Identification of estrogen-responsive genes based on the DNA binding properties of estrogen receptors using high-throughput sequencing technology
Estrogens are important endocrine hormones that control physiological functions in reproductive organs, and play a pivotal role in the generation and progression of breast cancer. Therapeutic drugs including anti-estrogen and aromatase inhibitors are used to treat patients with breast cancer. The es...
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Published in | Acta pharmacologica Sinica Vol. 36; no. 1; pp. 24 - 31 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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London
Nature Publishing Group UK
01.01.2015
Nature Publishing Group |
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Abstract | Estrogens are important endocrine hormones that control physiological functions in reproductive organs, and play a pivotal role in the generation and progression of breast cancer. Therapeutic drugs including anti-estrogen and aromatase inhibitors are used to treat patients with breast cancer. The estrogen receptors, ERa and ERβ, function as hormone-dependent transcription factors that directly regulate the expression of their target genes. Therefore, a better understanding of the function and regulation of estrogen-responsive genes provides insight into the gene regulation network associated with breast cancer. Recent technological developments in high- throughput sequencing have enabled the genome-wide identification of estrogen-responsive genes. Further elucidating the estrogen gene cascade is critical for advancements in the diagnosis and treatment of breast cancer. |
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AbstractList | Estrogens are important endocrine hormones that control physiological functions in reproductive organs, and play a pivotal role in the generation and progression of breast cancer. Therapeutic drugs including anti-estrogen and aromatase inhibitors are used to treat patients with breast cancer. The estrogen receptors, ERα and ERβ, function as hormone-dependent transcription factors that directly regulate the expression of their target genes. Therefore, a better understanding of the function and regulation of estrogen-responsive genes provides insight into the gene regulation network associated with breast cancer. Recent technological developments in high-throughput sequencing have enabled the genome-wide identification of estrogen-responsive genes. Further elucidating the estrogen gene cascade is critical for advancements in the diagnosis and treatment of breast cancer. Estrogens are important endocrine hormones that control physiological functions in reproductive organs, and play a pivotal role in the generation and progression of breast cancer. Therapeutic drugs including anti-estrogen and aromatase inhibitors are used to treat patients with breast cancer. The estrogen receptors, ER alpha and ER beta , function as hormone-dependent transcription factors that directly regulate the expression of their target genes. Therefore, a better understanding of the function and regulation of estrogen-responsive genes provides insight into the gene regulation network associated with breast cancer. Recent technological developments in high-throughput sequencing have enabled the genome-wide identification of estrogen-responsive genes. Further elucidating the estrogen gene cascade is critical for advancements in the diagnosis and treatment of breast cancer. Estrogens are important endocrine hormones that control physiological functions in reproductive organs, and play a pivotal role in the generation and progression of breast cancer. Therapeutic drugs including anti-estrogen and aromatase inhibitors are used to treat patients with breast cancer. The estrogen receptors, ERa and ERβ, function as hormone-dependent transcription factors that directly regulate the expression of their target genes. Therefore, a better understanding of the function and regulation of estrogen-responsive genes provides insight into the gene regulation network associated with breast cancer. Recent technological developments in high- throughput sequencing have enabled the genome-wide identification of estrogen-responsive genes. Further elucidating the estrogen gene cascade is critical for advancements in the diagnosis and treatment of breast cancer. Estrogens are important endocrine hormones that control physiological functions in reproductive organs, and play a pivotal role in the generation and progression of breast cancer. Therapeutic drugs including anti-estrogen and aromatase inhibitors are used to treat patients with breast cancer. The estrogen receptors, ERα and ERβ, function as hormone-dependent transcription factors that directly regulate the expression of their target genes. Therefore, a better understanding of the function and regulation of estrogen-responsive genes provides insight into the gene regulation network associated with breast cancer. Recent technological developments in high-throughput sequencing have enabled the genome-wide identification of estrogen-responsive genes. Further elucidating the estrogen gene cascade is critical for advancements in the diagnosis and treatment of breast cancer.Estrogens are important endocrine hormones that control physiological functions in reproductive organs, and play a pivotal role in the generation and progression of breast cancer. Therapeutic drugs including anti-estrogen and aromatase inhibitors are used to treat patients with breast cancer. The estrogen receptors, ERα and ERβ, function as hormone-dependent transcription factors that directly regulate the expression of their target genes. Therefore, a better understanding of the function and regulation of estrogen-responsive genes provides insight into the gene regulation network associated with breast cancer. Recent technological developments in high-throughput sequencing have enabled the genome-wide identification of estrogen-responsive genes. Further elucidating the estrogen gene cascade is critical for advancements in the diagnosis and treatment of breast cancer. |
Author | Kazuhiro IKEDA Kuniko HORIE-INOUE Satoshi INOUE |
AuthorAffiliation | Division of Gene Regulation and Signal Transduction, Research Center for Genomic Medicine, Saitama Medical University, Saitama 350-1241, Japan Department of Anti-Aging Medicine, Graduate School of Medicine, The University of Tokyo, Tokyo 113-8655,Japan |
Author_xml | – sequence: 1 givenname: Kazuhiro surname: Ikeda fullname: Ikeda, Kazuhiro organization: Division of Gene Regulation and Signal Transduction, Research Center for Genomic Medicine, Saitama Medical University – sequence: 2 givenname: Kuniko surname: Horie-Inoue fullname: Horie-Inoue, Kuniko organization: Division of Gene Regulation and Signal Transduction, Research Center for Genomic Medicine, Saitama Medical University – sequence: 3 givenname: Satoshi surname: Inoue fullname: Inoue, Satoshi email: INOUE-GER@h.u-tokyo.ac.jp organization: Division of Gene Regulation and Signal Transduction, Research Center for Genomic Medicine, Saitama Medical University, Department of Anti-Aging Medicine, Graduate School of Medicine, The University of Tokyo |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/25500870$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Animals Biomedical and Life Sciences Biomedicine breast Breast Neoplasms - genetics cancer DNA-Binding Proteins - genetics estrogen Estrogens - genetics Female gene Gene Expression Regulation, Neoplastic - genetics high-throughput High-Throughput Nucleotide Sequencing - methods hormone Humans Immunology Internal Medicine Medical Microbiology nuclear Pharmacology/Toxicology receptor Receptors, Estrogen - genetics Review sequencing steroid technique transcription Vaccine |
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Title | Identification of estrogen-responsive genes based on the DNA binding properties of estrogen receptors using high-throughput sequencing technology |
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