Multiplexed Dynamic Imaging of Genomic Loci by Combined CRISPR Imaging and DNA Sequential FISH
Abstract
Visualization of chromosome dynamics allows the investigation of spatiotemporal chromatin organization and its role in gene regulation and other cellular processes. However, current approaches to label multiple genomic loci in live cells have a fundamental limitation in the number of loci that can be labeled and uniquely identified. Here we describe an approach we call "track first and identify later" for multiplexed visualization of chromosome dynamics by combining two techniques: CRISPR imaging and DNA sequential fluorescence in situ hybridization. Our approach first labels and tracks chromosomal loci in live cells with the CRISPR-Cas9 system, then barcodes those loci by DNA sequential fluorescence in situ hybridization in fixed cells and resolves their identities. We demonstrate our approach by tracking telomere dynamics, identifying 12 unique subtelomeric regions with variable detection efficiencies, and tracking back the telomere dynamics of respective chromosomes in mouse embryonic stem cells.
Additional Information
© 2017 Biophysical Society. Received 30 January 2017, Accepted 23 March 2017, Available online 17 April 2017. Editor: Antoine van Oijen. We thank James Linton for kindly providing cell line and plasmids, and Eric Lubeck for help with probe designing. Y.T. is supported by a Graduate Fellowship from the Nakajima Foundation. L.C. is supported by the Allen Distinguished Investigator Award, and NIH grant No. U01-EB 021240-01. Author Contributions: All authors reviewed and contributed to the writing of the manuscript. L.C., L.S.Q., and Y.T. designed the project. Y.T. and S.H. performed experiments. S.S. wrote analysis codes. Y.T. and S.S. performed data analysis. L.C. supervised the project.Attached Files
Submitted - 101477.full.pdf
Supplemental Material - mmc1.pdf
Supplemental Material - mmc2.mp4
Supplemental Material - mmc3.pdf
Files
Additional details
- Alternative title
- Multiplexed dynamic imaging of genomic loci in single cells by combined CRISPR imaging and DNA sequential FISH
- PMCID
- PMC5425380
- Eprint ID
- 76838
- Resolver ID
- CaltechAUTHORS:20170424-085453982
- Nakajima Foundation
- Paul G. Allen Family Foundation
- NIH
- U01-EB 021240-01
- Created
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2017-04-24Created from EPrint's datestamp field
- Updated
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2023-06-01Created from EPrint's last_modified field