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What Genes Affect Breast Cancer?

Written by - Editorial Team
Medically Reviewed by - Dr Praveen Kumar Dadireddy

Breast cancer is the most prevalent cancerous disease among women worldwide. Environmental factors and lifestyle, along with the influence of hormones, trigger cancer. However, genetics also significantly contributes to an individual's increased risk of developing breast cancer. Understanding these genes can aid in early detection and preventive strategies. This blog explores specific genes that may increase the risk of breast cancer, contextualizes the statistics within global and Indian events, and aims to provide a deeper understanding of the issue.

What genes affect breast cancer risk?

Several genetic mutations, most of which are hereditary, influence breast cancer. Here's a little closer look at the most important genes involved in the breast cancer risk profile:

The BRCA1 and BRCA2 genes

The two most significant genes known to associate with an increased risk of breast cancer are BRCA1, short for Breast Cancer 1, and BRCA2, or Breast Cancer 2. These genes provide for the repair of damaged DNA; as long as they function properly, cancer cannot develop. Mutations within these same genes result in a failure to correctly repair DNA, thereby greatly increasing the potential for the development of cancerous growths.

BRCA1 mutation: Women possessing this mutation will have a 55-72% lifetime risk of developing breast cancer, based on National Cancer Institute findings.

BRCA2 mutation: This type of mutation provides a 45–69% lifetime risk of developing breast cancer.

Both of these mutations also enhance the risk for ovarian cancer. Therefore, routine genetic testing for BRCA mutations allows women to prepare for prevention through enhanced surveillance or preventive surgery.

If you have concerns about your breast cancer risk or a family history of the disease, visit our Best Cancer Specialist in Hyderabad for a comprehensive risk assessment, advanced screening, and expert guidance tailored to your needs.

TP53 Gene

The TP53 gene expresses a protein called p53. The protein acts as a tumor suppressor that helps limit the growth of abnormal cells. Many cancers, including breast cancers, have mutations in this gene. A female who inherits a mutation in the TP53 gene is at increased risk for developing breast cancer—at a younger age.

Mutations in TP53 are associated with several genetic syndromes, including Li-Fraumeni syndrome, predisposing to a variety of cancers, including leukemia, breast cancer, and sarcomas. We recommend testing for TP53 mutations in extremely close families with multiple cancer types.

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PALB2 Gene

The PALB2 gene interacts with BRCA2 in DNA repair. Similar to mutations in the BRCA1 and BRCA2 genes, the PALB2 gene also increases the risk of breast cancer. Current research finds that women with a mutation in the PALB2 gene have a lifetime risk of developing breast cancer of 33-58%.

Though PALB2 mutations are less common than BRCA mutations, they are no less an important cause of hereditary breast cancer. Patients with a family history of breast cancer often recommend genetic testing for PALB2.

CHEK2 Gene

The CHEK2 gene produces a protein that assists in the process of DNA repair. A mutation in this gene can impair the body's ability to monitor abnormal cell growth, placing it at risk of developing breast cancer.

Estimates place the lifetime risk of breast cancer in the range of 20–40% for women carrying a CHEK2 mutation. Apart from this, mutations of the CHEK2 gene may also lead to an enhanced risk for other cancers, including colon and prostate cancer. Families with a history of breast cancer are increasingly conducting genetic testing for CHEK2 mutations.

ATM Gene

The ATM gene generates a protein that assists the cell in repairing DNA damage resulting from radiation or other environmental exposures. Mutations in this gene may contribute to an increased risk of developing breast cancer, albeit at a lower lifetime risk than for BRCA mutations.

The ATM gene mutation is associated with a 20–30% increase in the risk of breast cancer in women. We recommend genetic screening for the above mutation for individuals with a family or personal history of breast cancer, regardless of the number of family members.

PTEN Gene

Another tumor suppressor gene is PTEN, whose mutation predisposes an individual to the development of breast cancer. The PTEN mutation causes Cowden syndrome, a rare genetic disorder that increases the risk for several cancers, including thyroid and uterine cancers, in addition to breast cancer.

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Women with Cowden syndrome have up to a 50% lifetime risk of developing breast cancer. Women affected by this syndrome should seek regular cancer screening as well as take other preventive measures against cancer.

CDH1 Gene

The CDH1 gene promotes the interaction of cells with each other and also promotes cell-to-cell communication. Researchers have demonstrated that lobular breast cancer, a subtype of breast cancer, is responsible for alterations within this gene. Women with a CDH1 mutation have a strongly increased risk of developing breast cancer. Researchers estimate the lifetime cumulative risk for lobular breast cancer among women with a CDH1 mutation to be as high as 39-52%.

This gene also predisposes to gastric cancer, and carriers of a CDH1 mutation are closely followed for both forms of cancer.

Why Is Genetic Testing Important for Breast Cancer?

Genetic testing can help a woman and her doctor understand her risk for developing breast cancer. If there is a family history of breast or ovarian cancer, then a genetic counselor would be a suitable place to start the conversation. Testing can determine whether mutations in BRCA1, BRCA2, and other relevant genes have occurred, which influences decisions surrounding surveillance and prevention.

Since genes play a major role in the risk of breast cancer, genetic testing could become a means for early detection and prevention. We can direct women with a family history of breast cancer or at high risk to receive genetic counseling and testing for mutations in the BRCA1, BRCA2, PALB2, TP53, and other genes that may predispose an individual to cancer.

Individuals can work with their healthcare professionals to design an individualized plan to monitor and prevent cancer if they find an inherited mutation. This could include more frequent mammograms or breast MRIs or even preventive surgeries, such as mastectomy or oophorectomy.

Conclusion

Both genetic and environmental factors contribute to the multigenic nature of breast cancer. Such explanations regarding the roles of genes like BRCA1, BRCA2, etc. can motivate an individual toward beneficial decision-making for their lives. Breast cancer statistics are grim, not only in the world arena but also in India, and advance knowledge about genetic testing, early detection, and personalized treatments gives ample hope to patients who are at risk. We advise persons with a family history of breast cancer to visit a genetic counselor to discuss the possibility of testing as a preventive measure, as this could significantly reduce their risk of contracting the disease or catching it at an early stage.

If you have concerns about your breast cancer risk, it's best to consult with a best oncologist in Hyderabad who can assess your individual risk factors 

Related Blog Articles:

  1. What Are the Known Risk Factors for Breast Cancer?
  2. Impact of Hormone Therapy on Breast Cancer Risk

Frequently Asked Questions

The genes most commonly linked to hereditary breast cancer are BRCA1 and BRCA2. These genes normally help repair damaged DNA and protect cells from becoming cancerous. When they carry harmful mutations, the risk of breast and ovarian cancer increases significantly. Other genes associated with breast cancer include PALB2, TP53, CHEK2, ATM, PTEN, CDH1, and STK11. Each gene contributes differently to cancer risk. Some mutations lead to a high lifetime risk, while others increase risk only moderately. Having one of these mutations does not guarantee cancer will develop, but it does mean closer monitoring may be needed. Genetic counseling helps determine which tests are appropriate. Early detection and preventive strategies can greatly improve outcomes for people with inherited gene mutations.
BRCA1 and BRCA2 are tumor suppressor genes that help repair damaged DNA in cells. When these genes work properly, they reduce the chance of abnormal cell growth. Harmful mutations prevent the genes from repairing DNA effectively, allowing damaged cells to multiply. This increases the risk of breast, ovarian, prostate, and pancreatic cancers. Women with BRCA mutations often develop breast cancer at a younger age than the general population. Men with BRCA mutations also have an increased risk of breast cancer. Knowing your BRCA status helps doctors recommend personalized screening, preventive treatments, or surgery when appropriate. Early identification of these mutations supports timely medical decisions and better long term health management.
Yes, breast cancer related gene mutations can be inherited from either your mother or your father. These inherited mutations are present from birth and may increase your lifetime cancer risk. Around 5 to 10 percent of breast cancers are hereditary. A parent carrying a harmful mutation has a 50 percent chance of passing it to each child. However, inheriting the mutation does not mean cancer is certain to develop. Lifestyle, environmental factors, and other genes also influence risk. People with a strong family history of breast or ovarian cancer should consider genetic counseling. Testing helps identify inherited mutations and guides personalized screening and prevention strategies for family members.
Genetic testing is recommended for people with a strong personal or family history of breast cancer. Those diagnosed with breast cancer before age 50 may benefit from testing. Individuals with multiple relatives affected by breast, ovarian, pancreatic, or prostate cancer should also consider evaluation. Testing is advised when breast cancer occurs in men or when multiple cancers appear across generations. Certain ethnic backgrounds, such as Ashkenazi Jewish ancestry, have a higher prevalence of BRCA mutations. A genetic counselor reviews your medical and family history before recommending tests. Understanding your genetic risk helps guide screening, preventive measures, and treatment decisions while also providing valuable information for close family members.
No, having a gene mutation linked to breast cancer does not guarantee that cancer will develop. It means your lifetime risk is higher than someone without the mutation. The exact risk depends on the specific gene involved, family history, age, and other health factors. Lifestyle choices such as maintaining a healthy weight, exercising regularly, limiting alcohol, and avoiding tobacco may help reduce overall cancer risk. Doctors may recommend enhanced screening with mammograms and MRI scans. Some individuals may consider preventive medications or surgery depending on their risk level. Regular follow up and personalized medical guidance are essential for managing inherited cancer risk effectively.
If genetic testing identifies a harmful mutation, your healthcare team will discuss the next steps based on your individual risk. You may need earlier and more frequent breast screening using mammography and MRI. Some people are advised to consider preventive medications that reduce breast cancer risk. Others with very high risk may discuss preventive surgery with their specialists. Family members may also benefit from genetic counseling and testing because they could carry the same mutation. A positive test result helps doctors create a personalized care plan rather than predicting that cancer will definitely occur. Ongoing follow up supports informed decisions and early detection.
Yes, men can inherit the same breast cancer related gene mutations as women. BRCA2 mutations are particularly associated with an increased risk of male breast cancer. Men with these mutations may also have higher risks of prostate, pancreatic, and certain other cancers. Although male breast cancer is rare, inherited mutations make screening and awareness more important. Men with a strong family history of breast or ovarian cancer should discuss genetic counseling with their doctor. Identifying a mutation helps guide appropriate screening and preventive care. It also provides important information that may benefit children, siblings, and other close relatives.
Genetic counseling helps people understand their inherited risk of breast cancer before and after genetic testing. A trained counselor reviews your personal and family medical history to determine whether testing is appropriate. They explain the benefits, limitations, and possible outcomes of genetic testing. If a mutation is identified, they discuss screening options, preventive measures, and treatment considerations. Genetic counseling also helps family members understand whether they should consider testing. It provides emotional support while helping patients make informed healthcare decisions. Working with a genetic counselor ensures that genetic test results are interpreted accurately and used to create a personalized cancer prevention and monitoring plan.
Disclaimer: The information provided in this blog is intended for general knowledge and informational purposes only, and does not constitute medical advice. Always consult with a qualified healthcare professional for any medical concerns or before making any decisions about your health.

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