Temperature-driven isoform switching reprograms developmental gene expression in a human fungal pathogen

Read the full article See related articles

Discuss this preprint

Start a discussion What are Sciety discussions?

Listed in

This article is not in any list yet, why not save it to one of your lists.
Log in to save this article

Abstract

Post-transcriptional regulation is key to development, and yet little is known about how RNA isoform choice contributes to developmental choices in fungi. Here we assemble the first isoform-level transcriptome of Histoplasma , a ubiquitous human fungal pathogen that grows as an infectious environmental form (hyphae) or a pathogenic host form (yeast) in response to temperature. We find extensive morphology-associated longer leader and trailer isoforms, rapid temperature-driven transcription start site remodeling, and inclusion of regulatory elements in longer leaders. We observe isoform-specific patterns of ribosome and polysome association, indicating that isoform switching regulates the proteome. Our results suggest a model in which isoform diversity and rapid isoform switching are central to post-transcriptional regulation during thermal dimorphism, enabling precise and timely translation of factors needed to establish and maintain hyphal and yeast forms. These studies illuminate how eukaryotic systems utilize post-transcriptional regulation to determine developmental states in response to external stimuli.

Article activity feed