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Direct RNA Triggering of Cas12a through the Native crRNA Architecture Enables Clinical Nucleic Acids Diagnostics.

Analytical chemistry 2026 Vol.98(13) p. 9982-9992

Zhao X, Wang Y, Wang L, Liao S, Gong T, Xiong M, Yu B, Song ZL

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CRISPR/Cas12a has emerged as a powerful platform for nucleic acid diagnostics, yet its activity is widely considered to be restricted to DNA targets, limiting its applicability for direct RNA detectio

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APA Zhao X, Wang Y, et al. (2026). Direct RNA Triggering of Cas12a through the Native crRNA Architecture Enables Clinical Nucleic Acids Diagnostics.. Analytical chemistry, 98(13), 9982-9992. https://doi.org/10.1021/acs.analchem.5c08220
MLA Zhao X, et al.. "Direct RNA Triggering of Cas12a through the Native crRNA Architecture Enables Clinical Nucleic Acids Diagnostics.." Analytical chemistry, vol. 98, no. 13, 2026, pp. 9982-9992.
PMID 41870471

Abstract

CRISPR/Cas12a has emerged as a powerful platform for nucleic acid diagnostics, yet its activity is widely considered to be restricted to DNA targets, limiting its applicability for direct RNA detection. Here we report a manganese-ion (Mn)-empowered Cas12a (MEC) platform that overcomes this constraint by allowing the robust RNA-mediated activation of Cas12a. Structural analyses reveal that Mn strengthens RNA engagement and reorganizes the catalytic center by coordinating RNA phosphates, resulting in an enhancement of trans-cleavage efficiency by 60-fold relative to the Mg conditions, without compromising sequence specificity. This Mn-dependent activation mechanism is conserved across multiple Cas12a orthologues (LbCas12a, AsCas12a, FnCas12a), permitting amplification-free detection of RNA with femtomolar sensitivity across diverse targets, particularly the ultrashort abortive transcripts (7 nt). Analysis of clinical serum samples further demonstrates that MEC quantitatively measures circulating miR-21 with performance concordant with reference clinical assays and effectively distinguishes lung cancer patients from healthy individuals. These results reveal an unrecognized role for Mn in Cas12a biochemistry and establish a simple, versatile, and highly sensitive framework for RNA diagnostics.

MeSH Terms

Humans; Manganese; CRISPR-Associated Proteins; RNA; CRISPR-Cas Systems; Endodeoxyribonucleases; MicroRNAs; Lung Neoplasms; Bacterial Proteins

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