Related Experiment Video
Updated: Aug 28, 2025

Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
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.
Abstract:
Targeting cytoskeletal proteins that are uniquely translocated to cancer cell surface may provide an alternative path for conventional drug discovery. Vimentin is such a cell surface-translocated cytoskeletal protein (CSV) found in non small cell lung cancer (NSCLC). We previously reported the identification of CSV-binding peptoid, named JM3A. While JM3A had no antagonist effect, here we used multiple strategies to optimize the binding of JM3A on CSV and extract the antagonistic effect. We first performed minimum pharmacophore identification studies using alanine/sarcosine scans. These studies revealed that residues 1-4 and 8 (from the C-terminus) are not important and those residues 5-7 are important for JM3A binding to CSV. We then found that our previous N-terminal benzophenone (BP)-coupled JM3A (JM3A-BP), which was used for pull-down and target identification studies, displayed 3-fold binding enhancement. The molecular docking studies indicated that the BP moiety binds to a new binding pocket on the vimentin coil 2 fragment, and further studies using 12 benzophenone-like moieties indicated that at least two phenyl groups are needed to occupy this new binding site. Interestingly, the binding was improved when non-important and bulky residues at the 4th and 8th positions were replaced with methyl groups (JM3A-4,8-BP). We next dimerized JM3A-4,8-BP to enhance the binding via the "avidity effect," using a central lysine linker to develop JM3A-4,8-BPD1 (EC50 = 300 nM). This showed 27- and 63-fold-improvement in binding over JM3A-4,8-BP and JM3A monomers, respectively. JM3A4,8BPD1 also displayed binding comparable to vimentin antibody. Finally, we observed an antagonist effect on H1299 NSCLC cell proliferation and viability from this most improved dimeric JM3A-4,8BPD1, which was not shown by the monomeric versions.
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.

