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Investigation of the Transcriptional Role of a RUNX1 Intronic Silencer by CRISPR/Cas9 Ribonucleoprotein in Acute Myeloid Leukemia Cells
Published on: September 1, 2019
Increased RUNX1 mutations in breast cancer disease progression
1Department of Pharmacology and Pharmaceutical Chemistry, Faculty of Pharmacy, Universiti Teknologi MARA, 42300 Bandar Puncak Alam, Selangor, Malaysia.
Abstract:
Despite advances in screening, therapy and surveillance, breast cancer remains threatening to women. Worst, patients suffer from side effects of treatments and cancer cells become resistant. The emergence of RUNX1 in breast cancer has put it in a spotlight due to its roles in the disease progression. It also plays important roles in normal mammary glands such as for cell growth, proliferation, migration and stemness. However, mutations in the RUNX1 gene have changed the regulation of these phenotypes and the full spectrum of its implications in breast cancer patients is unknown. In this study therefore, the pattern of RUNX1 mutations in breast cancer patients was examined to understand its fundamental impacts on the disease. The perturbation of RUNX1 and its mutations in breast cancer was elucidated through different studies reported in cBioPortal in the past ten years. From our analyses, the majority of RUNX1 mutations were found in the primary breast cancer, with women constituted most of the mutations, especially on the left side of the breast. Similarly, increased number of mutations was observed in ER-positive breast cancer patients and this was also the case at the early stage of the disease development. The level of RUNX1 mutations also increased gradually as patients got older and the peak was highest in the patients of 60-70 years old. Altogether, these data indicated that the mutated RUNX1 gene contributed to the progression of breast cancer and understanding of its regulatory mechanisms is crucial to therapeutically target this gene in the future.
Insights
RUNX1 gene mutations are linked to breast cancer progression, particularly in women, ER-positive cases, and older individuals. Understanding these RUNX1 alterations is key for future breast cancer therapies.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Breast cancer remains a significant threat despite advances in treatment.
- RUNX1 plays crucial roles in normal mammary gland function, including cell growth and stemness.
- Mutations in RUNX1 can alter these functions, impacting breast cancer development and progression.
Purpose of the Study:
- To investigate the pattern and implications of RUNX1 mutations in breast cancer patients.
- To elucidate the fundamental impacts of RUNX1 perturbation and mutations on breast cancer.
Main Methods:
- Analysis of RUNX1 mutations in breast cancer patients using data from cBioPortal over the past decade.
- Examination of mutation patterns in relation to patient demographics, tumor characteristics, and disease stage.
Main Results:
- RUNX1 mutations were predominantly found in primary breast cancer, with a higher prevalence in women, particularly on the left side.
- Increased RUNX1 mutations were observed in estrogen receptor-positive (ER-positive) breast cancer and at earlier stages of disease development.
- RUNX1 mutation levels correlated with age, peaking in patients aged 60-70 years.
Conclusions:
- Mutated RUNX1 contributes to breast cancer progression.
- Understanding the regulatory mechanisms of mutated RUNX1 is crucial for developing targeted therapeutic strategies.
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