2769753-23-1
Chemical Structure
SK-3-91
- CAS No.: 2769753-23-1
- Formula:C42H47ClN10O8S
- Molecular Weight:887.40
IUPAC Name: N-(2-(2-(4-(4-((5-chloro-4-((2-(isopropylsulfonyl)phenyl)amino)pyrimidin-2-yl)amino)phenyl)piperazin-1-yl)ethoxy)ethyl)-2-((2-(2,6-dioxopiperidin-3-yl)-1,3-dioxoisoindolin-4-yl)amino)acetamide
InChIKey: NFXUYJNRWVKYFF-UHFFFAOYSA-N
SMILES: O=C(N1C2C(NC(CC2)=O)=O)C3=C(NCC(NCCOCCN4CCN(C5=CC=C(NC6=NC(NC7=C(S(C(C)C)(=O)=O)C=CC=C7)=C(Cl)C=N6)C=C5)CC4)=O)C=CC=C3C1=O
Biological Activity: SK-3-91 is a multi-kinase PROTAC degrader that induces the degradation of the maximum number of unique kinases (over 125 distinct kinases) simultaneously. SK-3-91 induces protein degradation via the ubiquitin biotinylation (E-STUB) pathway, such as inducing the degradation of YTHDF2. SK-3-91 also inhibits cell proliferation and induces cell morphological changes. SK-3-91 can be used in research related to acute lymphoblastic leukemia, multiple myeloma, neuroblastoma, ovarian cancer, mantle cell lymphoma, and gastric cancer[1][2][3].
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SK-3-91 | 98.33% | SK-3-91 is a multi-kinase PROTAC degrader that induces the degradation of the maximum number of unique kinases (over 125 distinct kinases) simultaneously. SK-3-91 induces protein degradation via the ubiquitin biotinylation (E-STUB) pathway, such as inducing the degradation of YTHDF2. SK-3-91 also inhibits cell proliferation and induces cell morphological changes. SK-3-91 can be used in research related to acute lymphoblastic leukemia, multiple myeloma, neuroblastoma, ovarian cancer, mantle cell lymphoma, and gastric cancer. | ||||||||||||||||||||
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- [1]. Goebel GL, et al. Profiling Cellular Morphological Changes Induced by Dual-Targeting PROTACs of Aurora Kinase and RNA-Binding Protein YTHDF2. Chembiochem : a European journal of chemical biology. 2024 Oct 01;25(19):e202400183. [Content Brief]
- [2]. Donovan KA, et al. Mapping the Degradable Kinome Provides a Resource for Expedited Degrader Development. Cell. 2020 Dec 10;183(6):1714-1731.e10. [Content Brief]
- [3]. Huang HT, et al. Ubiquitin-specific proximity labeling for the identification of E3 ligase substrates. Nature chemical biology. 2024 Sep;20(9):1227-1236. [Content Brief]
Keywords