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May 6, 2026International Journal of Molecular Sciences0 citationsOpen Access

Targeting Undruggable Protein Interactions with DNA Aptamers: Inhibition of the Interaction Between Yersinia Outer Protein M and Human DEAD-Box Helicase 3

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OGOğuz GökÖUÖzge UğurluCÖCanan Özyurt

Key Points

  • The aim was to develop aptamers targeting Yersinia outer protein M to inhibit its interaction with DDX3.
  • Developed aptamer using magnetic bead-based SELEX method
  • Measured inhibitory effects using IC50 values
  • Conducted pull-down assay and colorimetric tests to confirm interaction inhibition.
  • YopM16 aptamer achieved an IC50 of 103.3 ± 2 nM.
  • The aptamer effectively inhibited the YopM-DDX3 protein interaction.
  • Potential clinical applications as an antibacterial agent against plague.

Abstract

The plague, caused by Yersinia pestis, has resulted in significant mortality over the past century. Despite advances in antimicrobial therapy, plague remains a re-emerging infectious disease with ongoing outbreaks and increasing concerns regarding antimicrobial resistance. Today, plague cases are still being reported, and the loss of effectiveness of treatment methods remains a major challenge. Therefore, effective treatment strategies are needed. In this study, we aimed to develop aptamers specific to Yersinia outer protein M (YopM), a key immunosuppressive protein that is essential for virulence. Our goal was to develop an aptamer that binds to YopM and inhibits its interaction with the human DEAD-box helicase 3 (DDX3) protein. YopM-DDX3 protein interaction was targeted because of its key role in nucleocytoplasmic shuttling of YopM. To achieve this, we developed the YopM16 aptamer using magnetic bead-based (Systematic Evolution of Ligands by Exponential Enrichment) (SELEX). The selected YopM16 aptamer exhibited a half-maximal inhibitory concentration(IC50) value of 103.3 ± 2 nM and effectively inhibited the interaction between YopM and DDX3. The inhibitory effect of the aptamer on protein interaction was confirmed using a pull-down assay and colorimetric test. Given that protein–protein interaction surfaces are considered undruggable, YopM16 is a promising inhibitor with the potential to serve as a molecular tool to investigate the virulence mechanism of YopM, as well as a novel antibacterial agent upon validation of its inhibition in cellular models.

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Cite This Study

Gök et al. (2026) studied this question.

synapsesocial.com/papers/69fa979b04f884e66b53188bhttps://doi.org/10.3390/ijms27094038
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