Exploring Non-obvious Hydrophobic Binding Pockets on Protein Surfaces: Increasing Affinities in Peptide-Protein Interactions

被引:6
|
作者
Balliu, Aleksandra [1 ]
Baltzer, Lars [1 ]
机构
[1] Uppsala Univ, BMC, Dept Chem, POB 576, S-75123 Uppsala, Sweden
关键词
affinity enhancement; aminooctanoic acid; hydrophobic amino acids; peptide conjugation; peptides; MUSCLE GLYCOGEN-PHOSPHORYLASE; CARBONIC-ANHYDRASE-II; MOLECULAR RECOGNITION; OLEFIN METATHESIS; CRYSTAL-STRUCTURE; DRUG DISCOVERY; POLYPEPTIDES; RECEPTORS; FUTURE; DIMER;
D O I
10.1002/cbic.201700048
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A 42-residue polypeptide conjugated to a small-molecule organic ligand capable of targeting the phosphorylated side chain of Ser15 was shown to bind glycogen phosphorylase a (GPa) with a K-D value of 280 nm. The replacement of hydrophobic amino acids by Ala reduced affinities, whereas the incorporation of L-2-aminooctanoic acid (Aoc) increased them. Replacing Nle5, Ile9 and Leu12 by Aoc reduced the KD value from 280 to 27 nm. "Downsizing" the 42-mer to an undecamer gave rise to an affinity for GPa an order of magnitude lower, but the undecamer in which Nle5, Ile9 and Leu12 were replaced by Aoc showed a KD value of 550 nm, comparable with that of the parent 42-mer. The use of Aoc residues offers a convenient route to increased affinity in protein recognition as well as a strategy for the "downsizing" of peptides essentially without loss of affinity. The results show that hydrophobic binding sites can be found on protein surfaces by comparing the affinities of polypeptide conjugates in which Aoc residues replace Nle, Ile, Leu or Phe with those of their unmodified counterparts. Polypeptide conjugates thus provide valuable opportunities for the optimization of peptides and small organic compounds in biotechnology and biomedicine.
引用
收藏
页码:1396 / 1407
页数:12
相关论文
共 17 条
  • [1] Mode matches in hydrophobic free energy eigenfunctions predict peptide-protein interactions
    Mandell, AJ
    Owens, MJ
    Selz, KA
    Morgan, WN
    Shlesinger, MF
    Nemeroff, CB
    BIOPOLYMERS, 1998, 46 (02) : 89 - 101
  • [2] Monitoring binding interactions of peptide-peptide, peptide-protein, ligand-protein and substrate-enzyme by NILIA-CD spectroscopy
    Siligardi, G
    Hussain, R
    PEPTIDES: FRONTIERS OF PEPTIDES SCIENCE, 1999, : 543 - 544
  • [3] Predicting peptide-receptor, peptide-protein, and chaperone-protein binding using patterns in amino acid hydrophobic free energy sequences
    Mandell, AJ
    Selz, KA
    Shlesinger, MF
    JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (16): : 3953 - 3959
  • [4] Fluorescent Labeling Can Significantly Perturb Measured Binding Affinity and Selectivity of Peptide-Protein Interactions
    Bobone, Sara
    Storti, Claudia
    Fulci, Chiara
    Damiani, Alessia
    Innamorati, Chiara
    Roversi, Daniela
    Calligari, Paolo
    Pannone, Luca
    Martinelli, Simone
    Tartaglia, Marco
    Bocchinfuso, Gianfranco
    Formaggio, Fernando
    Peggion, Cristina
    Biondi, Barbara
    Stella, Lorenzo
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2024, 15 (40): : 10252 - 10257
  • [5] Modeling Peptide-Protein Interactions by a Logo-Based Method: Application in Peptide-HLA Binding Predictions
    Doytchinova, Irini
    Atanasova, Mariyana
    Fernandez, Antonio
    Moreno, F. Javier
    Koning, Frits
    Dimitrov, Ivan
    MOLECULES, 2024, 29 (02):
  • [6] Predicting Peptide Binding Sites on Protein Surfaces by Clustering Chemical Interactions
    Yan, Chengfei
    Zou, Xiaoqin
    JOURNAL OF COMPUTATIONAL CHEMISTRY, 2015, 36 (01) : 49 - 61
  • [7] Predicting Peptide Binding Sites on Protein Surfaces by Clustering Chemical Interactions
    Yan, Chengfei
    Zou, Xiaoqin
    BIOPHYSICAL JOURNAL, 2015, 108 (02) : 215A - 215A
  • [8] Mapping peptide-protein interactions using site directed spin-labeling: The binding of protein kinase C substrates to calmodulin.
    Qin, Z
    Wertz, SL
    Cafiso, DS
    BIOPHYSICAL JOURNAL, 1996, 70 (02) : SU154 - SU154
  • [9] A kinetic study of analyte-receptor binding and dissociation for biosensor applications: a fractal analysis for cholera toxin and peptide-protein interactions
    Sadana, A
    Ramakrishnan, A
    SENSORS AND ACTUATORS B-CHEMICAL, 2002, 85 (1-2) : 61 - 72