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  • A CRISPR screen in intestinal epithelial cells identifies novel factors for polarity and apical transport.

A CRISPR screen in intestinal epithelial cells identifies novel factors for polarity and apical transport.

eLife (2023-01-21)
Katharina M C Klee, Michael W Hess, Michael Lohmüller, Sebastian Herzog, Kristian Pfaller, Thomas Müller, Georg F Vogel, Lukas A Huber
摘要

Epithelial polarization and polarized cargo transport are highly coordinated and interdependent processes. In our search for novel regulators of epithelial polarization and protein secretion, we used a genome-wide CRISPR/Cas9 screen and combined it with an assay based on fluorescence-activated cell sorting (FACS) to measure the secretion of the apical brush-border hydrolase dipeptidyl peptidase 4 (DPP4). In this way, we performed the first CRISPR screen to date in human polarized epithelial cells. Using high-resolution microscopy, we detected polarization defects and mislocalization of DPP4 to late endosomes/lysosomes after knockout of TM9SF4, anoctamin 8, and ARHGAP33, confirming the identification of novel factors for epithelial polarization and apical cargo secretion. Thus, we provide a powerful tool suitable for studying polarization and cargo secretion in epithelial cells. In addition, we provide a dataset that serves as a resource for the study of novel mechanisms for epithelial polarization and polarized transport and facilitates the investigation of novel congenital diseases associated with these processes.

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