Fast and efficient generation of knock-in human organoids using homology-independent CRISPR-Cas9 precision genome editing

Publication date

2020-03

Authors

Artegiani, Benedetta
Hendriks, Delilah
Beumer, Joep
Kok, Rutger N.U.ORCID 0000-0002-6214-681X
Zheng, Xuan
Joore, Indi
Chuva de Sousa Lopes, Susana
van Zon, Jeroen
Tans, Sander
Clevers, HansISNI 0000000043961208

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Article

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taverne

Abstract

CRISPR-Cas9 technology has revolutionized genome editing and is applicable to the organoid field. However, precise integration of exogenous DNA sequences into human organoids is lacking robust knock-in approaches. Here, we describe CRISPR-Cas9-mediated homology-independent organoid transgenesis (CRISPR-HOT), which enables efficient generation of knock-in human organoids representing different tissues. CRISPR-HOT avoids extensive cloning and outperforms homology directed repair (HDR) in achieving precise integration of exogenous DNA sequences into desired loci, without the necessity to inactivate TP53 in untransformed cells, which was previously used to increase HDR-mediated knock-in. CRISPR-HOT was used to fluorescently tag and visualize subcellular structural molecules and to generate reporter lines for rare intestinal cell types. A double reporter-in which the mitotic spindle was labelled by endogenously tagged tubulin and the cell membrane by endogenously tagged E-cadherin-uncovered modes of human hepatocyte division. Combining tubulin tagging with TP53 knock-out revealed that TP53 is involved in controlling hepatocyte ploidy and mitotic spindle fidelity. CRISPR-HOT simplifies genome editing in human organoids.

Keywords

CRISPR-Cas Systems, Gene Editing, Gene Knock-In Techniques/methods, Hepatocytes/cytology, Humans, Intestines/cytology, Liver/cytology, Organoids/cytology, Spindle Apparatus/ultrastructure, Tumor Suppressor Protein p53/physiology, Taverne, Cell Biology, Research Support, Non-U.S. Gov't, Journal Article

Citation

Artegiani, B, Hendriks, D, Beumer, J, Kok, R, Zheng, X, Joore, I, Chuva de Sousa Lopes, S, van Zon, J, Tans, S & Clevers, H 2020, 'Fast and efficient generation of knock-in human organoids using homology-independent CRISPR-Cas9 precision genome editing', Nature Cell Biology, vol. 22, no. 3, pp. 321-331. https://doi.org/10.1038/s41556-020-0472-5