Caspase-3 inhibitor
Highly specific, potent and reversible inhibitor of caspase-3. Ki<1nM for purified caspase-3. IC50=0.2nM for PARP cleavage in cultured human osteosarcoma cell extracts. In contrast, the caspase-1 (ICE) specific inhibitor YVAD-CHO has a Ki=12µM for caspase-3 and IC50>10µM for PARP cleavage in osteosarcoma cell extracts. The DEVD sequence is based on PARP cleavage site Asp-216 for caspase-3.
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Product Details
Alternative Name |
Caspase-3 inhibitor (aldehyde), Caspase-7 inhibitor (aldehyde) |
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CAS |
169332-60-9 |
Formula |
C20H30N4O11 |
Formulation |
Lyophilized. |
MW |
502.5 |
Peptide Content |
70-90%. |
Purity |
≥95% (HPLC) |
Reconstitution |
Add 0.2ml DMSO per 1mg peptide. Shake well until all the contents are dissolved. This furnishes a 10mM solution of this material. |
Sequence |
Ac-Asp-Glu-Val-Asp-CHO |
Solubility |
Soluble in distilled water or DMSO. |
Handling & Storage
Use/Stability |
As indicated on product label or CoA when stored as recommended. Stock solutions should be divided into aliquots and stored at -20°C. Solutions are stable for at least 1 month when stored at -20°C in the dark and protected from moisture. |
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Handling |
Keep under nitrogen. Keep cool and dry. |
Long Term Storage |
-20°C |
Shipping |
Ambient Temperature |
Regulatory Status |
RUO – Research Use Only |
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- IRE1α overexpression in malignant cells limits tumor progression by inducing an anti-cancer immune response: Martinez-Turtos, A., Paul, R., et al.; Oncoimmunology 11, 2116844 (2022), Abstract
- Apical-to-basal graded ROS metabolism in intact Hydra leads to distinct levels of injury-induced ROS signaling in apical and basal regenerating tips: Suknovic, N. S., Reiter-Karam, S., et al.; bioRxiv , (2022)
- Promoted Click” SERS Detection for Precise Intracellular Imaging of Caspase-3″””: W. Zhu, et al.; Anal. Chem. 93, 4876 (2021), Abstract
- Hydrogen Peroxide Is Crucial for NLRP3 Inflammasome-Mediated IL-1β Production and Cell Death in Pneumococcal Infections of Bronchial Epithelial Cells; Journal of Innate Immunity: S. Surabhi, et al.; J. Innate Immun. 10, 1159 (2021), Abstract
- The Therapeutic Value of SC66 in Human Renal Cell Carcinoma Cells: M. Xu, et al.; Cell Death Dis. 11, 353 (2020), Abstract — Full Text
- Activation of NLRP3 by uropathogenic Escherichia coli is associated with IL-1β release and regulation of antimicrobial properties in human neutrophils: I. Demirel, et al.; Sci. Rep. 10, 21837 (2020), Abstract — Full Text
- Subcellular Hsp70 Inhibitors Promote Cancer Cell Death via Different Mechanisms: Park, S. H., Baek, K. H., et al.; Cell Chem. Biol. 25, 1242 (2018), Abstract
- Activation of the NLRP3 Inflammasome Pathway by Uropathogenic Escherichia coli Is Virulence Factor-Dependent and Influences Colonization of Bladder Epithelial Cells: Demirel, I., Persson, A., et al.; Front. Cell. Infect. Microbiol. 8, 81 (2018), Abstract
- Curcumin differentially affects cell cycle and cell death in acute and chronic myeloid leukemia cells: M. Martinez-Castillo, et al.; Oncol. Lett. 15, 6777 (2018), Abstract — Full Text
- Caspase-6 Undergoes a Distinct Helix-Strand Interconversion upon Substrate Binding: K.B. Dagbay, et al.; J. Biol. Chem. 292, 4885 (2017), Abstract — Full Text
- Albumin-binding caspase-cleavable prodrug that is selectively activated in radiation exposed local tumor: S.W. Chung, et al.; Biomaterials 94, 1 (2016), Application(s): Cell culture, Abstract
- MicroRNAs in Hyperglycemia Induced Endothelial Cell Dysfunction: M. Silambarasan, et al.; Int. J. Mol. Sci. 17, 518 (2016), Application(s): Cell culture, Abstract — Full Text
- Diclofenac induces proteasome and mitochondrial dysfunction in murine cardiomyocytes and hearts: R. Ghosh, et al.; Int. J. Cardiol. 223, 923 (2016), Application(s): Measurement of Caspase 3 activity – mouse heart, liver, and kidney, Abstract
- Cisplatin-induced apoptosis inhibits autophagy, which acts as a pro-survival mechanism in human melanoma cells: Del Bello, B., Toscano, M., et al.; PLoS One 8, e57236 (2013), Abstract
- Differential apoptosis-related protein expression, mitochondrial properties, proteolytic enzyme activity, and DNA fragmentation between skeletal muscles: E.M. McMillan, et al.; Am. J. Physiol. Regul. Integr. Comp. Physiol. 300, R531 (2011), Abstract — Full Text
- Autophagy is an important event for megakaryocytic differentiation of the chronic myelogenous leukemia K562 cell line: Colosetti, P., Puissant, A., et al.; Autophagy 5, 1092 (2009), Abstract
- Interferon gamma induces upregulation and activation of caspases 1, 3, and 8 to produce apoptosis in human erythroid progenitor cells: C. Dai & S.B. Krantz; Blood 93, 3309 (1999), Abstract
- Inhibition of ubiquitin-proteasome pathway activates a caspase-3-like protease and induces Bcl-2 cleavage in human M-07e leukaemic cells: X.M. Zhang, et al.; Biochem. J. 340, 127 (1999), Abstract — Full Text
- Inhibition of human caspases by peptide-based and macromolecular inhibitors: M. Garcia-Calvo, et al.; J. Biol. Chem. 273, 32608 (1998), Abstract — Full Text
- A sequential two-step mechanism for the production of the mature p17:p12 form of caspase-3 in vitro: Z. Han, et al.; J. Biol. Chem. 272, 13432 (1997), Abstract — Full Text
- CPP32/apopain is a key interleukin 1 beta converting enzyme-like protease involved in Fas-mediated apoptosis: J. Schlegel, et al.; J. Biol. Chem. 271, 1841 (1996), Abstract — Full Text
- Sequential activation of ICE-like and CPP32-like proteases during Fas- mediated apoptosis: M. Enari, et al.; Nature 380, 723 (1996), Abstract
- ICE/CED3-like proteases as therapeutic targets for the control of inappropriate apoptosis: D.W. Nicholson; Nature Biotechnol. 14, 297 (1996), Abstract
- Identification and inhibition of the ICE/CED-3 protease necessary for mammalian apoptosis: D.W. Nicholson, et al.; Nature 376, 37 (1995), Abstract
- Cleavage of poly(ADP-ribose) polymerase by a proteinase with properties like ICE: Y.A. Lazebnik et al.; Nature 371, 346 (1994), Abstract
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