JAK1基因敲除HEK293细胞

JAK1基因敲除HEK293细胞
货号:

EDJ-KQ17827

物种:

细胞名称:

HEK293

基因名称:

JAK1

基因ID:

3716

规格:

1×10⁶cells

JAK1基因敲除细胞HEK293是由艾迪基因优化的CRISPR/Cas9编辑而成,采用Sanger测序法验证敲除,保证单克隆,活性良好。
货号 EDJ-KQ17827
产品名称 JAK1 Knockout HEK293 Cell Line
细胞 HEK293
Cellosaurus ID CVCL_0045
细胞别名 Hek293, HEK-293, HEK/293, (HEK)293, HEK 293, HEK,293, 293, 293 HEK, 293 Ad5, Graham 293, Graham-293, Human Embryonic Kidney 293
基因 JAK1
基因ID
基因别名 AIIDE|JAK1A|JAK1B|JTK3
摘要
This gene encodes a membrane protein that is a member of a class of protein-tyrosine kinases (PTK) characterized by the presence of a second phosphotransferase-related domain immediately N-terminal to the PTK domain. The encoded kinase phosphorylates STAT proteins (signal transducers and activators of transcription) and plays a key role in interferon-alpha/beta, interferon-gamma, and cytokine signal transduction. This gene plays a crucial role in effecting the expression of genes that mediate inflammation, epithelial remodeling, and metastatic cancer progression. This gene is a key component of the interleukin-6 (IL-6)/JAK1/STAT3 immune and inflammation response and is a therapeutic target for alleviating cytokine storms. The kinase activity of this gene is directly inhibited by the suppressor of cytokine signalling 1 (SOCS1) protein. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Jul 2020]
癌症类型 Non-tumor
细胞形态 Adherent
传代比率 1/2~1/4
完全培养基 DMEM + 10% FBS
冻存培养基 95%完全培养基+ 5% DMSO
* 仅供科研使用,不适用于人体或动物,包括临床、治疗或诊断用途。
Loci送检细胞STR信息
送检细胞名: HEK293
细胞库细胞STR信息
细胞库细胞名: HEK293
Allele1Allele2Allele1 Allele2
AmelogeninXX
CSF1P0121112
D2S13381919
D3S135815171517
D5S818889
D7S82011121112
D8S117912141214
D13S31712141214
D16S539913913
D18S5117181718
D19S43315181518
D21S112830.22830.2
FGA2323
Penta D910910
Penta E715715
TH0179.379.3
TPOX1111
vWA16191619
D6S10431111
D12S39119211115
D2S44111151115
* 该细胞系与收录于ATCC, DSMZ, JCRB 和 RIKEN数据库的细胞系STR数据匹配。
结论:该细胞 STR 鉴定正确。
* 研究用途免责声明:本内容基于公开的研究数据、生物信息学资源及计算分析生成,仅供研究参考。

相关研究文献

IF=6.6
Science signaling
Janus kinases (JAKs) bind to class I and II cytokine receptors, activating signaling and regulating gene transcription through signal transducer and activator of transcription (STAT) proteins. Type I interferons (IFNs) require the JAK members TYK2 and JAK1, which bind to the receptor subunits IFNAR1 and IFNAR2, respectively. We investigated the role of JAKs in regulating IFNAR signaling activity. Synthetic IFNARs in which the extracellular domains of IFNAR1 and IFNAR2 are replaced with nanobodies had near-native type I IFN signaling, whereas the homomeric variant of IFNAR2 initiated much weaker signaling, despite harboring docking sites for JAKs and STATs. Cells with JAK1 and TYK2 knockout (KO) showed residual signaling, suggesting partial complementation by the remaining JAKs, particularly when they were overexpressed. Live-cell micropatterning experiments confirmed the promiscuous binding of JAK1, JAK2, and TYK2 to IFNAR1 and IFNAR2, and their recruitment correlated with their relative cellular abundances. However, each JAK had a different efficacy in inducing cross-phosphorylation and downstream signaling. JAK binding was also promiscuous for other cytokine receptors, including IFN-L1, IL-10Rβ, TPOR, and GHR, but not for EPOR, which activated different downstream signaling pathways. These findings suggest that competitive binding of JAKs to cytokine receptors together with the varying absolute and relative abundances of the JAKs in different cell types can account for the cell type-dependent signaling pleiotropy of cytokine receptors.
IF=5.4
Virulence
Encephalomyocarditis virus (EMCV), an important zoonotic pathogen, causes an acute disease characterized primarily by encephalitis and myocarditis. Interferon (IFN) activates the JAK-STAT signaling pathway to induce the expression of interferon-stimulated genes (ISGs), resulting in antiviral effects. However, the mechanism through which EMCV evades the immune system via the IFN-mediated JAK-STAT signaling pathway remains poorly understood. Here, we identified an E3 ubiquitin ligase, RNF149, that is upregulated in EMCV-infected cells. Overexpression of RNF149 inhibited type I IFN-mediated JAK-STAT signaling pathway activation and its antiviral response, enhancing viral replication. Knockout of RNF149 promoted ISGs expression. Notably, RNF149 interacted with JAK1 and downregulated its protein expression through the E3 ubiquitin ligase. RNF149 promoted the K27- and K33-linked ubiquitination of JAK1, which promoted JAK1 degradation through the proteasome pathway. Taken together, these data describe a negative regulatory mechanism involving RNF149 in interferon antiviral activity and provide insights into the mechanism by which EMCV evades host antiviral immunity. These results provide a new strategy for treating viral infections.
该敲除模型可用于: - 研究JAK1依赖性细胞因子信号及其在受体结合混杂性和信号效率中的作用。 - 研究病毒免疫逃逸机制,特别是宿主因子如RNF149对JAK1的泛素化和降解。 - 验证JAK1作为干扰素介导的抗病毒反应中的靶点。 - 探索细胞因子多效性及JAK1对差异信号结果的贡献。 - 筛选感染或炎症疾病背景下调节JAK1活性的小分子或生物制剂。

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