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Updated: Sep 12, 2025

Substrate Generation for Endonucleases of CRISPR/Cas Systems
Published on: September 8, 2012
RNA target-independent non-canonical activation (RINCA) of Cas13 trans-nuclease activity
Wenjun Liu1, Xuena Zhu2, Yuanyuan Xue2
1Zhejiang Provincial Key Laboratory of Pancreatic Disease, The First Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou 310003, China; Department of Hepatobiliary and Pancreatic Surgery, The First Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou 310003, China; The Innovation Center for the Study of Pancreatic Diseases of Zhejiang Province, Zhejiang University Cancer Center, Hangzhou 310003, China; MOE Joint International Research Laboratory of Pancreatic Diseases, Hangzhou 310003, China.
Abstract:
A thorough understanding of unintended Cas13 activity is critical for ensuring the safe in vivo application of CRISPR-Cas13. In this study, we uncover the RNA target-independent, non-canonical activation (RINCA) of Cas13 by crRNA alone and elucidate its structural basis. RINCA poses both challenges and opportunities for Cas13-based technologies. On one hand, it constrains Cas13's utility due to its uncontrolled RNase activity. To address this, we screened over 40 rationally designed Cas13a mutants to identify those with diminished RINCA potential while preserving target-dependent responses. These optimized Cas13a variants improve biosensing sensitivity and significantly reduce cytotoxicity in vivo. On the other hand, RINCA can be harnessed for novel applications. By integrating RNA aptamers into spacer regions, the RINCA-capable LwCas13a/ap-crRNA system was engineered to sense intracellular metabolite levels, drive systemic RNA degradation, and demonstrate anti-cancer efficacy across multiple models. This study not only discovers the RINCA model of Cas13 activity but also provides effective mitigation strategies and establishes novel RINCA-based applications.
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