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SCR7 pyrazine

Catalog No.GC14335

La SCR7 pyrazine est un inhibiteur de l'ADN ligase IV qui bloque la liaison terminale non homologue (NHEJ) d'une manière dépendante de la ligase IV. La pyrazine SCR7 est également un activateur CRISPR/Cas9 qui augmente l'efficacité de la réparation dirigée par l'homologie (HDR) médiée par Cas9. La pyrazine SCR7 induit l'apoptose cellulaire et a une activité anticancéreuse.

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SCR7 pyrazine Chemical Structure

Cas No.: 14892-97-8

Taille Prix Stock Qté
5mg
63,00 $US
En stock
10mg
111,00 $US
En stock
25mg
191,00 $US
En stock

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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents Related Products

SCR7 pyrazine is an inhibitor of DNA ligase IV [1].

DNA Ligase IV is involved in sealing of double-strand breaks (DSBs) during nonhomologous end-joining (NHEJ). DSBs have been considered as one of the most lethal types of DNA damage within cells. Unrepaired DSBs may lead to chromosomal rearrangements such as translocations and deletions, resulting in oncogenic transformations or cell death. In higher eukaryotes, NHEJ is one of the primary mechanisms of DSB repair and is active throughout the cell cycle. NHEJ plays a major role in providing resistance to cancer cells to these radio- and chemotherapy agents [1].

SCR7 blocked Ligase IV-mediated joining by interfering with its DNA binding in cell-free repair system. SCR7 inhibited NHEJ in a Ligase IV-dependent manner within cells, and activated the intrinsic apoptotic pathway. SCR7 dose-dependent decreased cell proliferation in MCF7, A549, and HeLa cells with an IC50 of 40, 34, and 44 μM, respectively. In T47D, A2780, and HT1080 cells, the IC50 values were 8.5, 120, and 10 μM, respectively [1].

SCR7 treatment (10 mg/kg, six doses) significantly reduced breast adenocarcinoma-induced tumor and impeded tumor progression in mouse models in mouse models. Coadministered of SCR7 with DSB-inducing therapeutic modalities significantly enhanced their sensitivity.

Reference:
[1] Srivastava M, Nambiar M, Sharma S, et al.  An inhibitor of nonhomologous end-joining abrogates double-strand break repair and impedes cancer progression[J]. Cell, 2012, 151(7): 1474-1487.

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