Back to search

Article

Pythia: Non-random DNA repair allows predictable CRISPR/Cas9 integration and gene editing

2024-09-23

Abstract excerpt

<h4>Summary</h4> CRISPR-based genome engineering holds enormous promise for basic science and therapeutic applications. Integrating and editing DNA sequences is still challenging in many cellular contexts, largely due to insufficient control of the repair process. We find that repair at the genome-cargo interface is predictable by deep-learning models and adheres to sequence context specific rules. Based on in s...

Topics

Open a Topic to create a Post that cites this publication.

Identifiers and source

Literature Corpus work
d5d3786a-280b-5d83-a224-435133726c1e
DOI
10.1101/2024.09.23.614424
Open publication

Related research

Semantic proximity does not establish scientific evidence.

Click a neighbor to travelStep 1 · 12 closest
Interactive article relationship graphSelect a related publication card to move it into the centre and load its closest explainable connections. Solid lines are source-backed structured connections. Dashed lines are semantic discovery signals and are not scientific evidence.
Pythia: Non-random DNA repair allows predictable CRISPR/Cas9 integration and gene editingDOI 10.1101/2024.09.23.614424
Select a neighboring publication to make it the new centre.