Optimization of a cell surface vimentin binding peptoid to extract antagonist effect on lung cancer cells

Haowen Zhang1, D Gomika Udugamasooriya2

  • 1Department of Pharmacological & Pharmaceutical Sciences, University of Houston, 4349 Martin Luther King Blvd, Health Building 2, Houston, TX 77204-5037, USA.

Bioorganic Chemistry
|September 15, 2022
PubMed

Insights

Researchers optimized a peptoid (JM3A) that binds to cell surface vimentin in non-small cell lung cancer (NSCLC). The optimized dimeric form, JM3A-4,8-BPD1, showed enhanced binding and inhibited cancer cell proliferation and viability.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Oncology

Background:

  • Targeting cancer-specific cell surface proteins offers novel therapeutic avenues.
  • Vimentin is a cytoskeletal protein found on the surface of non-small cell lung cancer (NSCLC) cells.
  • Previous work identified a vimentin-binding peptoid, JM3A, lacking antagonist effects.

Purpose of the Study:

  • To optimize the binding affinity of JM3A to cell surface vimentin (CSV).
  • To engineer antagonistic properties into the optimized JM3A peptoid.
  • To evaluate the anti-cancer effects of the optimized peptoid on NSCLC cells.

Main Methods:

  • Pharmacophore identification using alanine/sarcosine scans.
  • Chemical modification of JM3A with benzophenone moieties and bulky residue replacement.
  • Molecular docking studies to predict binding interactions.
  • Dimerization of the optimized peptoid using a lysine linker.
  • In vitro assays measuring cell proliferation and viability.

Main Results:

  • Minimum pharmacophore analysis identified key residues (5-7) for JM3A binding.
  • N-terminal benzophenone coupling (JM3A-BP) enhanced binding by 3-fold.
  • Optimized monomer (JM3A-4,8-BP) and dimer (JM3A-4,8-BPD1) showed significant binding improvements.
  • JM3A-4,8-BPD1 exhibited 27- and 63-fold enhanced binding compared to monomeric forms.
  • JM3A-4,8-BPD1 demonstrated comparable binding to a vimentin antibody.
  • The dimeric JM3A-4,8-BPD1 inhibited H1299 NSCLC cell proliferation and viability.

Conclusions:

  • Optimized peptoid derivatives, particularly the dimer JM3A-4,8-BPD1, demonstrate significantly enhanced binding to cell surface vimentin.
  • The dimeric peptoid exhibits potent antagonistic effects on NSCLC cell proliferation and viability.
  • These findings support the development of vimentin-targeting peptoids as a novel therapeutic strategy for NSCLC.

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