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Mechanism of target site selection by type V-K CRISPR-associated transposases.


ABSTRACT: CRISPR-associated transposases (CASTs) repurpose nuclease-deficient CRISPR effectors to catalyze RNA-guided transposition of large genetic payloads. Type V-K CASTs offer potential technology advantages but lack accuracy, and the molecular basis for this drawback has remained elusive. Here, we reveal that type V-K CASTs maintain an RNA-independent, "untargeted" transposition pathway alongside RNA-dependent integration, driven by the local availability of TnsC filaments. Using cryo-electron microscopy, single-molecule experiments, and high-throughput sequencing, we found that a minimal, CRISPR-less transpososome preferentially directs untargeted integration at AT-rich sites, with additional local specificity imparted by TnsB. By exploiting this knowledge, we suppressed untargeted transposition and increased type V-K CAST specificity up to 98.1% in cells without compromising on-target integration efficiency. These findings will inform further engineering of CAST systems for accurate, kilobase-scale genome engineering applications.

SUBMITTER: George JT 

PROVIDER: S-EPMC10771339 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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Mechanism of target site selection by type V-K CRISPR-associated transposases.

George Jerrin Thomas JT   Acree Christopher C   Park Jung-Un JU   Kong Muwen M   Wiegand Tanner T   Pignot Yanis Luca YL   Kellogg Elizabeth H EH   Greene Eric C EC   Sternberg Samuel H SH  

Science (New York, N.Y.) 20231117 6672


CRISPR-associated transposases (CASTs) repurpose nuclease-deficient CRISPR effectors to catalyze RNA-guided transposition of large genetic payloads. Type V-K CASTs offer potential technology advantages but lack accuracy, and the molecular basis for this drawback has remained elusive. Here, we reveal that type V-K CASTs maintain an RNA-independent, "untargeted" transposition pathway alongside RNA-dependent integration, driven by the local availability of TnsC filaments. Using cryo-electron micros  ...[more]

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