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Zinc Finger Protein SALL4 Functions through an AT-Rich Motif to Regulate Gene Expression.

Cell reports (2021-01-07)
Nikki R Kong, Mahmoud A Bassal, Hong Kee Tan, Jesse V Kurland, Kol Jia Yong, John J Young, Yang Yang, Fudong Li, Jonathan D Lee, Yue Liu, Chan-Shuo Wu, Alicia Stein, Hongbo R Luo, Leslie E Silberstein, Martha L Bulyk, Daniel G Tenen, Li Chai
ZUSAMMENFASSUNG

The zinc finger transcription factor SALL4 is highly expressed in embryonic stem cells, downregulated in most adult tissues, but reactivated in many aggressive cancers. This unique expression pattern makes SALL4 an attractive therapeutic target. However, whether SALL4 binds DNA directly to regulate gene expression is unclear, and many of its targets in cancer cells remain elusive. Here, through an unbiased screen of protein binding microarray (PBM) and cleavage under targets and release using nuclease (CUT&RUN) experiments, we identify and validate the DNA binding domain of SALL4 and its consensus binding sequence. Combined with RNA sequencing (RNA-seq) analyses after SALL4 knockdown, we discover hundreds of new SALL4 target genes that it directly regulates in aggressive liver cancer cells, including genes encoding a family of histone 3 lysine 9-specific demethylases (KDMs). Taken together, these results elucidate the mechanism of SALL4 DNA binding and reveal pathways and molecules to target in SALL4-dependent tumors.

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