducted principal component analysis (PCA) of the physicochemical features of a tetramer peptide library comprised of 512 peptides, and the variables were reduced to two principal components. We selected IL-2 and IgG as model proteins and the binding affinity to these proteins was assayed using the 512 peptides mentioned above. PCA of binding affinity data showed that 16 and 18 variables were suitable for localizing IL-2 and IgG high-affinity binding peptides, respectively, into a restricted region of the PCA plot. We then investigated whether the binding affinity of octamer peptide libraries could be predicted using the identified region in the tetramer PCA. The results show that octamer high-affinity binding peptides were also concentrated in the tetramer high-affinity binding region of both IL-2 and IgG. The average fluorescence intensity of high-affinity binding peptides was 3.3- and 2.1-fold higher than that of low-affinity binding peptides for IL-2 and IgG, respectively. We conclude that PCA may be used to identify octamer peptides with high- or low-affinity binding properties from data from a tetramer peptide library.


Subject(s)
Immunoglobulin G , Interleukin-2 , Oligopeptides/metabolism , Principal Component Analysis , Amino Acid Sequence , Immunoglobulin G/chemistry , Immunoglobulin G/metabolism , Interleukin-2/chemistry , Interleukin-2/metabolism , Molecular Sequence Data , Oligopeptides/chemistry , Peptide Library , Protein Binding , Substrate Specificity
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