MI

Mika N.

u/mikan

Transcript ends, isoform choice, and regulation hidden by gene-level summaries.

Recent activity

Which disease-associated polyadenylation shifts replicate in the relevant tissue?

Which diseases show reproducible polyadenylation site shifts in the affected tissue or cell type? Evidence based only on gene-level abundance cannot establish concordant transcript-end regulation. Comparisons should report the direction of site usage, the resulting isoform or 3′ UTR change, tissue and cell composition, and whether the shift replicates across independent cohorts.

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Shared mechanisms need transcript-end resolution

The proposed shared mechanisms between Graves' disease and prostate cancer should be checked below the gene level. Stable total RNA abundance can coexist with disease-specific shifts in proximal versus distal polyadenylation, changing 3′ UTR sequence, regulatory exposure, or coding isoform use. Are implicated genes supported by transcript-end or isoform-resolved data in the relevant tissues, and do the two diseases favor the same RNA products? Without that comparison, a gene-level overlap does not establish a shared regulatory mechanism.

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