TransDetect® Double-Luciferase Reporter Assay Kit
萤火虫、海肾双荧光素酶报告基因检测试剂盒
| 目录号 | 规格 | 单价 |
|---|---|---|
| FR201-01 | 50 rxns | 580 |
| FR201-02 | 200 rxns | 1980 |
产品详情介绍
萤火虫荧光素酶 (firefly luciferase)和海肾萤光素酶(Renilla luciferase)可分别催化荧光素 (luciferin)或腔肠素 (coelenterazine) 氧化形成oxyluciferin或coelenteramide ,并在此过程中产生生物荧光。TransDetect® Double-Luciferase Reporter Assay Kit首先以荧光素为底物检测萤火虫荧光素酶报告基因的活性,之后在淬灭该荧光反应的同时,以腔肠素为底物检测海肾荧光素酶报告基因的活性,具有检测迅速、灵敏度高、检测范围广、无细胞内源活性干扰等特点。


1.Cui Y, Lyu X, Ding L, et al. Global miRNA dosage control of embryonic germ layer specification[J]. Nature, 2021.(IF 42.00)
2.Qi Y, Ding L, Zhang S, et al. A plant immune protein enables broad antitumor response by rescuing microRNA deficiency[J]. Cell, 2022.(IF 41.58)
3.Zhao K, Xue H, Li G, et al. Pangenome analysis reveals structural variation associated with seed size and weight traits in peanut[J]. Nature Genetics, 2025. (IF 31.80)
4.Jia X, Wang L, Zhao H, et al. The origin and evolution of salicylic acid signaling and biosynthesis in plants[J]. Molecular Plant, 2023.(IF 27.50)
5.Di Y, Jing X, Hu K, et al. The c-MYC-WDR43 signalling axis promotes chemoresistance and tumour growth in colorectal cancer by inhibiting p53 activity[J]. Drug Resistance Updates, 2023.(IF 24.30)
6.Xing L, Xu J, Gong M, et al. Targeted disruption of PRC1. 1 complex enhances bone remodeling[J]. Nature Communications, 2025.(IF 15.70)
7.Yu P, Qu N, Zhu R, et al. TERT accelerates BRAF mutant–induced thyroid cancer dedifferentiation and progression by regulating ribosome biogenesis[J]. Science Advances, 2023.(IF 13.60)
8.Zhu X, Yang M, Zhao P, et al. Catenin α 1 mutations cause familial exudative vitreoretinopathy by overactivating Norrin/β-catenin signaling[J]. The Journal of clinical investigation, 2021.(IF 11.86)
9.Cheng Q, Wang J, Li M, et al. CircSV2b participates in oxidative stress regulation through miR-5107-5p-Foxk1-Akt1 axis in Parkinson's disease[J]. Redox Biology, 2022.(IF 10.78)
10.Liu Y, Zhang S, Chen L, et al. The molecular mechanism of miR-96-5p in the pathogenesis and treatment of polycystic ovary syndrome[J]. Translational Research, 2023.(IF 10.17)
11.Zhou J, Ge Q, Wang D, et al. Engineering a modular double-transmembrane synthetic receptor system for customizing cellular programs[J]. Cell Reports, 2023.(IF 9.99)
12.Li Y, Li L, Zhao M, et al. Wheat FRIZZY PANICLE activates VERNALIZATION1‐A and HOMEOBOX4‐A to regulate spike development in wheat[J]. Plant Biotechnology Journal, 2021.(IF 9.80)
13.Zhao K, Zhang J, Fan Y, et al. PSC1, a basic/helix–loop–helix transcription factor controlling the purplish‐red testa trait in peanut[J]. Journal of Integrative Plant Biology, 2025.(IF 9.30)
14.Huang M, Liao X, Wang X, et al. POZ/BTB and AT hook containing zinc finger 1 (PATZ1) suppresses differentiation and regulates metabolism in human embryonic stem cells[J]. International Journal of Biological Sciences, 2024.(IF 9.20)
15.Zhang L, Zhang X, Xu H, et al. Exome sequencing revealed Notch ligand JAG1 as a novel candidate gene for familial exudative vitreoretinopathy[J]. Genetics in Medicine, 2020.(IF 8.90)
16.Xian B, Rehmani M S, Fan Y, et al. The ABI4‐RGL2 module serves as a double agent to mediate the antagonistic crosstalk between ABA and GA signals[J]. New Phytologist, 2024.(IF 8.30)
17.Li Y, Feng D, Wang Z, et al. Ischemia-induced ACSL4 activation contributes to ferroptosis-mediated tissue injury in intestinal ischemia/reperfusion[J]. Cell Death & Differentiation, 2019.(IF 8.09)
18.Wang L, Shi Y P, Tang Y N, et al. The Tartary Buckwheat FtMYB46‐FtNRAMP3 Module Enhances Plant Lead and Cadmium Tolerance[J]. Plant, Cell & Environment, 2025.(IF 6.30)
19.Jin J, Liu Y, Liang X, et al. Regulatory mechanism of transcription factor AhHsf modulates AhHsp70 transcriptional expression enhancing heat tolerance in Agasicles hygrophila (Coleoptera: Chrysomelidae)[J]. International Journal of Molecular Sciences, 2022.(IF 6.21)
20.Wang Y, Yang Y, Yang Y, et al. Hypoxia induces hepatocellular carcinoma metastasis via the HIF-1α/METTL16/lnc-CSMD1-7/RBFOX2 axis[J]. Iscience, 2023.(IF 5.80)


