Study identifies new protection mechanism in breast cancer

Scientists have identified a protein, GIT1, as a modulator of Notch signaling and a guardian against breast cancer growth

23 Mar 2022
Dora Wells
Clinical Content Editor

Industry news

Researchers at Karolinska Institutet in Sweden have identified a protein that protects against breast tumour growth and that can be linked to a better prognosis in breast cancer patients. The results, which are published in the journal Nature Communications, may contribute to the development of new therapies for difficult-to-treat forms of breast cancer.

Breast cancer affects about 10 per cent of women during their lifetime and is a major medical and societal burden. Fewer treatment options are available for ER-negative breast cancers, which lack oestrogen receptors (ER) and thus do not respond to hormone therapy. Particularly difficult to treat are so-called triple-negative breast cancers, which lack not only ER but also the progesterone receptor and HER2 receptor.

“Identification of new molecular mechanisms that regulate the growth of ER-negative breast cancer is warranted, as these mechanisms may represent novel therapeutic targets”, says Per Uhlén, professor at the Department of Medical Biochemistry and Biophysics, Karolinska Institutet.

Professor Uhlén and colleagues have identified a novel mechanism by which the ubiquitous protein GIT1 regulates so-called Notch signalling, affecting the initiation and growth of ER-negative breast cancer.

Associated with better prognosis

Studies of tumour cells from breast cancer patients showed that high levels of GIT1 inhibited Notch signalling and protected against tumour growth, while low levels of GIT1 enhanced tumour growth. ER-negative breast tumours from patients had lower levels of GIT1 than ER-positive breast tumours. The results also showed that ER-negative breast cancer patients with high levels of GIT1 have a better prognosis than those with low levels.

Notch signalling is an evolutionarily conserved cell-cell communication mechanism that has been shown to regulate cell fate decisions in most organs of the body and at different steps during cell development. Overactive Notch signalling in breast cancer patients has previously been linked to a worse prognosis.

“Our results provide important information about a mechanism that controls the initiation and growth of breast tumours,” says Professor Uhlén. “We hope that these findings will inform the development of new therapies for patients with difficult-to-treat breast cancer.”

Collaboration with the clinic

His research group is actively collaborating with clinicians treating patients with cancer to focus on research topics that are crucial for the treatment of patients.

“We want to conduct research that can benefit patients with severe diseases,” says Professor Uhlén. “At Karolinska Institutet, we have state-of-the-art tools and equipment that can push the development of new therapies.”

Want the latest science news straight to your inbox? Become a SelectScience member for free today>>

Links

Tags

Cell / Tissue CultureCell culture or tissue culture is used to study the biology of cells or tissues and to isolate cellular products in an environment which can be manipulated and well defined. Accurately control your culture environment with bioreactors or culture incubators, bind your cells to a surface or together with an extracellular matrix. Distinguish cell types with differential media or proliferate cells with certain characteristics using selective media. Enrich your media with supplements such as growth factors, sera and vitamins. Find the best cell and tissue culture products, kits and equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Cell Lines Stem Cells and Primary CellsPrimary cell cultures, established cell lines and stem cells are vital for <i>in vitro</i> and <i>ex vivo</i> experimentation. High-quality cells, optimized for your applications, alongside optimized cell substrates, growth medium and supplements, are critical for experimental success. Explore a range of cells suitable for your applications, including isogenic cell lines, competent cells, induced pluripotent stem cell (iPSC)-derived cell lines, fungal/bacterial/mammalian cell lines, stem cells and cancer cell lines. Find the best cells for your research in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Assay AssemblyAssay Assembly is technique used in drug discovery to develop assays to test the cytotoxicity, genotoxicity, or other activities of a compound on a cell. Assay assembly requires chip assembly, a delivery system and a detection and analysis method. Beneficial features of assay kits or automated systems include high-throughput, high speed and sensitivity and low signal to noise ratio.Cell-Based AssaysCell-based assays are used to monitor the presence, quantity and activities of a desired cellular analyte including drug molecules or biomarkers. This can reveal information on cell health (apoptosis, cytotoxicity, viability and proliferation assays), cell metabolism, cell migration and cell signaling mechanisms. Find the best cell-based assay products, kits and equipment with our peer reviewed product directory: compare products, check customer reviews and receiving pricing direct from manufacturers.BiomarkersBiomarkers are biological markers which can be measured and evaluated to indicate a biological state. The use of biomarkers in research and diagnosis can indicate a normal or disease state or drug response of cells / tissues. Biomarkers include genetic markers, cell surface markers such as antigens, antibodies or receptors and secreted molecules such as cytokines. An assay system is required for identification of biomarkers. :Animal ModelsThe use of non-human animals in experiments or behavorial observations. The research is conducted inside universities, medical schools, pharmaceutical companies, farms, defence establishments, and commercial facilities that provide animal-testing services to industry. It includes pure research such as genetics, developmental biology, behavioral studies, as well as applied research such as pharmaceutical testing in pre-clinical, before human, studies. 3D Cell CultureCulturing cells in three dimensions allows more physiologically relevant observations to be made regarding cellular interactions and gene expression. 3D models provide a more accurate representation of cells in vivo and are more stable than 2D cultures, making them very useful for long-term studies.Protein InteractionsProtein interactions are essential for understanding cellular processes, as proteins work together to carry out biological functions. Studying protein interactions can provide insights into disease mechanisms, drug development, and cell signaling pathways. Explore the best tools for protein interaction research in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.Cell SignalingBreast CancerBreast cancer is a type of cancer that begins in the cells of the breast and can spread to other parts of the body. Early detection, accurate diagnosis, and targeted treatments are essential for improving patient outcomes. Browse our peer-reviewed product directory to find the best breast cancer research and diagnostic tools, compare products, check reviews, and get pricing directly from manufacturers.Cancer ResearchAlthough cancer is often referred to as a single condition, it actually consists of more than 100 different diseases. Microscopy, mass spectrometry, high throughput sequencing and flow cytometry are some of the most common techniques employed in cancer research labs.
Study identifies new protection mechanism in breast cancer