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Role of Chromodomain-Helicase-DNA-Binding Protein 4 (CHD4) in Breast Cancer
Apolonia Novillo1, Ana Fernández-Santander2, Maria Gaibar3
1Department of Pre-clinical Dentistry, Faculty of Biomedical and Health Sciences, Universidad Europea de Madrid, Villaviciosa de Odón, Madrid, Spain.
Abstract:
Chromodomain-helicase-DNA-binding protein 4 (CHD4) is an epigenetic regulator identified as an oncogenic element that may provide a novel therapeutic target for the treatment of breast cancer (BC). CHD4-the core component of the nucleosome remodeling and deacetylase (NuRD) complex-may be mutated in patients with this disease. However, information on CHD4 mutants that might allow their use as biomarkers of therapeutic success and prognosis is lacking. The present work examines mutations in CHD4 reported in patients with breast cancer and included in public databases and attempts to identify their roles in its development. The databases revealed 81 point mutations across different types of breast cancer (19 of which also appeared in endometrial, intestinal, nervous system, kidney, and lymphoid organ cancers). 71.6% of the detected mutations were missense mutations, 13.6% were silent, and 6.2% nonsense. Over 50% affected conserved residues of the ATPase motor (ATPase and helicase domains), and domains of unknown function in the C-terminal region. Thirty one mutations were classified in the databases as either 'deleterious', 'probably/possibly damaging' or as 'high/medium pathogenic'; another five nonsense and one splice-site variant were predicted to produce potentially harmful truncated proteins. Eight of the 81 mutations were categorized as putative driver mutations and have been found in other cancer types. Some mutations seem to influence ATPase and DNA translocation activities (R1162W), while others may alter protein stability (R877Q/H, R975H) or disrupt DNA binding and protein activity (R572*, X34_splice) suggesting CHD4 function may be affected. In vivo tumorigenecity studies in endometrial cancer have revealed R975H and R1162W as mutations that lead to CHD4 loss-of-function. Our study provides insight into the molecular mechanism whereby CHD4, and some of its mutants could play a role in breast cancer and suggest important implications for the biological comprehension and prognosis of breast cancer, identifying CHD4 as a novel therapeutic target for BC patients.
Insights
Chromodomain-helicase-DNA-binding protein 4 (CHD4) mutations are linked to breast cancer development and prognosis. Studying these CHD4 variants offers insights into cancer mechanisms and identifies potential therapeutic targets for breast cancer patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Chromodomain-helicase-DNA-binding protein 4 (CHD4) is an epigenetic regulator and a core component of the NuRD complex.
- CHD4 is implicated as an oncogenic factor in breast cancer (BC), suggesting its potential as a therapeutic target.
- Limited information exists on specific CHD4 mutations and their utility as biomarkers for therapeutic success and prognosis in BC.
Purpose of the Study:
- To investigate CHD4 mutations in breast cancer patients using public databases.
- To identify the functional roles of these CHD4 mutations in breast cancer development.
- To explore the potential of CHD4 and its mutants as biomarkers and therapeutic targets in breast cancer.
Main Methods:
- Analysis of CHD4 mutations reported in breast cancer patients within public databases.
- Classification of mutations based on predicted pathogenicity and impact on protein domains.
- Review of existing literature and in vivo studies on CHD4 mutant functions.
Main Results:
- Identified 81 point mutations in CHD4 across various breast cancer types, with 19 also found in other cancers.
- Over 50% of mutations affected conserved residues in critical functional domains (ATPase, helicase).
- Thirty-one mutations were classified as deleterious or damaging, with some predicted to cause loss-of-function or affect protein activity.
Conclusions:
- CHD4 mutations play a role in breast cancer development and progression.
- Specific CHD4 mutants may serve as biomarkers for prognosis and therapeutic response.
- CHD4 represents a promising novel therapeutic target for breast cancer treatment.
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