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C57BL/6NCya-Rsad2em1/Cya
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C57BL/6NCya-Rsad2em1/Cya

Common Name
Rsad2-KO
Product ID
S-KO-11081
Backgroud
C57BL/6NCya
Strain ID
KOCMP-58185-Rsad2-B6N-VA
Status
Research and Development
When using this mouse strain in a publication, please cite “Rsad2-KO Mouse (Catalog S-KO-11081) were purchased from Cyagen.”
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The standard delivery applies for a guaranteed minimum of three heterozygous carriers. Breeding services for homozygous carriers and/or specified sex are available.
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Basic Information
Strain Name
Rsad2-KO
Strain ID
KOCMP-58185-Rsad2-B6N-VA
Gene Name
Rsad2
Product ID
S-KO-11081
Gene Alias
SAND, Vig1, cig5, 2510004L01Rik
Background
C57BL/6NCya
Gene Full Name
radical S-adenosyl methionine domain containing 2
Modification
Conventional knockout
NCBI ID
58185 (Mouse)
Phenotype
MGI:1929628
Chromosome
Chr 12 (Mouse)
Application
--
Datasheet
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Rare Disease Data Center >>
Strain Description
Ensembl Transcript ID
ENSMUST00000020970
NCBI Transcript ID
NM_021384
Target Region
Exon 2~3
Size of Effective Region
~3.6 kb
Overview of Gene Research
Rsad2, also known as viperin, is an interferon-stimulated gene encoding a protein belonging to the radical S-adenosylmethionine (SAM) superfamily of enzymes. It is involved in immunomodulation, mitochondrial metabolism, and exhibits broad-spectrum antiviral activity. It may influence the proliferation and development of immune cells as well as inflammation via different signaling pathways [2,4].

In mouse models, depletion of Rsad2 in pregnant mice exposed to type I interferon inducers significantly reduces lipid accumulation, vascular injury, and embryo development disorders, suggesting its role in pregnancy complications related to excessive type I interferon response in systemic lupus erythematosus (SLE) [1]. In BPA-treated mouse spermatocytes, interfering with Rsad2 expression restores the actin cytoskeleton and intracellular ATP levels, indicating its involvement in BPA-induced male reproductive toxicity [3].

In conclusion, Rsad2 is crucial in multiple biological processes and disease conditions. Its study through gene-knockout mouse models has revealed its significance in pregnancy-related complications in SLE and male reproductive toxicity induced by BPA, providing insights into potential therapeutic targets for these diseases.

References:
1. Ding, Xiaoyu, Zhou, Yonggang, Qiu, Xiaofeng, Fu, Binqing, Wei, Haiming. 2025. RSAD2: A pathogenic interferon-stimulated gene at the maternal-fetal interface of patients with systemic lupus erythematosus. In Cell reports. Medicine, 6, 101974. doi:10.1016/j.xcrm.2025.101974. https://pubmed.ncbi.nlm.nih.gov/39983716/
2. Chen, Siyan, Ye, Jiani, Lin, Yinfang, Gao, Sheng, Hua, Chunyan. 2024. Crucial Roles of RSAD2/viperin in Immunomodulation, Mitochondrial Metabolism and Autoimmune Diseases. In Inflammation, 48, 520-540. doi:10.1007/s10753-024-02076-5. https://pubmed.ncbi.nlm.nih.gov/38909344/
3. Jiang, Xiao, Sun, Shengqi, Shi, Chaofeng, Gu, Jing, Liu, Jinyi. 2024. Rsad2 mediates Bisphenol A-induced actin cytoskeletal disruption in mouse spermatocytes. In Journal of applied toxicology : JAT, 44, 1478-1488. doi:10.1002/jat.4649. https://pubmed.ncbi.nlm.nih.gov/38828519/
4. Honarmand Ebrahimi, Kourosh. . A unifying view of the broad-spectrum antiviral activity of RSAD2 (viperin) based on its radical-SAM chemistry. In Metallomics : integrated biometal science, 10, 539-552. doi:10.1039/C7MT00341B. https://pubmed.ncbi.nlm.nih.gov/29568838/
Quality Control Standard
Sperm Test

Pre-cryopreservation: Measurement of sperm concentration, determination of sperm viability.

Post-cryopreservation: A vial of cryopreserved sperms is selected for in-vitro fertilization from each batch.

Environmental Standards:SPF
Available Region:Global
Source:Cyagen
Publications
Nature Communications
2025-12-13
Activation of the RSAD2-YTHDF1 axis in smooth muscle causes inflammatory bowel disease via intercellular mitochondrial transfer
Read More
Cell Discovery
2025-04-08
Targeting Viperin prevents coxsackievirus B3-induced acute heart failure
Read More
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Global Antibody Drug Industry Development BlueBook (Frost & Sullivan)
Key Insights
The industry is undergoing a rapid transformation driven by next-generation modalities, globalized markets, and upstream technological innovations.
  • Market Structural Shift: Monoclonal antibodies drive steady growth, but ADCs and bispecifics are rapidly accelerating, reshaping the market with higher-value innovations.
  • Chinese Market Globalization: China is actively expanding globally, evidenced by a surge in high-value cross-border license-out deals.
  • Technology-Driven Efficiency: Advanced discovery engines—exemplified by Cyagen's HUGO-Ab platform and AI algorithms—are streamlining candidate screening, optimizing molecular design, and localizing the upstream supply chain.
  • Oncology-Focused Innovation: R&D pipelines remain heavily concentrated on high-incidence malignancies like non-small cell lung cancer, utilizing complex modalities to combat clinical resistance.
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