Brd4-flox Mouse
一般名
Brd4-flox
製品ID
S-CKO-12283
背景情報
C57BL/6NCya
系統ID
CKOCMP-57261-Brd4-B6N-VA
状況
このマウス系統を論文で使用する場合は、「Brd4-flox Mouse(カタログ番号S-CKO-12283)はサイアジェンから購入しました。」と引用してください。
製品タイプ
年齢
遺伝子型
性別
数量
標準的な配送方法では、少なくとも3匹のヘテロ接合体キャリアを保証しています。ホモ接合体キャリアや指定された性別の個体の繁殖サービスも利用可能です。
基本情報
系統名
Brd4-flox
系統ID
CKOCMP-57261-Brd4-B6N-VA
遺伝子名
製品ID
S-CKO-12283
遺伝子別名
Brd5, MCAP, HUNK1, WI-11513
遺伝子別名
C57BL/6NCya
NCBI ID
修正
Conditional knockout
染色体
Chr 17
表現型
アプリケーション
--
さらに
系統詳細
EnsemblトランスクリプトID
ENSMUST00000003726
NCBIトランスクリプトID
NM_001286630
ターゲット領域
Exon 4~5
有効領域の大きさ
~2.1 kb
遺伝子研究の概要
Brd4, a member of the Bromodomain and Extraterminal (BET) protein family, is an epigenetic reader that binds to acetylated histone marks. It plays pleiotropic roles in regulating gene transcription, especially in the organization of super-enhancers (SEs) and the expression of oncogenes. Additionally, Brd4 is involved in maintaining genome stability, controlling DNA damage checkpoint activation, repair, and telomere maintenance [1]. It also participates in multiple cellular processes relevant to various diseases, such as cell proliferation, apoptosis, and different forms of programmed cell death [7].
In cancer, inhibition of Brd4 can disrupt the communication between SEs and target promoters, leading to cell-specific repression of oncogenes and subsequent cell death [1]. For example, in glioblastoma, several Brd4 inhibitors and degraders have shown promise in suppressing the disease, though the exact role and mechanism in its pathogenesis are yet to be fully elucidated [2]. In NUT carcinoma, the BRD4-NUT fusion oncoprotein drives the disease, potentially acting through the formation of massive super-enhancers [4]. In acute gouty arthritis, targeting Brd4 can prevent the disease by regulating pyroptosis [3]. Also, Brd4 is involved in the life-cycle of human papillomaviruses and is a potential target for associated cancers [5]. In lung diseases, Brd4 has been identified as a potential therapeutic target [6].
In conclusion, Brd4 is a crucial protein involved in gene transcription regulation and genome stability maintenance. Its role in various diseases, especially cancer, has been well-studied through in vivo and in vitro experiments. Research on Brd4, including gene knockout (KO) or conditional knockout (CKO) mouse models, has provided insights into its functions in specific biological processes and disease conditions, highlighting its potential as a therapeutic target.
References:
1. Donati, Benedetta, Lorenzini, Eugenia, Ciarrocchi, Alessia. 2018. BRD4 and Cancer: going beyond transcriptional regulation. In Molecular cancer, 17, 164. doi:10.1186/s12943-018-0915-9. https://pubmed.ncbi.nlm.nih.gov/30466442/
2. Duan, Weichen, Yu, Miao, Chen, Jiajia. 2023. BRD4: New hope in the battle against glioblastoma. In Pharmacological research, 191, 106767. doi:10.1016/j.phrs.2023.106767. https://pubmed.ncbi.nlm.nih.gov/37061146/
3. Hao, Kun, Jiang, Wenjiao, Zhou, Mengze, Jiang, Fei, Hu, Qinghua. 2020. Targeting BRD4 prevents acute gouty arthritis by regulating pyroptosis. In International journal of biological sciences, 16, 3163-3173. doi:10.7150/ijbs.46153. https://pubmed.ncbi.nlm.nih.gov/33162822/
4. Eagen, Kyle P, French, Christopher A. 2021. Supercharging BRD4 with NUT in carcinoma. In Oncogene, 40, 1396-1408. doi:10.1038/s41388-020-01625-0. https://pubmed.ncbi.nlm.nih.gov/33452461/
5. Rani, Abdul Qawee, Bonam, Srinivasa Reddy, Zhou, Jia, Hu, Haitao, Liu, Xuefeng. . BRD4 as a potential target for human papillomaviruses associated cancer. In Journal of medical virology, 95, e29294. doi:10.1002/jmv.29294. https://pubmed.ncbi.nlm.nih.gov/38100650/
6. Guo, Xia, Olajuyin, Ayobami, Tucker, Torry A, Idell, Steven, Qian, Guoqing. 2023. BRD4 as a Therapeutic Target in Pulmonary Diseases. In International journal of molecular sciences, 24, . doi:10.3390/ijms241713231. https://pubmed.ncbi.nlm.nih.gov/37686037/
7. Hu, Jinfeng, Pan, Dun, Li, Guo, Chen, Kunqi, Hu, Xiangming. 2022. Regulation of programmed cell death by Brd4. In Cell death & disease, 13, 1059. doi:10.1038/s41419-022-05505-1. https://pubmed.ncbi.nlm.nih.gov/36539410/
品質管理基準
精子検査
凍結前の精子濃度を測定し、精子の生存能力の判定します。
凍結後の精子では、各バッチから1本の凍結保存された精子を選び出し、体外受精に使用します。
環境基準:
SPF対応地域:
グローバル由来:
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