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.

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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