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Proteomic analysis of Dhh1 complexes reveals a role for Hsp40 chaperone Ydj1 in yeast P-body assembly

Gregory A. Cary, Dani B.N. Vinh, Patrick May, Rolf Kuestner, Aimee M. Dudley
doi: https://doi.org/10.1101/016402
Gregory A. Cary
1Institute for Systems Biology, Seattle WA
2Molecular and Cellular Biology Program, University of Washington, Seattle WA
5Equally contributing author
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Dani B.N. Vinh
1Institute for Systems Biology, Seattle WA
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Patrick May
1Institute for Systems Biology, Seattle WA
3Luxembourg Centre for Systems Biomedicine, Luxembourg
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Rolf Kuestner
1Institute for Systems Biology, Seattle WA
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Aimee M. Dudley
2Molecular and Cellular Biology Program, University of Washington, Seattle WA
4Pacific Northwest Diabetes Research Institute, Seattle, WA
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  • For correspondence: aimee.dudley@gmail.com
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ABSTRACT

P-bodies (PB) are ribonucleoprotein (RNP) complexes that aggregate into cytoplasmic foci when cells are exposed to stress. While the conserved mRNA decay and translational repression machineries are known components of PB, how and why cells assemble RNP complexes into large foci remain unclear. Using mass spectrometry to analyze proteins immunoisolated with the core PB protein Dhh1, we show that a considerable number of proteins contain low-complexity (LC) sequences, similar to proteins highly represented in mammalian RNP granules. We also show that the Hsp40 chaperone Ydj1, which contains an LC domain and controls prion protein aggregation, is required for the formation of Dhh1-GFP foci upon glucose depletion. New classes of proteins that reproducibly co-enrich with Dhh1-GFP during PB induction include proteins involved in nucleotide or amino acid metabolism, glycolysis, tRNA aminoacylation, and protein folding. Many of these proteins have been shown to form foci in response to other stresses. Finally, analysis of RNA associated with Dhh1-GFP shows enrichment of mRNA encoding the PB protein Pat1 and catalytic RNAs along with their associated mitochondrial RNA-binding proteins, suggesting an active role for RNA in PB function. Thus, global characterization of PB composition has uncovered proteins and RNA that are important for PB assembly.

Footnotes

  • ↵7 Matrix Genetics, Inc., Seattle, WA

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted March 11, 2015.
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Proteomic analysis of Dhh1 complexes reveals a role for Hsp40 chaperone Ydj1 in yeast P-body assembly
Gregory A. Cary, Dani B.N. Vinh, Patrick May, Rolf Kuestner, Aimee M. Dudley
bioRxiv 016402; doi: https://doi.org/10.1101/016402
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Proteomic analysis of Dhh1 complexes reveals a role for Hsp40 chaperone Ydj1 in yeast P-body assembly
Gregory A. Cary, Dani B.N. Vinh, Patrick May, Rolf Kuestner, Aimee M. Dudley
bioRxiv 016402; doi: https://doi.org/10.1101/016402

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