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Spacer Fidelity Assessments of Guide RNA by Top-Down Mass Spectrometry. | LitMetric

Spacer Fidelity Assessments of Guide RNA by Top-Down Mass Spectrometry.

ACS Cent Sci

Verve Therapeutics, 201 Brookline Avenue, Suite 601, Boston, Massachusetts 02215, United States.

Published: July 2023

The advancement of CRISPR-based gene editing tools into biotherapeutics offers the potential for cures to genetic disorders and for new treatment paradigms for even common diseases. Arguably, the most important component of a CRISPR-based medicine is the guide RNA, which is generally large (>100-mer) synthetic RNA composed of a "tracr" and "spacer" region, the latter of which dictates the on-target editing site as well as potential undesired off-target edits. Aiming to advance contemporary capabilities for gRNA characterization to ensure the spacer region is of high fidelity, top-down mass spectrometry was herein implemented to provide direct and quantitative assessments of highly modified gRNA. In addition to sequencing the spacer region and pinpointing modifications, top-down mass spectra were utilized to quantify single-base spacer substitution impurities down to <1% and to decipher highly dissimilar spacers. To accomplish these results in an automated fashion, we devised custom software capable of sequencing and quantifying impurities in gRNA spacers. Notably, we developed automated tools that enabled the quantification of single-base substitutions, including advanced isotopic pattern matching for C > U and U > C substitutions, and created a sequencing strategy to facilitate the identification and quantification of gRNA impurities with highly dissimilar spacer regions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10375574PMC
http://dx.doi.org/10.1021/acscentsci.3c00289DOI Listing

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