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Design of novel lipidated peptidomimetic conjugates for targeting EGFR heterodimerization in HER2 + cancer
Himgauri Naik1, Ted Gauthier2, Sitanshu Singh1
1School of Basic Pharmaceutical and Toxicological Sciences, College of Pharmacy, University of Louisiana at Monroe, Monroe, LA 71201, United States.
Abstract:
The human epidermal growth factor receptor (EGFR) family is known to be involved in cell signaling pathways. The extracellular domain of EGFR consists of four domains, of which domain II and domain IV are known to be involved in the dimerization process. Overexpression of these receptors is known to play a significant role in heterodimerization of these receptors leading to the development of cancer. We have designed peptidomimetic molecules to inhibit the EGFR heterodimerization interaction that have shown antiproliferative activity and specificity for HER2-positive cancer cell lines. Among these, a peptidomimetic, compound 5, exhibited antiproliferative activity at low nanomolar concentrations in HER2-overexpressing cancer cell lines. To improve the stability of this peptidomimetic, we have designed and synthesized a novel conjugate of peptidomimetic compound 5 with a lipid, stearic acid. The antiproliferative activity of this conjugate was evaluated in HER2-positive cancer cell lines. Results suggested that the conjugate exhibited selective antiproliferative activity in HER2-overexpressing breast and lung cancer cell lines and was able to block HER2:HER3 heterodimerization. Also, the conjugate showed improved stability with a half-life of 5 h in human serum compared to the half-life of 2 h for parent compound 5. The binding affinity of the conjugate to HER2 protein was evaluated by SPR analysis, and the mode of binding of the lipid conjugate to domain IV of HER2 protein was demonstrated by docking analysis. Thus, this novel lipid conjugate can be used to target HER2-overexpressing cancers.
Insights
A novel lipid conjugate of a peptidomimetic compound effectively targets HER2-overexpressing cancers. This conjugate shows enhanced stability and selective antiproliferative activity, blocking HER2:HER3 heterodimerization in breast and lung cancer cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The human epidermal growth factor receptor (EGFR) family, particularly HER2, is implicated in cancer development due to receptor overexpression and heterodimerization.
- EGFR domain II and IV are crucial for receptor dimerization, a key process in cancer signaling pathways.
Purpose of the Study:
- To design and synthesize a novel lipid conjugate of a peptidomimetic inhibitor to enhance stability and target HER2-overexpressing cancers.
- To evaluate the antiproliferative activity, HER2:HER3 heterodimerization blocking capability, and stability of the novel conjugate.
Main Methods:
- Design and synthesis of a lipid conjugate (peptidomimetic compound 5 with stearic acid).
- Evaluation of antiproliferative activity in HER2-positive cancer cell lines.
- Assessment of HER2:HER3 heterodimerization inhibition, serum stability, binding affinity (SPR), and binding mode (docking analysis).
Main Results:
- The lipid conjugate demonstrated selective antiproliferative activity in HER2-overexpressing breast and lung cancer cell lines.
- The conjugate successfully blocked HER2:HER3 heterodimerization and exhibited improved serum stability (5h half-life vs. 2h for parent compound).
- SPR and docking analyses confirmed the conjugate's binding affinity and mode to HER2 domain IV.
Conclusions:
- The novel lipid conjugate is a promising therapeutic agent for targeting HER2-overexpressing cancers.
- Enhanced stability and specific targeting of HER2:HER3 heterodimerization underscore the conjugate's potential in cancer therapy.
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