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A High-Throughput Strategy for Dissecting Mammalian Genetic Interactions.


ABSTRACT: Comprehensive delineation of complex cellular networks requires high-throughput interrogation of genetic interactions. To address this challenge, we describe the development of a multiplex combinatorial strategy to assess pairwise genetic interactions using CRISPR-Cas9 genome editing and next-generation sequencing. We characterize the performance of combinatorial genome editing and analysis using different promoter and gRNA designs and identified regions of the chimeric RNA that are compatible with next-generation sequencing preparation and quantification. This approach is an important step towards elucidating genetic networks relevant to human diseases and the development of more efficient Cas9-based therapeutics.

SUBMITTER: Stockman VB 

PROVIDER: S-EPMC5147906 | biostudies-literature | 2016

REPOSITORIES: biostudies-literature

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A High-Throughput Strategy for Dissecting Mammalian Genetic Interactions.

Stockman Victoria B VB   Ghamsari Lila L   Lasso Gorka G   Honig Barry B   Shapira Sagi D SD   Wang Harris H HH  

PloS one 20161209 12


Comprehensive delineation of complex cellular networks requires high-throughput interrogation of genetic interactions. To address this challenge, we describe the development of a multiplex combinatorial strategy to assess pairwise genetic interactions using CRISPR-Cas9 genome editing and next-generation sequencing. We characterize the performance of combinatorial genome editing and analysis using different promoter and gRNA designs and identified regions of the chimeric RNA that are compatible w  ...[more]

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