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May 10, 2026Trends in biotechnology0 citationsOpen Access

CRISPR-based technologies for large DNA insertions

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MFMary Gracen A. FullerMFMatthew FoleyRBRodolphe Barrangou

Key Points

  • This research aims to enhance genome editing techniques to facilitate large DNA insertions using CRISPR-based methods.
  • Explored the functionalities of Cas9 and Cas12 for DNA manipulation.
  • Examined novel tools such as PASTE, PASSIGE, and PrimeRoot for larger DNA integrations.
  • Investigated applications in agriculture and personalized medicine.
  • Demonstrated effective large DNA integrations using advanced CRISPR methods.
  • Showed potential for DSB-free editing modalities, enhancing payload options.
  • Highlighted applications in sustainable crop breeding and gene therapies.

Abstract

While the advent of Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)-based technologies has democratized the genesis of precise mutations, there is a need for more sophisticated tools to enable large-scale DNA manipulations, advancing genome editing across medicine, biotechnology, and agriculture. The success of Cas9 and Cas12 has hinged on the generation of precise DNA nicks and double-stranded breaks (DSBs), enabling local sequence mutagenesis, albeit of a limited size range. Emerging effectors combining Cas with other enzymatic functions, such as CRISPR-associated transposons and site-specific recombinases, enable larger integrations. Sophisticated combinations such as programmable addition via site-specific targeting element (PASTE), prime-editing-assisted site-specific integrase gene editing (PASSIGE), and prime-editing-mediated recombination of opportune target (PrimeRoot) expand payload options and DSB-free editing modalities, with translational potential for next-generation crop breeding in sustainable agriculture and the development of gene and cell therapies in personalized medicine.

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Cite This Study

Fuller et al. (2026) studied this question.

synapsesocial.com/papers/6a001ff2c8f74e3340f9b21ahttps://doi.org/10.1016/j.tibtech.2026.04.004
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