Slc39a14-flox Mouse
一般名
Slc39a14-flox
製品ID
S-CKO-05681
背景情報
C57BL/6JCya
系統ID
CKOCMP-213053-Slc39a14-B6J-VA
状況
このマウス系統を論文で使用する場合は、「Slc39a14-flox Mouse(カタログ番号S-CKO-05681)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
Slc39a14-flox
系統ID
CKOCMP-213053-Slc39a14-B6J-VA
遺伝子名
製品ID
S-CKO-05681
遺伝子別名
Zip14, ZIP-14, fad123, FAD-123
遺伝子別名
C57BL/6JCya
NCBI ID
修正
Conditional knockout
染色体
Chr 14
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
ENSMUST00000068044
NCBIトランスクリプトID
NM_144808
ターゲット領域
Exon 4
有効領域の大きさ
~1.1 kb
遺伝子研究の概要
Slc39a14, also known as ZIP14, is a metal transporter gene. It functions to transport metals such as zinc, non-transferrin-bound iron (NTBI), and manganese. It is involved in multiple biological pathways related to metal homeostasis, which is crucial for normal physiological functions. Genetic animal models, like knockout (KO) murine and zebrafish models, have been instrumental in studying its function [2,3,4,6,7].
In KO mouse models, deletion of Slc39a14/Zip14 causes spontaneous intestinal permeability, low-grade chronic inflammation, mild hyperinsulinemia, and greater body fat with insulin resistance in adipose. It also leads to a shift in gut microbial composition, increased fungi/bacteria ratio in the gut microbiome, and altered host energy metabolism [3]. In pancreatic β-cells, absence of Slc39a14/Zip14 results in greater glucose-stimulated insulin secretion, increased energy expenditure, and a shift in energy metabolism towards fatty acid utilization [4]. In zebrafish, loss of slc39a14 causes simultaneous manganese hypersensitivity and deficiency, with associated changes in calcium homeostasis, locomotor function, and visual responses [6]. Inhibition of Slc39a14 alleviates vascular calcification by intercepting iron-overload-induced ferroptosis in vascular smooth muscle cells [1]. Also, deleting hepatic Slc39a14 expression in Trf-LKO mice reduces hepatic iron accumulation and ferroptosis-mediated liver fibrosis [5]. In human liver allografts, knockdown of SLC39A14 mitigates ischemia-reperfusion injury by preventing hepatocyte ferroptosis [8].
In conclusion, Slc39a14 plays a vital role in metal homeostasis, which impacts various biological processes such as metabolism, gut microbiome regulation, and insulin secretion. The study of Slc39a14 KO models has provided insights into its functions in diseases like vascular calcification, liver fibrosis, and metabolic disorders, contributing to a better understanding of disease mechanisms and potential therapeutic targets.
References:
1. Aierken, Yierpani, He, Huqiang, Li, Runwen, Wu, Ya, Liu, Yong. 2024. Inhibition of Slc39a14/Slc39a8 reduce vascular calcification via alleviating iron overload induced ferroptosis in vascular smooth muscle cells. In Cardiovascular diabetology, 23, 186. doi:10.1186/s12933-024-02224-z. https://pubmed.ncbi.nlm.nih.gov/38812011/
2. Rodichkin, Alexander N, Guilarte, Tomás R. 2022. Hereditary Disorders of Manganese Metabolism: Pathophysiology of Childhood-Onset Dystonia-Parkinsonism in SLC39A14 Mutation Carriers and Genetic Animal Models. In International journal of molecular sciences, 23, . doi:10.3390/ijms232112833. https://pubmed.ncbi.nlm.nih.gov/36361624/
3. Mitchell, Samuel B, Thorn, Trista L, Lee, Min-Ting, Johnson, Elizabeth L, Aydemir, Tolunay B. 2023. Metal transporter SLC39A14/ZIP14 modulates regulation between the gut microbiome and host metabolism. In American journal of physiology. Gastrointestinal and liver physiology, 325, G593-G607. doi:10.1152/ajpgi.00091.2023. https://pubmed.ncbi.nlm.nih.gov/37873588/
4. Hung, Yu-Han, Kim, Yongeun, Mitchell, Samuel Blake, Thorn, Trista Lee, Aydemir, Tolunay Beker. 2023. Absence of Slc39a14/Zip14 in mouse pancreatic beta cells results in hyperinsulinemia. In American journal of physiology. Endocrinology and metabolism, 326, E92-E105. doi:10.1152/ajpendo.00117.2023. https://pubmed.ncbi.nlm.nih.gov/38019082/
5. Yu, Yingying, Jiang, Li, Wang, Hao, Min, Junxia, Wang, Fudi. . Hepatic transferrin plays a role in systemic iron homeostasis and liver ferroptosis. In Blood, 136, 726-739. doi:10.1182/blood.2019002907. https://pubmed.ncbi.nlm.nih.gov/32374849/
6. Tuschl, Karin, White, Richard J, Trivedi, Chintan, Wilson, Stephen W, Busch-Nentwich, Elisabeth M. 2022. Loss of slc39a14 causes simultaneous manganese hypersensitivity and deficiency in zebrafish. In Disease models & mechanisms, 15, . doi:10.1242/dmm.044594. https://pubmed.ncbi.nlm.nih.gov/35514229/
7. Aydemir, Tolunay B, Cousins, Robert J. . The Multiple Faces of the Metal Transporter ZIP14 (SLC39A14). In The Journal of nutrition, 148, 174-184. doi:10.1093/jn/nxx041. https://pubmed.ncbi.nlm.nih.gov/29490098/
8. Deng, Zhizhao, Zeng, Weiqi, Gao, Yingxin, Hei, Ziqing, Yuan, Dongdong. 2024. Mesenchymal Stem Cells Prevent SLC39A14-Dependent Hepatocyte Ferroptosis through Exosomal miR-16-5p in Liver Graft. In Advanced science (Weinheim, Baden-Wurttemberg, Germany), 12, e2411380. doi:10.1002/advs.202411380. https://pubmed.ncbi.nlm.nih.gov/39680749/
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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。
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