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Gene essentiality and synthetic lethality in haploid human cells.

Vincent A Blomen ,
Peter Májek ,
Lucas T Jae ,
Johannes W Bigenzahn ,
Joppe Nieuwenhuis ,
Jacqueline Staring ,
Roberto Sacco ,
Ferdy R van Diemen ,
Nadine Olk ,
Alexey Stukalov ,
Caleb Marceau ,
Hans Janssen ,
Jan E Carette ,
Keiryn L Bennett ,
Jacques Colinge ,
Giulio Superti-Furga ,
Thijn R Brummelkamp

Abstract

Although the genes essential for life have been identified in less complex model organisms, their elucidation in human cells has been hindered by technical barriers. We used extensive mutagenesis in haploid human cells to identify approximately 2000 genes required for optimal fitness under culture conditions. To study the principles of genetic interactions in human cells, we created a synthetic lethality network focused on the secretory pathway based exclusively on mutations. This revealed a genetic cross-talk governing Golgi homeostasis, an additional subunit of the human oligosaccharyltransferase complex, and a phosphatidylinositol 4-kinase β adaptor hijacked by viruses. The synthetic lethality map parallels observations made in yeast and projects a route forward to reveal genetic networks in diverse aspects of human cell biology.

More about this publication

Science (New York, N.Y.)

Volume 350
Issue nr. 6264
Pages 1092-6
Publication date 27-11-2015

Full text links

Publisher website (DOI) 10.1126/science.aac7557
Europe PubMed Central 26472760
Pubmed 26472760

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