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Detection of a Circulating MicroRNA Custom Panel in Patients with Metastatic Colorectal Cancer
Published on: March 14, 2019
Cell-free DNA analysis reveals POLR1D-mediated resistance to bevacizumab in colorectal cancer
Qing Zhou1, Samantha O Perakis1, Peter Ulz1,2
1Institute of Human Genetics, Diagnostic and Research Center for Molecular Biomedicine, Medical University of Graz, Graz, Austria.
Background:
Bevacizumab, a monoclonal antibody against soluble VEGFA, is an approved and commonly administered anti-angiogenic drug in patients with metastasized colorectal cancer (mCRC). The survival benefit of anti-VEGF therapy in mCRC patients is limited to a few months, and acquired resistance mechanisms are largely unknown. Here, we employed whole-genome sequencing of plasma DNA to evaluate the tumor genome of patients undergoing treatment with bevacizumab to determine novel aberrations associated with resistance.
Methods:
Using longitudinal plasma analyses, we studied the evolution of tumor genomes in a mCRC cohort (n = 150) and conducted analyses of CRC cases from The Cancer Genome Atlas (TCGA) database (n = 619) to identify associations between genomic aberrations and clinical features. We employed whole-genome sequencing to identify the most frequently occurring focal somatic copy number alterations (SCNAs). Using the TCGA data as a comparative and supporting dataset, we defined the minimally amplified overlapping region and studied the mechanistic consequences of copy number gain of the involved genes in this segment. In addition, we established an in vitro cell model and conducted downstream gene expression and cell viability assays to confirm our findings from the patient dataset.
Results:
We observed a recurrent focal amplification (8.7% of cases) on chromosome 13q12.2. Analysis of CRC cases from the TCGA database suggested that this amplicon is associated with more advanced stages. We confirmed that this 13q12.2 amplicon frequently emerges later during the clinical course of disease. After defining the minimally amplified region, we observed that the amplification and expression of one gene, POLR1D, impacted cell proliferation and resulted in upregulation of VEGFA, an important regulator of angiogenesis which has been implicated in the resistance to bevacizumab treatment. In fact, in several patients, we observed the emergence of this 13q12.2 amplicon under bevacizumab treatment, which was invariably associated with therapy resistance.
Conclusions:
Non-invasive analyses of cell-free DNA from patients undergoing treatment with bevacizumab enabled the tracking of evolving tumor genomes and helped identify a recurrent focal SCNA of clinical relevance. Here, we describe a novel resistance mechanism against a widely applied treatment in patients with mCRC which will impact the clinical management of patients.
Insights
Researchers identified a new mechanism of resistance to bevacizumab in metastatic colorectal cancer (mCRC). A specific gene amplification on chromosome 13q12.2 leads to increased VEGFA, causing resistance to this anti-angiogenic therapy.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Bevacizumab is an anti-angiogenic therapy for metastatic colorectal cancer (mCRC).
- Acquired resistance limits the efficacy of bevacizumab, with underlying mechanisms largely unknown.
- Understanding resistance is crucial for improving mCRC patient outcomes.
Purpose of the Study:
- To identify novel genomic aberrations associated with bevacizumab resistance in mCRC.
- To investigate the evolutionary tumor genome under anti-VEGF therapy.
- To elucidate resistance mechanisms impacting clinical management.
Main Methods:
- Whole-genome sequencing of plasma DNA from mCRC patients (n=150) undergoing bevacizumab treatment.
- Analysis of The Cancer Genome Atlas (TCGA) CRC cohort (n=619) for genomic aberrations and clinical associations.
- In vitro cell models to confirm functional consequences of identified genomic alterations.
Main Results:
- A recurrent focal amplification on chromosome 13q12.2 was identified in 8.7% of mCRC cases.
- This amplicon is associated with advanced disease stages and emerges during treatment.
- Amplification and expression of POLR1D within the amplicon upregulate VEGFA, driving bevacizumab resistance.
Conclusions:
- Non-invasive plasma DNA analysis can track evolving tumor genomes and identify resistance mechanisms.
- A novel resistance mechanism involving 13q12.2 amplification and POLR1D-mediated VEGFA upregulation was discovered.
- This finding has significant implications for the clinical management of mCRC patients treated with bevacizumab.

