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  • Combinatorial CRISPR screen identifies fitness effects of gene paralogues.

Combinatorial CRISPR screen identifies fitness effects of gene paralogues.

Nature communications (2021-02-28)
Nicola A Thompson, Marco Ranzani, Louise van der Weyden, Vivek Iyer, Victoria Offord, Alastair Droop, Fiona Behan, Emanuel Gonçalves, Anneliese Speak, Francesco Iorio, James Hewinson, Victoria Harle, Holly Robertson, Elizabeth Anderson, Beiyuan Fu, Fengtang Yang, Guido Zagnoli-Vieira, Phil Chapman, Martin Del Castillo Velasco-Herrera, Mathew J Garnett, Stephen P Jackson, David J Adams
摘要

Genetic redundancy has evolved as a way for human cells to survive the loss of genes that are single copy and essential in other organisms, but also allows tumours to survive despite having highly rearranged genomes. In this study we CRISPR screen 1191 gene pairs, including paralogues and known and predicted synthetic lethal interactions to identify 105 gene combinations whose co-disruption results in a loss of cellular fitness. 27 pairs influence fitness across multiple cell lines including the paralogues FAM50A/FAM50B, two genes of unknown function. Silencing of FAM50B occurs across a range of tumour types and in this context disruption of FAM50A reduces cellular fitness whilst promoting micronucleus formation and extensive perturbation of transcriptional programmes. Our studies reveal the fitness effects of FAM50A/FAM50B in cancer cells.

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Sigma-Aldrich
抗Myc标签抗体,克隆4A6, clone 4A6, Upstate®, from mouse
Sigma-Aldrich
抗 纽蛋白抗体,小鼠单克隆, clone V284, purified from hybridoma cell culture