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Genome-wide genetic screening with chemically mutagenized haploid embryonic stem cells.


ABSTRACT: In model organisms, classical genetic screening via random mutagenesis provides key insights into the molecular bases of genetic interactions, helping to define synthetic lethality, synthetic viability and drug-resistance mechanisms. The limited genetic tractability of diploid mammalian cells, however, precludes this approach. Here, we demonstrate the feasibility of classical genetic screening in mammalian systems by using haploid cells, chemical mutagenesis and next-generation sequencing, providing a new tool to explore mammalian genetic interactions.

SUBMITTER: Forment JV 

PROVIDER: S-EPMC5164930 | biostudies-literature | 2017 Jan

REPOSITORIES: biostudies-literature

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Genome-wide genetic screening with chemically mutagenized haploid embryonic stem cells.

Forment Josep V JV   Herzog Mareike M   Coates Julia J   Konopka Tomasz T   Gapp Bianca V BV   Nijman Sebastian M SM   Adams David J DJ   Keane Thomas M TM   Jackson Stephen P SP  

Nature chemical biology 20161031 1


In model organisms, classical genetic screening via random mutagenesis provides key insights into the molecular bases of genetic interactions, helping to define synthetic lethality, synthetic viability and drug-resistance mechanisms. The limited genetic tractability of diploid mammalian cells, however, precludes this approach. Here, we demonstrate the feasibility of classical genetic screening in mammalian systems by using haploid cells, chemical mutagenesis and next-generation sequencing, provi  ...[more]

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