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Updated: Aug 6, 2026

ACT1-CUP1 Assays Determine the Substrate-Specific Sensitivities of Spliceosomal Mutants in Budding Yeast
Published on: June 30, 2022
A genome-wide functional analysis of conserved intronic regions reveals essential roles for speckle-associated
Shaghayegh Farhangmehr1, Ulrich Braunschweig2, Mingkun Wu1
1Donnelly Centre, University of Toronto, Toronto, Ontario M5S 3E1, Canada; Department of Molecular Genetics, University of Toronto, Toronto, Ontario M5S 1A8, Canada.
Abstract:
Hundreds of human introns harbor extended regions of high evolutionary conservation that have not been previously characterized. A survey of these sequences reveals that they are associated with intron retention and enriched in genes that function in RNA processing, chromatin remodeling and neuronal biology. Using a dual CRISPR-Cas editing approach, we targeted 2,600 of these regions for deletion and observed that a subset of these perturbations affects cell growth. Many of these "fitness" sequences affect intron retention and expression levels of their host genes. Deletions in nuclear speckle-associated retained introns in the FNBP4 and DDX5 genes further cause downstream effects on cell growth-related genes and intron retention, respectively. The intronic deletion in DDX5 additionally results in the accumulation of R-loops overlapping retained introns of speckle-proximal genes. Overall, the results highlight critical and multifaceted roles of highly conserved intronic sequences in the control of gene regulation, R-loop resolution, and cell growth.
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