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Cuddleston, W. H.

Publications and source records attributed to Cuddleston, W. H..

2 recordsLinked to original sources

Cytosine-to-uracil RNA editing is upregulated by pro-inflammatory stimulation of myeloid cells

Myeloid cells undergo large changes to their gene expression profile in response to inflammatory stimulation. This includes an increase in post-transcriptional modifications carried out by adenosine-to-inosine (A-to-I) and cytosine-to-uracil (C-to-U) RNA editing enzymes. However, the precise RNA editing targets altered by stimulation and the consequences of RNA editing on gene expression and the proteome have been understudied. We present a comprehensive RNA editing analysis of stimulated myeloid cells across three independent cohorts totalling 297 samples, including monocytes and IPS-derived microglia. We observed that C-to-U editing, while less abundant, has a higher effect size in response to stimulation than A-to-I, and has a greater potential to recode the proteome. We investigated the consequences of RNA editing on RNA stability and gene expression using in silico and in vitro reporter methods, and identified a recoding C-to-U site in ARSB that mimics a reported lysosomal storage disorder mutation.

genomics↗

Coordination of Alternative Splicing and Alternative Polyadenylation revealed by Targeted Long Read Sequencing

Nervous system development is associated with extensive regulation of alternative splicing (AS) and alternative polyadenylation (APA). AS and APA have been extensively studied in isolation, but little is known about how these processes are coordinated. Here, the coordination of cassette exon (CE) splicing and APA in Drosophila was investigated using a targeted long-read sequencing approach we call Pull-a-Long-Seq (PL-Seq). This cost-effective method uses cDNA pulldown and Nanopore sequencing combined with an analysis pipeline to resolve the connectivity of alternative exons to alternative 3 ends. Using PL-Seq, we identified genes that exhibit significant differences in CE splicing depending on connectivity to short versus long 3UTRs. Genomic long 3UTR deletion was found to alter upstream CE splicing in short 3UTR isoforms and ELAV loss differentially affected CE splicing depending on connectivity to alternative 3UTRs. This work highlights the importance of considering connectivity to alternative 3UTRs when monitoring AS events.

molecular biology↗