Novel Metastasis Suppressor PI3KC2β Is Mediated by mTORC1 Signaling in Breast Cancer

Kanakaraju Manupati1, Mingang Hao1, Suhua Li1

  • 1Department of Cancer Biology, University of Cincinnati College of Medicine, Cincinnati, Ohio.

Insights

Class II phosphatidylinositol 3-kinases (PI3KC2β) suppresses metastasis in HER2-positive breast cancer. Lower PI3KC2β levels correlate with poorer survival, and targeting the mTORC1 pathway may offer new therapeutic strategies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • HER2 amplification drives metastasis in 25% of breast cancers, necessitating identification of novel metastasis-mediating genes.
  • Understanding metastasis in HER2-positive breast cancer is crucial for developing targeted therapies.

Purpose of the Study:

  • To identify novel genes regulating metastasis in HER2-positive breast cancer.
  • To characterize the role of Class II phosphatidylinositol 3-kinases (PI3KC2β) in HER2-positive breast cancer metastasis.

Main Methods:

  • In vivo CRISPR-Cas9 screening of autophagy-related genes in murine HER2-positive breast cancer cells (N418).
  • In vitro migration and invasion assays, in vivo spontaneous and experimental metastasis assays.
  • Analysis of breast cancer patient databases and tissue samples; assessment of mTORC1 signaling and protein complex formation.

Main Results:

  • PI3KC2β deletion in N418 cells increased migration, invasion, and lung metastasis.
  • Lower PI3KC2β expression in patients correlated with decreased metastasis and survival.
  • PI3KC2β deletion activated mTORC1 signaling by affecting its complex with ITSN1 and raptor, leading to increased raptor stability.

Conclusions:

  • PI3KC2β acts as a metastasis suppressor in HER2-positive breast cancer by negatively regulating mTORC1 signaling.
  • PI3KC2β may serve as a diagnostic marker and therapeutic target for HER2-positive breast cancer metastasis.
  • mTORC1 pathway inhibition, e.g., with rapamycin, reduced metastasis in PI3KC2β-deficient models.

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