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Promoter identity shapes splicing outcomes and fidelity

Aug 2026 · Nature Communications · Vol 17 · 0 citations · 71 references
Medicine

Abstract

Gene expression is a complex process subject to regulation at multiple functionally interconnected levels. One prominent example is the crosstalk between transcription and splicing regulation. Past work has shown that transcription can influence splicing in multiple ways, but a systematic investigation of this complex interplay is lacking. Here we employ massively parallel reporter assays of large combinatorial promoter-splice site libraries to dissect how promoter identity and transcription dynamics affect alternative splicing in human cells. We find that promoter identity, rather than expression level, exerts strong and highly context-specific effects on cassette exon inclusion, exceeding the effect of pharmacological inhibitors of transcription initiation or elongation. Groups of exons display coordinated promoter-dependent splicing behavior, and we identified predictive sequence and structural features underlying this sensitivity. Promoter and gene architecture also shape isoform diversity by modulating cryptic splice site usage. These findings present promoters as central regulators of splicing outcomes and fidelity. Using massively parallel reporter assays of mini-genes with variable promoters and cassette exon sequences, the authors show that promoter identity is a major determinant of alternative splicing, shaping exon inclusion levels and splicing fidelity.

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