Keeping CRISPR in check | Nature Methods
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Phage biology yields useful anti-CRISPR proteins that may also lead to new CRISPR systems. Access through your institution Buy or subscribe This is a preview of subscription content, access
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SpringerLink * Instant access to full article PDF Buy now Prices may be subject to local taxes which are calculated during checkout ADDITIONAL ACCESS OPTIONS: * Log in * Learn about
institutional subscriptions * Read our FAQs * Contact customer support RESEARCH PAPERS * Marino, N. D. et al. Discovery of widespread type I and type V CRISPR-Cas inhibitors. _Science_ 362,
240–242 (2018). Article CAS Google Scholar * Watters, K. E. et al. Systematic discovery of natural CRISPR-Cas12a inhibitors. _Science_ 362, 236–239 (2018). Article CAS Google Scholar
Download references AUTHOR INFORMATION AUTHORS AND AFFILIATIONS * Nature Methods http://www.nature.com/nmeth Nicole Rusk Authors * Nicole Rusk View author publications You can also search
for this author inPubMed Google Scholar CORRESPONDING AUTHOR Correspondence to Nicole Rusk. RIGHTS AND PERMISSIONS Reprints and permissions ABOUT THIS ARTICLE CITE THIS ARTICLE Rusk, N.
Keeping CRISPR in check. _Nat Methods_ 15, 857 (2018). https://doi.org/10.1038/s41592-018-0207-8 Download citation * Published: 30 October 2018 * Issue Date: November 2018 * DOI:
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