Birinapant (TL32711)

Birinapant (TL32711)

Catalog Number:
L002369097APE
Mfr. No.:
APE-A4219
Price:
$300
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          Background

          Birinapant, also called TL32711, is a potent antagonist for XIAP with Kd value of 45 nM and cIAP1 with Kd value <1 nM [1].Birinapant not only binds to the isolated BIR3 domains of cIAP1, cIAP2, XIAP but the single BIR domain of ML-IAP with high affinity and degrades TRAF2-bound cIAP1 and cIAP2 rapidly accordingly inhibiting the activation of TNF-mediated NF- kB. Additionally, birinapantcan promote the formation of caspase-8: RIPK1 complex in response to TNF stimulation, which result in downstream caspasesactivation [4].In the inorganic SUM149- and SUM190-derived cells, which with differential XIAP expression (SUM149 wtXIAP, SUM190 shXIAP) and other high cIAP1/2 but low XIAP binding affinity bivalent Smac mimetic GT13402, XIAP inhibition are needed for increasing TRAIL potency. Opposite, single agent efficacy of Birinapant is owing to pan-IAP antagonism. Rapid cIAP1 degradation was caused by birinapant, as well as NF-κB activation, PARP cleavage andcaspase activation. While combined withTNF-α, showing strong combination activity, the combination was more effective than individual. The response in spheroid models was conserved, whereas in vivo birinapant inhibited tumor growth without adding TNF-α in vitro to resistant cell lines. In a parental cell line, TNF-αcombined withbirinapantinhibited the growth of a melanoma cell line with acquired resistance to the same extent of BRAF inhibition [1, 2].Drug treatment increased the mean [18F]ICMT-11 tumor uptake with a peak at 24 hours for CPA (40 mg/kg; AUC40-60: 8.04 ± 1.33 and 16.05 ± 3.35 %ID/mL × min at baseline and 24 hours, respectively) and 6 hours for birinapant (15 mg/kg; AUC40-60: 20.29 ± 0.82 and 31.07 ± 5.66 %ID/mL × min, at baseline and 6 hours, respectively). Voxel-based spatiotemporal analysis of tumor-intrinsic heterogeneity showed that [18F] ICMT-11 could detect the discrete pockets of caspase-3 activation. Caspase-3 activation that measured ex vivo associated with the increased tumor [18F] ICMT-11, and early radiotracer uptake predicted apoptosis, distinct from the glucose metabolism with [18F] fluorodeoxyglucose-PET, which depicted the continuous loss of cell viability [3].

          1.Allensworth JL, Sauer S, Lyerly HK, et al. Smac mimetic Birinapant induces apoptosis and enhances TRAIL potency in inflammatory breast cancer cells in an IAP-dependent and TNF-a-independent mechanism. Breast Cancer Research, 2013, 137:359-371.
          2.Krepler C, Chunduru SK, Halloran MB, et al. The novel SMAC mimetic birinapant exhibits potent activity against human melanoma cells. Clinical Cancer Research, 2013, 19 (7): 1784-1794.
          3.Nguyen QD, Lavdas I, Gubbins J, et al. Temporal and Spatial Evolution of Therapy-Induced Tumor Apoptosis Detected by Caspase-3–Selective Molecular Imaging. Clinical Cancer Research, 2013, 19 (14): 3914-3924.
          4.Benetatos CA, Mitsuuchi Y, Burns JM, et al. Birinapant (TL32711), a Bivalent SMAC Mimetic, Targets TRAF2-Associated cIAPs, Abrogates TNF-Induced NF-kB Activation, and Is Active in Patient-Derived Xenograft Models. 2014, 13(4):867-879.

      • Properties
        • Categories
          Potent XIAP/cIAP1 antagonist
          Alternative Name
          (2S,2'S)-N,N'-((2S,2'S)-((3S,3'S,5R,5'R)-5,5'-((6,6'-difluoro-1H,1'H-[2,2'-biindole]-3,3'-diyl)bis(methylene))bis(3-hydroxypyrrolidine-5,1-diyl))bis(1-oxobutane-2,1-diyl))bis(2-(methylamino)propanamide)
          CAS Number
          1260251-31-7
          Molecular Formula
          C42H56F2N8O6
          Molecular Weight
          806.94
          Appearance
          A solid
          Purity
          98.00%
          Solubility
          ≥40.35 mg/mL in DMSO; insoluble in H2O; ≥46.9 mg/mL in EtOH
          Storage
          Store at -20°C
          SMILES
          CCC(C(=O)N1CC(CC1CC2=C(NC3=C2C=CC(=C3)F)C4=C(C5=C(N4)C=C(C=C5)F)CC6CC(CN6C(=O)C(CC)NC(=O)C(C)NC)O)O)NC(=O)C(C)NC

          * For Research Use Only

      • Reference
        • 1. Inbar Shlomovitz, Ziv Erlich, et al. "Proteomic analysis of necroptotic extracellular vesicles." Cell Death Dis. 2021 Nov 8;12(11):1059. PMID:34750357
          2. Miles MA, Caruso S, et al. "Smac mimetics can provoke lytic cell death that is neither apoptotic nor necroptotic." Apoptosis. 2020;10.1007/s10495-020-01610-8. PMID:32440848
          3. Zonneville J, Wong V, et al. "TAK1 signaling regulates p53 through a mechanism involving ribosomal stress." Sci Rep. 2020 Feb 13;10(1):2517. PMID:32054925
          4. Wang Z, Chen J, et al. "cGAS/STING axis mediates a topoisomerase II inhibitor-induced tumor immunogenicity." J Clin Invest. 2019 Aug 13;130:4850-4862. PMID:31408442
          5. De Vlaeminck Y, Lecocq Q, et al. "Single-domain antibody fusion proteins can target and shuttle functional proteins into macrophage mannose receptor expressing macrophages." J Control Release. 2019 Apr 10;299:107-120. PMID:30797866
          6. Rosner A, Kravchenko O, et al. "IAP genes partake weighty roles in the astogeny and whole body regeneration in the colonial urochordate Botryllus schlosseri." Dev Biol. 2018 Oct 30. pii: S0012-1606(17)30904-1. PMID:30385275
          7. Hao Q, Tang H. "Interferon-γ and Smac mimetics synergize to induce apoptosis of lung cancer cells in a TNFα-independent manner." Cancer Cell Int. 2018 Jun 14;18:84. PMID:29946223
          8. Gradzka S, Thomas OS, et al. "Inhibitor of apoptosis proteins are required for effective fusion of autophagosomes with lysosomes." Cell Death Dis. 2018 May 9;9(5):529. PMID:29743550
          9. van Wijk SJL, Fricke F,et al. "Linear ubiquitination of cytosolic Salmonella Typhimurium activates NF-κB and restricts bacterial proliferation." Nat Microbiol. 2017 May 8;2:17066. PMID:28481361
          10. Wiman KG, Zhivotovsky B. "Understanding cell cycle and cell death regulation provides novel weapons against human diseases." J Intern Med. 2017 May;281(5):483-495. PMID:28374555
          11. Hyun Jae Chung. "A Non-Canonical Function for NLRP3 and AIM2 in Kidney Diseases." university of calgary.2017.
          12. Shekhar TM, Miles MA, et al."IAP antagonists sensitize murine osteosarcoma cells to killing by TNFα."Oncotarget. 2016 Jun 7;7(23):33866-86. PMID:27129149
          13. Chung H, Vilaysane A, et al. "NLRP3 regulates a non-canonical platform for caspase-8 activation during epithelial cell apoptosis." Cell Death Differ. 2016 Feb 19. PMID:26891693

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