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Updated: Sep 25, 2025

Studying Triple Negative Breast Cancer Using Orthotopic Breast Cancer Model
Published on: March 20, 2020
CmP Signaling Network Leads to Identification of Prognostic Biomarkers for Triple-Negative Breast Cancer in Caucasian
Johnathan Abou-Fadel1, Muaz Bhalli1, Brian Grajeda2
1Department of Molecular and Translational Medicine (MTM), Texas Tech University Health Science Center El Paso, El Paso, Texas, USA.
Abstract:
Triple-negative breast cancer (TNBC) constitutes ∼15% of all diagnosed invasive breast cancer cases with limited options for treatment since immunotherapies that target ER, PR, and HER2 receptors are ineffective. Progesterone (PRG) can induce its effects through either classic, nonclassic, or combined responses by binding to classic nuclear PRG receptors (nPRs) or nonclassic membrane PRG receptors (mPRs). Under PRG-induced actions, we previously demonstrated that the CCM signaling complex (CSC) can couple both nPRs and mPRs into a CmPn signaling network, which plays an important role during nPR(+) breast cancer tumorigenesis. We recently defined the novel CmP signaling network in African American women (AAW)-derived TNBC cells, which overlapped with our previously defined CmPn network in nPR(+) breast cancer cells. Under mPR-specific steroid actions, we measured alterations to key tumorigenic pathways in Caucasian American women (CAW)- derived TNBC cells, with RNAseq/proteomic and systems biology approaches. Exemption from ethics approval from IRB: This study only utilized cultured NBC cell lines with publicly available TNBC clinical data sets. Our results demonstrated that TNBCs in CAW share similar altered signaling pathways, as TNBCs in AAW, under mPR-specific steroid actions, demonstrating the overall aggressive nature of TNBCs, regardless of racial differences. Furthermore, in this report, we have deconvoluted the CmP signalosome, using systems biology approaches and CAW-TNBC clinical data, to identify 21 new CAW-TNBC-specific prognostic biomarkers that reinforce the definitive role of CSC and mPR signaling during CAW-TNBC tumorigenesis. This new set of potential prognostic biomarkers may revolutionize molecular mechanisms and currently known concepts of tumorigenesis in CAW-TNBCs, leading to hopeful new therapeutic strategies.
Insights
Triple-negative breast cancer (TNBC) in Caucasian American women shares signaling pathways with AAW-TNBC. This study identified 21 new prognostic biomarkers for TNBC, highlighting the role of membrane progesterone receptors (mPRs) in tumorigenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapies due to ineffective immunotherapies against ER, PR, and HER2 receptors.
- Progesterone (PRG) signaling involves classic nuclear (nPRs) and nonclassic membrane receptors (mPRs).
- Previous research established a CCM signaling complex (CSC) coupling nPRs and mPRs in nPR(+) breast cancer and a similar network in African American women (AAW)-derived TNBC.
Purpose of the Study:
- To investigate mPR-specific steroid actions on tumorigenic pathways in Caucasian American women (CAW)-derived TNBC cells.
- To identify novel prognostic biomarkers for CAW-TNBC.
- To elucidate the role of CSC and mPR signaling in CAW-TNBC tumorigenesis.
Main Methods:
- RNA sequencing and proteomic analyses were employed.
- Systems biology approaches were utilized for data deconvolution.
- Publicly available TNBC clinical datasets were analyzed.
Main Results:
- TNBCs in CAW exhibit similar altered signaling pathways to AAW-TNBC under mPR-specific actions, indicating TNBC's aggressive nature across racial groups.
- The CmP signalosome was deconvoluted, revealing 21 new CAW-TNBC-specific prognostic biomarkers.
- The findings reinforce the critical role of CSC and mPR signaling in CAW-TNBC tumorigenesis.
Conclusions:
- TNBC in CAW shares common aggressive signaling pathways with AAW-TNBC, irrespective of race.
- The identified biomarkers offer potential for revolutionizing the understanding of CAW-TNBC tumorigenesis.
- These findings may pave the way for novel therapeutic strategies against CAW-TNBC.
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