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Updated: Nov 11, 2025

Quantitative Mass Spectrometric Profiling of Cancer-cell Proteomes Derived From Liquid and Solid Tumors
Published on: February 27, 2015
Genomic, Transcriptomic, and Proteomic Profiling of Metastatic Breast Cancer
Argun Akcakanat1, Xiaofeng Zheng2, Christian X Cruz Pico3
1Department of Investigational Cancer Therapeutics, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Purpose:
Metastatic breast cancer (MBC) is not curable and there is a growing interest in personalized therapy options. Here we report molecular profiling of MBC focusing on molecular evolution in actionable alterations.
Experimental Design:
Sixty-two patients with MBC were included. An analysis of DNA, RNA, and functional proteomics was done, and matched primary and metastatic tumors were compared when feasible.
Results:
Targeted exome sequencing of 41 tumors identified common alterations in TP53 (21; 51%) and PIK3CA (20; 49%), as well as alterations in several emerging biomarkers such as NF1 mutations/deletions (6; 15%), PTEN mutations (4; 10%), and ARID1A mutations/deletions (6; 15%). Among 27 hormone receptor-positive patients, we identified MDM2 amplifications (3; 11%), FGFR1 amplifications (5; 19%), ATM mutations (2; 7%), and ESR1 mutations (4; 15%). In 10 patients with matched primary and metastatic tumors that underwent targeted exome sequencing, discordances in actionable alterations were common, including NF1 loss in 3 patients, loss of PIK3CA mutation in 1 patient, and acquired ESR1 mutations in 3 patients. RNA sequencing in matched samples confirmed loss of NF1 expression with genomic NF1 loss. Among 33 patients with matched primary and metastatic samples that underwent RNA profiling, 14 actionable genes were differentially expressed, including antibody-drug conjugate targets LIV-1 and B7-H3.
Conclusions:
Molecular profiling in MBC reveals multiple common as well as less frequent but potentially actionable alterations. Genomic and transcriptional profiling demonstrates intertumoral heterogeneity and potential evolution of actionable targets with tumor progression. Further work is needed to optimize testing and integrated analysis for treatment selection.
Insights
Molecular profiling of metastatic breast cancer (MBC) reveals actionable alterations. Genomic and transcriptional analysis shows tumor evolution, highlighting the need for personalized therapy selection in MBC.
Area of Science:
- Oncology
- Genomics
- Translational Medicine
Background:
- Metastatic breast cancer (MBC) presents a significant clinical challenge with limited curative options.
- Personalized therapy approaches are increasingly important for managing MBC.
- Understanding molecular alterations in MBC is crucial for developing targeted treatments.
Purpose of the Study:
- To perform molecular profiling of metastatic breast cancer (MBC) tumors.
- To identify actionable genetic alterations and study their evolution.
- To explore potential targets for personalized therapy in MBC.
Main Methods:
- Analysis of DNA, RNA, and functional proteomics in 62 MBC patients.
- Targeted exome sequencing of 41 tumors and matched primary/metastatic samples.
- RNA sequencing of 33 matched primary and metastatic samples.
Main Results:
- Common alterations include TP53 (51%) and PIK3CA (49%).
- Emerging biomarkers like NF1 (15%), PTEN (10%), and ARID1A (15%) were identified.
- Discordances in actionable alterations were observed between primary and metastatic tumors, including NF1 loss and acquired ESR1 mutations.
Conclusions:
- Molecular profiling of MBC identifies numerous actionable alterations.
- Genomic and transcriptional profiling reveals tumor heterogeneity and target evolution.
- Optimizing molecular testing and integrated analysis is essential for MBC treatment selection.
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