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Updated: Jun 24, 2026

DNA-Tethered RNA Polymerase for Programmable In vitro Transcription and Molecular Computation
Published on: December 29, 2021
Reprogrammable bacterial nanosyringes to deliver RNA and gene editors
Haishan Xu1, Lei Feng1, Ningning Song2
1College of Food Science and Engineering, Northwest A&F University, No. 22 Xinong Road, Yangling, Shaanxi 712100, China.
Abstract:
The engineered Photorhabdus virulence cassette (PVC) enables precise protein delivery but has not yet achieved RNA packaging and injection delivery. In this study, we achieved intraluminal RNA loading via the U1A RNA-binding domain, anchoring it to the PVC inner tube and establishing DART (PVC Docker-based All-purpose RNA Injection Delivery Tool). This enabled the protective loading of diverse RNAs, including Pepper RNA, guide RNA, siRNA, miRNA, and mRNA. Through the co-delivery of Cas9 in vitro, DART also drove effective knockouts of enhanced green fluorescent protein gene (EGFP), Kirsten rat sarcoma viral oncogene homolog (KRAS), and programmed death-ligand 1 (PD-L1), representing reporter, oncogenic, and immune-related targets for evaluating DART-mediated gene editing. Notably, DART-mediated KRAS knockout produced a significant antitumor effect in a subcutaneous mouse tumor model. Complementary to the external spike-surface fusion strategy of SPEAR (a PVC system termed spike engineering and retargeting), as an intraluminal nanosyringe platform, DART employs internal engineering to expand PVC from protein to RNA delivery.
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