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Biology subjects

Meadows, D.

Publications and source records attributed to Meadows, D..

2 recordsLinked to original sources

Exploring MicroRNA Strand Selection: Insights into Gene Regulation and Development

MicroRNAs (miRNAs) are central regulators of gene expression, yet how cells choose between the two strands (5p or 3p) of a miRNA duplex during biogenesis remains unresolved. Here, we present a comprehensive, experimentally grounded framework that decodes the logic of miRNA strand selection. Using Caenorhabditis elegans as a model system, we developed a high-throughput qPCR platform enabling precise quantification of strand usage across developmental stages and in specific somatic tissues. To uncover the molecular grammar guiding this process, we built a predictive machine learning model trained on experimentally validated strand usage data. This AI-driven model, integrating 77 biologically informed features, accurately predicts strand preference not only in nematodes but also across vertebrates, including humans, revealing compositional and structural biases that are conserved yet functionally repurposed. Our analysis shows that strand selection is not stochastic but follows conserved, context-dependent rules shaped by cellular and developmental cues. To support the research community, we provide open-access resources: a database of strand usage profiles, predictive scores across species, and code and protocols via GitHub. This work offers the first unified, generalizable model for miRNA strand selection, establishing a paradigm that combines large-scale experimentation with AI to reveal a conserved, programmable layer of gene regulation.

molecular biology↗

A Comprehensive Analysis of 3-UTRs in Caenorhabditis elegans

Summary/Abstract3Untranslated Regions (3UTRs) are essential portions of genes containing elements necessary for pre-mRNA 3end processing and are involved in post-transcriptional gene regulation. Despite their importance, they remain poorly characterized in eukaryotes. Here, we have used a multi-pronged approach to extract and curate 3UTR data from 11,533 publicly available datasets, corresponding to the entire collection of C. elegans transcriptomes stored in the NCBI repository from 2009 to 2023, and present its complete 3UTRome dataset sequenced at single-base resolution. This updated C. elegans 3UTRome is the most comprehensive resource in any metazoan, covering 97.4% of the 20,362 experimentally validated protein-coding genes with refined and updated 3UTR boundaries for 23,489 3UTR isoforms. We also used this novel dataset to identify and characterize sequence elements involved in pre-mRNA 3end processing and update miRNA target predictions. This resource provides important insights into the 3UTR formation, function, and regulation in eukaryotes.

genomics↗