IRF1基因敲除Hela细胞

IRF1基因敲除Hela细胞
货号:

EDJ-KQ21086

物种:

细胞名称:

HeLa

基因名称:

IRF1

基因ID:

3659

规格:

1×10⁶cells

IRF1基因敲除细胞Hela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-KQ21086
产品名称 IRF1 Knockout Hela Cell Line
细胞 Hela
Cellosaurus ID CVCL_0030
细胞别名 HELA, Hela, He La, He-La, HeLa-CCL2, Henrietta Lacks cells, Helacyton gartleri
基因 IRF1
基因ID
基因别名 IMD117|IRF-1|MAR
摘要
The protein encoded by this gene is a transcriptional regulator and tumor suppressor, serving as an activator of genes involved in both innate and acquired immune responses. The encoded protein activates the transcription of genes involved in the body's response to viruses and bacteria, playing a role in cell proliferation, apoptosis, the immune response, and DNA damage response. This protein represses the transcription of several other genes. As a tumor suppressor, it both suppresses tumor cell growth and stimulates an immune response against tumor cells. Defects in this gene have been associated with gastric cancer, myelogenous leukemia, and lung cancer. [provided by RefSeq, Aug 2017]
癌症类型 Cervical Carcinoma
细胞形态 Adherent
传代比率 1/5, 2days
完全培养基 MEM + 10% FBS
冻存培养基 70%完全培养基+ 20% FBS+ 10% 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: HeLa
细胞库细胞STR信息
细胞库细胞名: HeLa
Allele1Allele2Allele1 Allele2
AmelogeninXX
CSF1PO910910
D1S165612151215
D2S13381717
D3S135815181518
D5S81811121112
D6S10431818
D7S820812812
D8S117912131213
D12S39120252025
D13S31712141214
D16S539910910
D18S511616
D19S43313141314
D21S1127282728
FGA18211821
Penta D815815
Penta E717717
TPOX812812
VWA16181618
* 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=3.9
The Journal of biological chemistry
Interferon regulatory factor 1 (IRF1) plays a pivotal role in interferon (IFN) signaling. Here, we dissect the impact of IRF1 on gene transcription regulation in HeLa cells, by targeted knockout (KO) or overexpression of IRF1. IRF1 KO partially diminished IFN-γ but not IFN-β induced gene regulation. IRF1 KO did show a homeostatic role in basal transcript abundance, including increasing the abundance of antiviral gene transcripts, apparently through increased expression of other IRF genes. IRF1 overexpression induced potent antiviral protection, which is mediated by secretion of type I IFN proteins, particularly of IFN-α subtypes, which expression is driven by IRF1. This paracrine effect was confirmed by transcriptomics, cytokine profiling, and mass spectrometry. Surprisingly, antiviral protection was observed also in JAK1 KO or ruxolitinib-treated cells but not in type I IFN receptor KO cells, suggesting the involvement of noncanonical signaling pathways. Hierarchical clustering of RNA-seq data revealed distinct IFN-independent gene clusters activated or repressed by IRF1, including pathways related to adaptive immunity and T cell function. Using protein-binding microarrays and predictive modeling, we generated an energy-normalized binding matrix for IRF1, enabling sequence-specific prediction of promoter-binding affinities beyond classical consensus motifs. This approach allows estimation of IRF1-binding potential across diverse genomic contexts as validated for the IFIT2 gene promoter by a reporter assay. Evaluating the biological significance of our study, we show that IRF1 abundance varies by 10,000-fold between cell lines, with positive correlations of IRF1 with the abundance of gene transcripts involved in antiviral and immune-driving activities.
IF=3.4
Journal of immunology (Baltimore, Md. : 1950)
IL-17A plays an essential role in the pathogenesis of many autoimmune diseases, including psoriasis and multiple sclerosis. Act1 is a critical adaptor in the IL-17A signaling pathway. In this study, we report that an anti-sense long noncoding RNA, , regulates Act1 expression and IL-17A signaling by recruiting SRSF10, which downregulates the expression of IRF1, a transcriptional factor of Act1. Interestingly, we found that a psoriasis-susceptible variant of A4165G (rs13210247) is a gain-of-function mutant. Furthermore, we identified a mouse gene that is homologous to and has a similar ability to regulate Act1 expression and IL-17A signaling. Importantly, treatment with lentiviruses expressing or SRSF10 yielded therapeutic effects in mouse models of psoriasis and experimental autoimmune encephalomyelitis. These findings suggest that and/or SRSF10 may represent attractive therapeutic targets in the treatment of IL-17-related autoimmune diseases, such as psoriasis and multiple sclerosis.
该敲除模型可用于: - 研究IRF1作为基础免疫和抗病毒准备的状态依赖性调节因子的作用。 - 研究稳态免疫信号通路及其在感染或炎症中的扰动。 - 验证IRF1依赖性干扰素和先天免疫反应的功能。 - 筛选IRF1介导的抗病毒或免疫检查点机制的调节剂。 - 使用人上皮癌细胞模型探索细胞类型特异性免疫调节。

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