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CUT&RUN Supplementary Data from Smarca4 Inactivation Promotes Lineage-Specific Transformation and Early Metastatic Features in the Lung

UID: 11188

Author(s): Concepcion, Carla P.*, Ma, Sai, LaFave, Lindsay M., Bhutkar, Arjun, Liu, Manyuan, DeAngelo, Lydia P., Kim, Jonathan Y., Del Priore, Isabella, Schoenfeld, Adam J.*, Miller, Manon, Kartha, Vinay K., Westcott, Peter M.K., Sanchez-Rivera, Francisco*, Meli, Kevin, Gupta, Manav, Bronson, Roderick T., Riely, Gregory J.*, Rekhtman, Natasha*, Rudin, Charles M.*, Kim, Carla F., Regev, Aviv, Buenrostro, Jason D., Jacks, Tyler J. * MSK affiliated

Description
Description from Figshare:

"Processed data for CUT&RUN of isogenic SMARCA4-WT and -KO cell lines"
Subject of Study
Homo sapiens
Subject(s)
Adenocarcinoma of Lung
Cell Lineage
Chromatin Immunoprecipitation Sequencing
Gene Knockout Techniques
Lung Neoplasms
Neoplasm Metastasis
Transcription Factors
OncoTree Cancer Type(s)
Lung Adenocarcinoma
Access via figshare

Access Restrictions
Free to All
Access Instructions
Download dataset to access
Associated Publications
Concepcion C, Ma S, LaFave L, Bhutkar A, Liu M, DeAngelo L, Kim J, Del Priore I, Schoenfeld A, Miller M, Kartha V, Westcott P, Sánchez-Rivera F, Meli K, Gupta M, Bronson R, Riely G, Rekhtman N, Rudin C, Kim C, Regev A, Buenrostro J, Jacks T. SMARCA4 inactivation promotes lineage-specific transformation and early metastatic features in the lung. Cancer Discovery. 2022; 12(2):562-585.
Dataset Format(s)
XLSX
Dataset Size
5.1 MB
Data Catalog Record Updated
2024-03-06
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