TMEM106B基因敲除HEK293细胞

TMEM106B基因敲除HEK293细胞
货号:

EDJ-KQ10810

物种:

细胞名称:

HEK293

基因名称:

TMEM106B

基因ID:

54664

规格:

1×10⁶cells

TMEM106B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-KQ10810
产品名称 TMEM106B 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 TMEM106B
基因ID
基因别名 HLD16
摘要
Enables ATPase binding activity. Involved in dendrite morphogenesis and lysosome localization. Located in endosome and lysosomal membrane. Implicated in hypomyelinating leukodystrophy 16. [provided by Alliance of Genome Resources, Jul 2025]
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=6.9
Cell reports
Angiotensin-converting enzyme 2 (ACE2) is the primary entry receptor for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), but ACE2-independent entry has been observed in vitro for strains with the spike-E484D substitution. Here, we conduct a whole-genome CRISPR-Cas9 knockout screen using SARS-CoV-2 mouse adapted 1 (SARS-CoV-2), which carries spike-E484D, to identify the ACE2-independent entry mechanisms. SARS-CoV-2 infection in HEK293T cells relies on heparan sulfate and endocytic pathways, with TMEM106B, a transmembrane lysosomal protein, the most significant contributor. While SARS-CoV-2 productively infects human brain organoids and K18-hACE2 mouse brains, it does not infect C57BL/6J or Ifnar mouse brains. This suggests that ACE2-independent entry via TMEM106B, which is predominantly expressed in the brain, does not overtly increase the risk of SARS-CoV-2 neuroinvasiveness in mice with endogenous Ace2 expression. Importantly, SARS-CoV-2 does not replicate in the Ace2 mouse respiratory tract. Overall, this suggests that robust ACE2-independent infection by SARS-CoV-2 is likely an in vitro phenomenon with no apparent implications for infection in vivo.
IF=5.1
Communications biology
TMEM106B is an endolysosomal transmembrane protein not only associated with multiple neurological disorders including frontotemporal dementia, Alzheimer's disease, and hypomyelinating leukodystrophy but also potentially involved in COVID-19. Additionally, recent studies have identified amyloid fibrils of C-terminal TMEM106B in both aged healthy and neurodegenerative brains. However, so far little is known about physiological functions of TMEM106B in the endolysosome and how TMEM106B is involved in a wide range of human conditions at molecular levels. Here, we performed lipidomic analysis of the brain of TMEM106B-deficient mice. We found that TMEM106B deficiency significantly decreases levels of two major classes of myelin lipids, galactosylceramide and its sulfated derivative sulfatide. Subsequent co-immunoprecipitation assay showed that TMEM106B physically interacts with galactosylceramidase. We also found that galactosylceramidase activity was significantly increased in TMEM106B-deficient brains. Thus, our results suggest that TMEM106B interacts with galactosylceramidase to regulate myelin lipid metabolism and have implications for TMEM106B-associated diseases.
IF=4.6
Journal of medical virology
Transmembrane protein 106B (TMEM106B) has been identified as a functional receptor facilitating ACE2-independent SARS-CoV-2 entry. However, its role in supporting a broad range of SARS-CoV-2 variants, including the emerging Omicron BA.2.86 and JN.1 subvariants, remains to be determined. To address this question, we generated 293- and A549-derived TMEM106B knockout cell lines and assessed their ability to support viral entry for various SARS-CoV-2 variants (D614G, E484D, Omicron BA.1, BA.2, XBB.1.5, BA.2.86, and JN.1) using pseudoviral infection systems. We also examined the role of transmembrane protease serine 2 (TMPRSS2) and other type II transmembrane serine proteases (TTSP) in viral entry and syncytium formation. Our results showed that TMEM106B knockout significantly reduced viral entry across all tested variants. Additionally, overexpression of TMPRSS2, TMPRSS11F and TMPRSS13 in TMEM106B-expressing cells enhanced viral entry and syncytium formation, including BA.2.86 and JN.1 variants. Importantly, we identified two single-nucleotide polymorphisms (SNPs) that result in G2A and N151S variant, respectively, affects TMEM106B receptor function, indicating that selected genetic polymorphisms of TMEM106B gene may impact cell susceptibility to SARS-CoV-2 infection. These findings highlight TMEM106B as a functional receptor for SARS-CoV-2 across different variants, including the latest Omicron subvariants, and provide new insights for the therapeutic interventions targeting viral entry.
该敲除模型可用于: - 通过TMEM106B-半乳糖神经酰胺酶相互作用研究溶酶体功能和髓鞘脂代谢。 - 研究体外ACE2非依赖性SARS-CoV-2感染机制。 - 评估新兴SARS-CoV-2刺突变异体介导的病毒进入和合胞体形成。 - 筛选靶向TMEM106B依赖性病毒进入途径的抗病毒化合物。 - 探索TMEM106B在溶酶体贮积症和神经生物学中的作用。

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