Caspase-9 substrate
Fluorogenic substrate for caspase-9.
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Product Details
Alternative Name |
Caspase-9 substrate (fluorogenic) |
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Appearance |
White to off-white powder. |
CAS |
210345-03-2 |
Formula |
C33H38F3N7O11 |
Formulation |
Lyophilized. |
MW |
765.7 |
Purity |
≥96% (HPLC) |
Sequence |
Ac-Leu-Glu-His-Asp-AFC (AFC=7-Amino-4-trifluoromethylcoumarin) |
Solubility |
Soluble in DMSO. |
Technical Info / Product Notes |
AFC has an excitation maximum of 400nm and an emission maximum of 505nm. |
Handling & Storage
Use/Stability |
As indicated on product label or CoA when stored as recommended. |
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Handling |
Protect from light. |
Long Term Storage |
-20°C |
Shipping |
Ambient Temperature |
Regulatory Status |
RUO – Research Use Only |
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- CARD-only proteins regulate in vivo inflammasome responses and ameliorate gout: S. Devi, et al.; Cell Rep. 42, 112265 (2023), Abstract
- Deorphanizing Caspase-3 and Caspase-9 Substrates In and Out of Apoptosis with Deep Substrate Profiling: L.E. Araya, et al.; ACS Chem. Biol. 16, 2280 (2021), Abstract
- Exogenous Introduction of Initiator and Executioner Caspases Results in Different Apoptotic Outcomes: F. Anson, et al.; JACS Au 1, 1240 (2021), Abstract
- Caspase-9 Activation of Procaspase-3 but Not Procaspase-6 Is Based on the Local Context of Cleavage Site Motifs and on Sequence: I.V. Soni & J.A. Hardy; Biochemistry 60, 2824 (2021), Abstract
- C33-A cells transfected with E6*I or E6*II the short forms of HPV-16 E6, displayed opposite effects on cisplatin-induced apoptosis: C.E. Vaisman, et al.; Virus Res. 247, 94 (2018), Abstract
- CRISPR knock out of programmed cell death protein 1 enhances anti-tumor activity of cytotoxic T lymphocytes: Z. Zhao, et al.; Oncotarget 9, 5208 (2018), Abstract — Full Text
- Sub-lethal oxidative stress induces lysosome biogenesis via a lysosomal membrane permeabilization-cathepsin-caspase 3-transcription factor EB-dependent pathway: S.M. Leow, et al.; Oncotarget 8, 16170 (2017), Abstract — Full Text
- Nimbolide reduces CD44 positive cell population and induces mitochondrial apoptosis in pancreatic cancer cells: S. Kumar, et al.; Cancer Lett. 413, 82 (2017), Abstract
- Artesunate induces ROS-dependent apoptosis via a Bax-mediated intrinsic pathway in Huh-7 and Hep3B cells: Y. Pang, et al.; Exp. Cell Res. 16, 30161 (2016), Application(s): Fluorometric assay for caspase-9 activity, Abstract
- Mechanism of neem limonoids-induced cell death in cancer: Role of oxidative phosphorylation: N. Yadav, et al.; Free Radic. Biol. Med. 90, 261 (2016), Application(s): Quantification of apoptosis and caspase activity measurement, Abstract
- Redox regulation of metabolic and signaling pathways by thioredoxin and GLUTAREDOXIn in nos-3 overexpressing hepatoblastoma cells: R. González, et al.; Redox Biol. 6, 122 (2015), Application(s): Cell Culture, Fluorescence, Abstract
- Oxidative phosphorylation-dependent regulation of cancer cell apoptosis in response to anticancer agents: N. Yadav, et al.; Cell Death Dis. 5, e1969 (2015), Application(s): Cell culture, Fluorescence, Abstract
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