KRas4B-PDE6δ complex stabilization by small molecules obtained by virtual screening affects Ras signaling in

Diana Casique-Aguirre1, Paola Briseño-Díaz1, Ponciano García-Gutiérrez2

  • 1Departamento de Biomedicina Molecular, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (CINVESTAV-IPN), Av. I.P.N, 2508, México City, Mexico.

BMC Cancer
|December 31, 2018
PubMed
Abstract

Insights

Researchers identified two novel compounds, D14 and C22, that stabilize the KRas4B-PDE6δ complex, inhibiting pancreatic cancer cell growth and reducing tumor volume in mice. These compounds show promise for pancreatic ductal adenocarcinoma treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Discovery

Background:

  • KRas4B GTPase is a key target for anticancer drug development.
  • PDE6δ transports KRas4B to the plasma membrane, initiating cancer signaling pathways.
  • Stabilizing the KRas4B-PDE6δ complex offers a strategy to inhibit cancer progression.

Purpose of the Study:

  • To identify small molecules that stabilize the KRas4B-PDE6δ molecular complex.
  • To evaluate the anticancer potential of novel compounds D14 and C22.
  • To investigate the therapeutic efficacy of D14 and C22 in preclinical models of pancreatic cancer.

Main Methods:

  • Virtual screening of Enamine-database compounds against the KRas4B-PDE6δ heterodimer structure.
  • Molecular dynamics simulations to estimate binding free-energy.
  • In vitro assays for cell viability, apoptosis, Ras inactivation, and signaling pathway activation (AKT, ERK).
  • In vivo efficacy study using a mouse xenograft model of pancreatic cancer.

Main Results:

  • Compounds D14 and C22 effectively reduced viability in human pancreatic cancer cell lines (MIA PaCa-2, PanC-1, BxPC-3) via apoptosis.
  • D14 and C22 significantly decreased Ras-GTP activity and phosphorylation of AKT and ERK signaling proteins.
  • Both compounds demonstrated significant tumor growth inhibition in a mouse xenograft model, with C22 reducing growth by 88.6% and D14 by 65.9%.

Conclusions:

  • Compounds D14 and C22 are promising therapeutic candidates for pancreatic ductal adenocarcinoma.
  • Stabilization of the KRas4B-PDE6δ complex by D14 and C22 provides a novel therapeutic strategy.
  • Further development of D14 and C22 could lead to effective treatments for pancreatic cancer.

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