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Metz, P.

Publications and source records attributed to Metz, P..

2 recordsLinked to original sources

Guide RNA library representation results in gene essentiality prediction bias in genome-wide CRISPR screens

Genome wide CRISPR-based perturbation screens are powerful discovery tools enabling the identification of novel gene dependencies through either gain or loss of function. While genome wide guide RNA (gRNA) libraries have advantages when using enAsCas12a, such as multiplex single gRNAs per gene, they may be subject to similar confounding factors that can affect the interpretation of large genome-wide datasets. Here, we examine the impact of these variables in over twenty enASCas12a multiple gRNA based perturbation screens performed using Humagne C, Humagne D and Inzolia libraries in human cells. We demonstrate that the choice of CRISPR library is often the most significant factor that influences genetic perturbation results, outweighing other variables such as either target cell lines or culture media conditions. A major contributor to this effect is gRNA representation bias within a given CRISPR library, where lower gRNA representation can lead to variable and more pronounced gene effect scores using either log fold change or Chronos analysis. These effects may be mitigated by using either multiple gRNA constructs per gene, by optimisation of CRISPR library production processes or by targeting with multiple independent gRNA libraries. Importantly, we also consider gRNA representation bias during CRISPR screen hit prioritisation. CRISPR library gRNA representation bias remains a major challenge in the interpretation of gene essentiality in perturbation screens.

genomics↗

Id1, Spp1 and Pak3 are biomarkers of Smad4 and TGF-β1 dependency in conditional intestinal adenoma, organoids and colorectal cancer.

TGF-{beta} ligand activation suppresses cell growth yet can paradoxically and potently promote cancer invasion and metastasis depending on downstream pathway mutational context. Here, we evaluated the basis of this observation in conditional murine intestinal adenoma models with and without loss of Mothers against decapentaplegic homolog 4 (Smad4), with the aim of identifying TGF-{beta}-BMP-SMAD4 pathway dependent gene expression biomarkers for translational application. Conditional Lgr5-CreERT2 activation in Apcfl/flSmad4fl/flresulted in adenoma formation with recombined homozygote floxed alleles (Apc{Delta}/{Delta}Smad4{Delta}/{Delta}). The adenoma phenotype was discordant, with a reduced small intestinal adenoma burden yet development of large non-metastatic caecal adenoma with nuclear localisation of phospho-Smad2/3. Derived Apc{Delta}/{Delta}Smad4{Delta}/{Delta} adenoma organoids resisted TGF-{beta}1 dose dependent growth arrest and cell death (IC50 534pM) compared to Apc{Delta}/{Delta}Smad4+/+ (IC 24pM). TGF-{beta}1 (390pM) modified adenoma mRNA expression (bulk RNA-Seq) most significantly for Id1low and Spp1high in Apc{Delta}/{Delta}Smad4{Delta}/{Delta}. Single cell RNAseq of caecal adenoma identified expansion of Lgr5low, Pak3high and Id1low progenitor populations in Apc{Delta}/{Delta}Smad4{Delta}/{Delta}. Of the 76 Smad4 and TGF-{beta}1 dependent genes identified in adenoma organoids, 7 human equivalent genes were also significantly differentially expressed in colorectal cancer, including ID1low, SPP1high and PAK3high that also correlated with poorer survival (TCGA cohorts). Murine conditional models identified Smad4 loss of function mRNA expression biomarkers that require further evaluation as functional classifiers of colorectal cancer subtypes.

cancer biology↗