Your browser doesn't support javascript.
loading
Mapping the functional impact of non-coding regulatory elements in primary T cells through single-cell CRISPR screens.
Alda-Catalinas, Celia; Ibarra-Soria, Ximena; Flouri, Christina; Gordillo, Jorge Esparza; Cousminer, Diana; Hutchinson, Anna; Sun, Bin; Pembroke, William; Ullrich, Sebastian; Krejci, Adam; Cortes, Adrian; Acevedo, Alison; Malla, Sunir; Fishwick, Carl; Drewes, Gerard; Rapiteanu, Radu.
Affiliation
  • Alda-Catalinas C; Genomic Sciences, GSK, Stevenage, UK.
  • Ibarra-Soria X; Genomic Sciences, GSK, Stevenage, UK.
  • Flouri C; Genomic Sciences, GSK, Stevenage, UK.
  • Gordillo JE; Genomic Sciences, GSK, Stevenage, UK.
  • Cousminer D; Genomic Sciences, GSK, Collegeville, PA, USA.
  • Hutchinson A; Genomic Sciences, GSK, Stevenage, UK.
  • Sun B; Genomic Sciences, GSK, Stevenage, UK.
  • Pembroke W; Genomic Sciences, GSK, Stevenage, UK.
  • Ullrich S; Genomic Sciences, GSK, Stevenage, UK.
  • Krejci A; Myllia Biotechnology, Vienna, Austria.
  • Cortes A; Genomic Sciences, GSK, Stevenage, UK.
  • Acevedo A; Genomic Sciences, GSK, Stevenage, UK.
  • Malla S; Genomic Sciences, GSK, Stevenage, UK.
  • Fishwick C; Genomic Sciences, GSK, Stevenage, UK.
  • Drewes G; Genomic Sciences, GSK, Stevenage, UK.
  • Rapiteanu R; Genomic Sciences, GSK, Collegeville, PA, USA.
Genome Biol ; 25(1): 42, 2024 02 02.
Article in En | MEDLINE | ID: mdl-38308274
ABSTRACT

BACKGROUND:

Drug targets with genetic evidence are expected to increase clinical success by at least twofold. Yet, translating disease-associated genetic variants into functional knowledge remains a fundamental challenge of drug discovery. A key issue is that the vast majority of complex disease associations cannot be cleanly mapped to a gene. Immune disease-associated variants are enriched within regulatory elements found in T-cell-specific open chromatin regions.

RESULTS:

To identify genes and molecular programs modulated by these regulatory elements, we develop a CRISPRi-based single-cell functional screening approach in primary human T cells. Our pipeline enables the interrogation of transcriptomic changes induced by the perturbation of regulatory elements at scale. We first optimize an efficient CRISPRi protocol in primary CD4+ T cells via CROPseq vectors. Subsequently, we perform a screen targeting 45 non-coding regulatory elements and 35 transcription start sites and profile approximately 250,000 T -cell single-cell transcriptomes. We develop a bespoke analytical pipeline for element-to-gene (E2G) mapping and demonstrate that our method can identify both previously annotated and novel E2G links. Lastly, we integrate genetic association data for immune-related traits and demonstrate how our platform can aid in the identification of effector genes for GWAS loci.

CONCLUSIONS:

We describe "primary T cell crisprQTL" - a scalable, single-cell functional genomics approach for mapping regulatory elements to genes in primary human T cells. We show how this framework can facilitate the interrogation of immune disease GWAS hits and propose that the combination of experimental and QTL-based techniques is likely to address the variant-to-function problem.
Subject(s)
Key words

Full text: 1 Database: MEDLINE Main subject: Clustered Regularly Interspaced Short Palindromic Repeats / Immune System Diseases Type of study: Guideline Limits: Humans Language: En Year: 2024 Type: Article

Full text: 1 Database: MEDLINE Main subject: Clustered Regularly Interspaced Short Palindromic Repeats / Immune System Diseases Type of study: Guideline Limits: Humans Language: En Year: 2024 Type: Article