bioRxiv · 10.1101/2024.12.06.627129
A census of RNA-dependent proteins in yeast
Abstract
Delineating the constituents and structural composition of RNA-associated protein complexes is essential to mapping the molecular machinery driving RNA metabolism and its impact on cellular function. Here, we present a comprehensive dataset of RNA-dependent proteins and complexes in the phylogenetically distant yeasts Saccharomyces cerevisiae and Schizosaccharomyces pombe. Using R-DeeP--a density gradient-based method that uses quantitative mass spectrometry to profile protein sedimentation in the presence and absence of RNA--we introduce an RNA dependence index (RDI) as a descriptive framework for RNA dependence, enabling the robust comparative analysis of RNA dependence across proteins in both species and relative to existing data from their human counterparts. This identifies a conserved core of RNA-dependent proteins shared across both yeasts, alongside distinct, organism-specific adaptations in complex behaviour. The data further support the analysis of co-sedimentation behaviour of protein complexes with known RNA-directed functions. For instance, we find that the five subunits of the S. cerevisiae THO complex only co-sediment in the absence of RNA, pointing to an underappreciated structural modularity of the well-characterized pentameric complex. The two datasets, available at https://yeast-r-deep.computational.bio, provide a resource for hypothesis-driven research in RNA biology and establish R-DeeP as a broadly applicable tool for comparative analysis of RNA-protein interactions.
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Waber, N. B., Seidler, J., Thelen, F., Timm, T., Lochnit, G., Strasser, K., Kilchert, C.. 2024-12-06. A census of RNA-dependent proteins in yeast. https://doi.org/10.1101/2024.12.06.627129
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