APOBEC3B-Mediated Cytidine Deamination Is Required for Estrogen Receptor Action in Breast Cancer

Autor: Simak Ali, Frances V. Fuller-Pace, Laki Buluwela, Luca Magnani, Naveenan Navaratnam, Roslin Russell, Carlos Caldas, Jason S. Carroll, Anna Maria Ochocka, Manikandan Periyasamy, Van T. M. Nguyen, Hetal Patel, Ross S. Thomas, Chun-Fui Lai, Wilbert Zwart, Alison Harrod, Balázs Győrffy, Ekaterina Nevedomskaya, Judit Remenyi, R. Charles Coombes
Přispěvatelé: Breast Cancer Now, Cancer Research UK, Caldas, Carlos [0000-0003-3547-1489], Carroll, Jason [0000-0003-3643-0080], Apollo - University of Cambridge Repository
Rok vydání: 2015
Předmět:
DNA End-Joining Repair
Transcription
Genetic

Estrogen receptor
Cytidine
DOUBLE-STRAND BREAKS
0601 Biochemistry and Cell Biology
ACTIVATION
chemistry.chemical_compound
Cytidine deamination
TRANSCRIPTION
RNA
Small Interfering

lcsh:QH301-705.5
GENE-EXPRESSION
Regulation of gene expression
Cytidine deaminase
Base excision repair
Prognosis
Gene Expression Regulation
Neoplastic

Deamination
DNA-REPAIR
APOBEC3B
Female
Trefoil Factor-1
Life Sciences & Biomedicine
Protein Binding
Signal Transduction
Breast Neoplasms
Biology
Article
OVARIAN-CANCER
DEMETHYLATION
General Biochemistry
Genetics and Molecular Biology

MECHANISMS
Minor Histocompatibility Antigens
Cell Line
Tumor

Cytidine Deaminase
Humans
Cell Proliferation
Science & Technology
Binding Sites
Tumor Suppressor Proteins
Estrogen Receptor alpha
Cell Biology
DNA
Survival Analysis
Molecular biology
ALPHA
lcsh:Biology (General)
chemistry
1116 Medical Physiology
Cancer research
Estrogen receptor alpha
DNA Damage
Zdroj: Cell Reports
Cell Reports, Vol 13, Iss 1, Pp 108-121 (2015)
ISSN: 2211-1247
DOI: 10.1016/j.celrep.2015.08.066
Popis: Summary Estrogen receptor α (ERα) is the key transcriptional driver in a large proportion of breast cancers. We report that APOBEC3B (A3B) is required for regulation of gene expression by ER and acts by causing C-to-U deamination at ER binding regions. We show that these C-to-U changes lead to the generation of DNA strand breaks through activation of base excision repair (BER) and to repair by non-homologous end-joining (NHEJ) pathways. We provide evidence that transient cytidine deamination by A3B aids chromatin modification and remodelling at the regulatory regions of ER target genes that promotes their expression. A3B expression is associated with poor patient survival in ER+ breast cancer, reinforcing the physiological significance of A3B for ER action.
Graphical Abstract
Highlights • APOBEC3B is associated with poor survival in ER+ breast cancer patients • APOBEC3B controls breast cancer cell growth by promoting ER transcriptional activity • APOBEC3B can cause C-to-U mutations at ER target genes, to activate DNA repair • Repair of APOBEC3B-induced lesions allows chromatin remodelling that stimulates gene expression
Periyasamy et al. show that APOBEC3B is required for the regulation of gene expression by the estrogen receptor in breast cancer cells. They report APOBEC3B can promote cytidine deamination at gene regulatory regions, with consequent repair providing a mechanism for chromatin remodelling that facilitates gene expression.
Databáze: OpenAIRE