Tmem173-KO

品系全名

C57BL/6JSmo-Tmem173em1Smoc

目录号

NM-KO-2105967

品系状态

活体

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品系描述

敲除Tmem173基因exon 4-6,建立Tmem173基因敲除小鼠模型。

验证数据

image.png

Fig.1 Detection of mouse Tmem173 expression in the female C57BL/6 WT mouse (8-10 weeks old) and Tmem173-KO mice (9 weeks old) by WB. 

Abbr. M, marker; WT, wild type; HO, Homozygous.


发表文献 12篇

1. STING Drives Psoriatic Inflammation by Promoting Neutrophil Recruitment and Facilitating NETosis
发表年份:2026 来源杂志:IMMUNOLOGY

2. Disturbance of cytoskeleton induced by ligustilide promotes hepatic stellate cell senescence and ameliorates liver fibrosis
发表年份:2025 来源杂志:Theranostics

3. Interferon-driven CAF reprogramming augments immunogenic response to neoadjuvant radiotherapy in colorectal cancer
发表年份:2025 来源杂志:Cell Reports Medicine

4. cGAMP promotes inner blood-retinal barrier breakdown through P2RX7-mediated transportation into microglia
发表年份:2025 来源杂志:Journal of Neuroinflammation

5. STING activates ZBP1-mediated PANoptosis to defend against HSV-1 retinal infection
发表年份:2025 来源杂志:Journal of Neuroinflammation

6. ATG16L1 restrains macrophage NLRP3 activation and alveolar epithelial cell injury during septic lung injury
发表年份:2025 来源杂志:Clinical and Translational Medicine

7. miR-208a-3p Targets PPP6C to Regulate the Progression of Radiation-Induced Pneumonia
发表年份:2025 来源杂志:ANTIOXIDANTS & REDOX SIGNALING

8. Glycolysis drives STING signaling to facilitate dendritic cell antitumor function
发表年份:2023 来源杂志:JOURNAL OF CLINICAL INVESTIGATION

9. Defective efferocytosis by aged macrophages promotes STING signaling mediated inflammatory liver injury
发表年份:2023 来源杂志:Cell Death Discovery

10. XBP1-mediated activation of the STING signalling pathway in macrophages contributes to liver fibrosis progression
发表年份:2022 来源杂志:JHEP Reports

11. Mitochondrial DNA mediates immunoparalysis of dendritic cells in sepsis via STING signalling
发表年份:2022 来源杂志:CELL PROLIFERATION

12. Gelsevirine improves age-related and surgically induced osteoarthritis in mice by reducing STING availability and local inflammation
发表年份:2022 来源杂志:BIOCHEMICAL PHARMACOLOGY

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