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SMARCA2-deficiency confers sensitivity to targeted inhibition of SMARCA4 in esophageal squamous cell carcinoma cell lines.

Sci Rep. 2019-08; 
Ehrenh?fer-W?lferKatharina,PuchnerTeresa,SchwarzCornelia,RippkaJanine,Blaha-OstermannSilvia,StroblUrsula,H?rmannAlexandra,BaderGerd,KorniggStefan,ZahnStephan,SommergruberWolfgang,SchweiferNorbert,ZichnerThomas,SchlattlAndreas,NeumüllerRalph A,ShiJunwei,VakocChristopher R,K?glManfred,PetronczkiMark,KrautNorbert,PearsonMark A,W?hrleS
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Custom Vector Construction For expression of SMARCA4res and SMARCA2ect the following constructs were generated by gene synthesis (GenScript, China) based on the SMARCA4 cDNA sequence NCBI NM_ 001128844.1 and SMARCA2 cDNA sequence NCBI NM_003070.5 and cloning into the parental pLVX vector (Clontech, Mountain View, CA, US): pLVX-empty-IRES-Hygro; pLVX-SMARCA4-wt-IRES-Hygro; pLVX-SMARCA4-ATP-binding deficient (K785A)-IRES-Hygro; pLVX-SMARCA4-BD-dead(N1540A)-IRES-Hygro; pLVX-SMARCA2-wt-IRES-Hygro; pLVX-SMARCA2-ATP-binding-deficient(K755A)-IRES-Hygro; pLVX-SMARCA2-BD-dead(N1482A)-IRES-Hygro; pLVX-SMARCA4res-BDBRD9-IRES-Hygro. Get A Quote

摘要

SMARCA4/BRG1 and SMARCA2/BRM, the two mutually exclusive catalytic subunits of the BAF complex, display a well-established synthetic lethal relationship in SMARCA4-deficient cancers. Using CRISPR-Cas9 screening, we identify SMARCA4 as a novel dependency in SMARCA2-deficient esophageal squamous cell carcinoma (ESCC) models, reciprocal to the known synthetic lethal interaction. Restoration of SMARCA2 expression alleviates the dependency on SMARCA4, while engineered loss of SMARCA2 renders ESCC models vulnerable to concomitant depletion of SMARCA4. Dependency on SMARCA4 is linked to its ATPase activity, but not to bromodomain function. We highlight the relevance of SMARCA4 as a drug target in esophagea... More

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