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Updated: Feb 14, 2026

Oligopeptide Competition Assay for Phosphorylation Site Determination
Published on: May 18, 2017
Multispecific Substrate Recognition in a Proton-Dependent Oligopeptide Transporter
Maria Martinez Molledo1, Esben M Quistgaard2, Ali Flayhan1
1Centre for Structural Systems Biology (CSSB), DESY and European Molecular Biology Laboratory Hamburg, Notkestrasse 85, 22607 Hamburg, Germany.
Proton-dependent oligopeptide transporters (POTs) adapt to diverse peptide side chains. Structural studies reveal how PepTSt accommodates different dipeptides, aiding drug absorption research.
Area of Science:
- Biochemistry
- Structural Biology
- Molecular Transport
Background:
- Proton-dependent oligopeptide transporters (POTs) facilitate the uptake of dietary peptides and are crucial for drug absorption in humans.
- The structural mechanisms by which POTs accommodate diverse peptide side chains remain largely unknown.
Purpose of the Study:
- To elucidate the structural basis of substrate accommodation in proton-dependent oligopeptide transporters.
- To investigate the binding interactions of PepTSt with various dipeptides.
Main Methods:
- Screening of 28 peptides for binding to PepTSt from Streptococcus thermophilus.
- Determination of crystal structures of PepTSt in complex with four distinct dipeptides (Ala-Leu, Phe-Ala, Ala-Gln, Asp-Glu).
- Analysis of binding site residue and water molecule movements, and peptide positioning.
Main Results:
- PepTSt binds four diverse dipeptides with millimolar affinity.
- Structural data reveal that PepTSt accommodates different peptide side chains through dynamic adjustments of binding site residues and water molecules.
- Peptide positioning within the binding site also contributes to optimal fit.
Conclusions:
- PepTSt exhibits significant adaptability in accommodating diverse peptide side chains.
- Understanding these structural adaptations provides insights into the broader mechanisms of peptide transport and drug delivery via POTs.
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