Ndufa9-flox Mouse
一般名
Ndufa9-flox
製品ID
S-CKO-18111
背景情報
C57BL/6JCya
系統ID
CKOCMP-66108-Ndufa9-B6J-VB
状況
このマウス系統を論文で使用する場合は、「Ndufa9-flox Mouse(カタログ番号S-CKO-18111)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
Ndufa9-flox
系統ID
CKOCMP-66108-Ndufa9-B6J-VB
遺伝子名
製品ID
S-CKO-18111
遺伝子別名
1010001N11Rik
遺伝子別名
C57BL/6JCya
NCBI ID
修正
Conditional knockout
染色体
Chr 6
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
ENSMUST00000205002
NCBIトランスクリプトID
NM_025358
ターゲット領域
Exon 2~3
有効領域の大きさ
~1.4 kb
遺伝子研究の概要
Ndufa9, or NADH dehydrogenase [ubiquinone] 1 alpha subcomplex subunit 9, is closely associated with the activity and function of mitochondrial respiratory chain complex I [1]. Mitochondrial respiratory chain complex I consists of 44 different subunits and 3 functional modules, with Ndufa9 being a Q-module subunit required for complex I assembly or stability [2]. The gene plays a crucial role in cellular energy production via oxidative phosphorylation and is essential for normal mitochondrial function.
In mice, Ndufa9 promotes mitochondrial respiration, thermogenesis, and the browning of white adipose tissue. When Ndufa9 was studied in white fat browning model mice, it was found to enhance mitochondrial function, mitochondrial complex I activity, ATP synthesis, and mitochondrial respiration, all of which contribute to the browning process [1]. In addition, gene knockout using transcription activator-like effector nucleases (TALENs) in HEK293T cells showed that loss of Ndufa9 led to impaired assembly of complex I, with cells unable to grow in galactose medium. Re-expression of Ndufa9 restored the defects in complex I assembly, indicating its role in stabilizing the junction between membrane and matrix arms of complex I, a late and critical step for complex I biogenesis and activity [3].
Mutations in Ndufa9 have also been linked to Leigh syndrome. For example, via exome sequencing, a novel homozygous Ndufa9 missense variant was identified in a patient with childhood-onset progressive generalized dystonia and axonal peripheral neuropathy. Complex I assembly analysis in patient fibroblasts showed reduced complex I abundance and an accumulation of Q-module subassemblies, with the severity of the clinical phenotype correlating with the severity of the effects of the Ndufa9 variant on complex I assembly [2]. A pathogenic mutation in Ndufa9 was also found in a Kurdish patient with neonatally fatal Leigh syndrome and complex I deficiency, and lentiviral transduction with wild-type Ndufa9 restored complex I activity in the patient's fibroblasts [4].
In conclusion, Ndufa9 is essential for mitochondrial respiratory chain complex I assembly and function. Studies using mouse models and gene knockout experiments have revealed its role in processes like white adipose tissue browning and its association with Leigh syndrome. These findings provide important insights into the mechanisms of energy metabolism-related biological processes and mitochondrial-associated diseases, potentially guiding future research and treatment strategies in these areas.
References:
1. Liu, Yuexia, Liu, Zunhai, Ren, Zeyu, Qiu, Guiping, Sun, Chao. 2024. NDUFA9 and its crotonylation modification promote browning of white adipocytes by activating mitochondrial function in mice. In The international journal of biochemistry & cell biology, 171, 106583. doi:10.1016/j.biocel.2024.106583. https://pubmed.ncbi.nlm.nih.gov/38657899/
2. Baertling, F, Sánchez-Caballero, L, van den Brand, M A M, Rodenburg, R J T, Nijtmans, L G J. 2017. NDUFA9 point mutations cause a variable mitochondrial complex I assembly defect. In Clinical genetics, 93, 111-118. doi:10.1111/cge.13089. https://pubmed.ncbi.nlm.nih.gov/28671271/
3. Stroud, David A, Formosa, Luke E, Wijeyeratne, Xiaonan W, Nguyen, Thanh N, Ryan, Michael T. 2012. Gene knockout using transcription activator-like effector nucleases (TALENs) reveals that human NDUFA9 protein is essential for stabilizing the junction between membrane and matrix arms of complex I. In The Journal of biological chemistry, 288, 1685-90. doi:10.1074/jbc.C112.436766. https://pubmed.ncbi.nlm.nih.gov/23223238/
4. van den Bosch, B J C, Gerards, M, Sluiter, W, de Coo, I F M, Smeets, H J M. 2011. Defective NDUFA9 as a novel cause of neonatally fatal complex I disease. In Journal of medical genetics, 49, 10-5. doi:10.1136/jmedgenet-2011-100466. https://pubmed.ncbi.nlm.nih.gov/22114105/
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:
Cyagenお問い合わせ
カスタムの動物モデルに関するご相談は、下記のフォームにご記入いただき、ご連絡いただくか見積もりをご依頼ください。
Cyagenはお客様のプライバシーを大変重視しています。当社の最新の製品や情報をお届けしたいと思っています。お客様の設定をご確認ください。
これらの配信はいつでも解除できます。配信停止方法およびデータ保護の詳細は プライバシーポリシー をご確認ください。
以下のボタンをクリックすることで、このフォームにご入力いただいた個人情報をCyagenが保存・処理し、ご要望のコンテンツを提供することに同意されたことになります。
