MCU基因敲除HEK293细胞
货号:
EDC90701
物种:
人
细胞名称:
HEK293
基因名称:
MCU
基因ID:
90550
规格:
1×10⁶cells
MCU基因敲除HEK293细胞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 | EDC90701 |
|---|---|
| 产品名称 | MCU基因敲除HEK293细胞 |
| 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 | MCU |
| 基因ID | |
| 基因别名 | C10orf42|CCDC109A|HsMCU |
| 摘要 |
Enables calcium channel activity; identical protein binding activity; and uniporter activity. Involved in several processes, including cellular response to calcium ion starvation; positive regulation of mitochondrial calcium ion concentration; and positive regulation of mitochondrial fission. Located in mitochondrion. Part of uniplex complex. Is active in mitochondrial inner membrane. [provided by Alliance of Genome Resources, Jul 2025]
|
| 癌症类型 | Non-tumor |
| 细胞形态 | 贴壁生长 |
| 传代比率 | 1:5,2 days |
| 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 | ||
| Allele1 | Allele2 | Allele1 | Allele2 | |
| Amelogenin | X | X | ||
| CSF1P0 | 12 | 11 | 12 | |
| D2S1338 | 19 | 19 | ||
| D3S1358 | 15 | 17 | 15 | 17 |
| D5S818 | 8 | 8 | 9 | |
| D7S820 | 11 | 12 | 11 | 12 |
| D8S1179 | 12 | 14 | 12 | 14 |
| D13S317 | 12 | 14 | 12 | 14 |
| D16S539 | 9 | 13 | 9 | 13 |
| D18S51 | 17 | 18 | 17 | 18 |
| D19S433 | 15 | 18 | 15 | 18 |
| D21S11 | 28 | 30.2 | 28 | 30.2 |
| FGA | 23 | 23 | ||
| Penta D | 9 | 10 | 9 | 10 |
| Penta E | 7 | 15 | 7 | 15 |
| TH01 | 7 | 9.3 | 7 | 9.3 |
| TPOX | 11 | 11 | ||
| vWA | 16 | 19 | 16 | 19 |
| D6S1043 | 11 | 11 | ||
| D12S391 | 19 | 21 | 11 | 15 |
| D2S441 | 11 | 15 | 11 | 15 |
* 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。
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
对 IP 受体 KO 或线粒体 Ca 单向转运蛋白诱导的 Ca 信号慢性丧失的代谢适应。
IF=3.9
The Journal of biological chemistry
Calcium signaling is essential for regulating many biological processes. Endoplasmic reticulum inositol trisphosphate receptors (IPRs) and the mitochondrial Ca uniporter (MCU) are key proteins that regulate intracellular Ca concentration. Mitochondrial Ca accumulation activates Ca-sensitive dehydrogenases of the tricarboxylic acid (TCA) cycle that maintain the biosynthetic and bioenergetic needs of both normal and cancer cells. However, the interplay between calcium signaling and metabolism is not well understood. In this study, we used human cancer cell lines (HEK293 and HeLa) with stable KOs of all three IPR isoforms (triple KO [TKO]) or MCU to examine metabolic and bioenergetic responses to the chronic loss of cytosolic and/or mitochondrial Ca signaling. Our results show that TKO cells (exhibiting total loss of Ca signaling) are viable, displaying a lower proliferation and oxygen consumption rate, with no significant changes in ATP levels, even when made to rely solely on the TCA cycle for energy production. MCU KO cells also maintained normal ATP levels but showed increased proliferation, oxygen consumption, and metabolism of both glucose and glutamine. However, MCU KO cells were unable to maintain ATP levels and died when relying solely on the TCA cycle for energy. We conclude that constitutive Ca signaling is dispensable for the bioenergetic needs of both IPR TKO and MCU KO human cancer cells, likely because of adequate basal glycolytic and TCA cycle flux. However, in MCU KO cells, the higher energy expenditure associated with increased proliferation and oxygen consumption makes these cells more prone to bioenergetic failure under conditions of metabolic stress.
该敲除模型可用于:
- 研究线粒体 Ca²⁺ 摄取在代谢应激下对 TCA 循环通量和生物能量弹性的作用
- 模拟具有高增殖和耗氧率的癌细胞的代谢脆弱性
- 研究长期缺乏 Ca²⁺ 信号时糖酵解与线粒体呼吸之间的代偿关系
- 评估 MCU 缺失对增殖细胞中谷氨酰胺和葡萄糖代谢的影响
- 检查被迫仅依赖氧化磷酸化的细胞的生物能量衰竭阈值