Literature DB >> 23716602

System-wide analysis reveals intrinsically disordered proteins are prone to ubiquitylation after misfolding stress.

Alex H M Ng1, Nancy N Fang, Sophie A Comyn, Jörg Gsponer, Thibault Mayor.   

Abstract

Damaged and misfolded proteins that are no longer functional in the cell need to be eliminated. Failure to do so might lead to their accumulation and aggregation, a hallmark of many neurodegenerative diseases. Protein quality control pathways play a major role in the degradation of these proteins, which is mediated mainly by the ubiquitin proteasome system. Despite significant focus on identifying ubiquitin ligases involved in these pathways, along with their substrates, a systems-level understanding of these pathways has been lacking. For instance, as misfolded proteins are rapidly ubiquitylated, unconjugated ubiquitin is rapidly depleted from the cell upon misfolding stress; yet it is unknown whether certain targets compete more efficiently to be ubiquitylated. Using a system-wide approach, we applied statistical and computational methods to identify characteristics enriched among proteins that are further ubiquitylated after heat shock. We discovered that distinct populations of structured and, surprisingly, intrinsically disordered proteins are prone to ubiquitylation. Proteomic analysis revealed that abundant and highly structured proteins constitute the bulk of proteins in the low-solubility fraction after heat shock, but only a portion is ubiquitylated. In contrast, ubiquitylated, intrinsically disordered proteins are enriched in the low-solubility fraction after heat shock. These proteins have a very low abundance in the cell, are rarely encoded by essential genes, and are enriched in binding motifs. In additional experiments, we confirmed that several of the identified intrinsically disordered proteins were ubiquitylated after heat shock and demonstrated for two of them that their disordered regions are important for ubiquitylation after heat shock. We propose that intrinsically disordered regions may be recognized by the protein quality control machinery and thereby facilitate the ubiquitylation of proteins after heat shock.

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Year:  2013        PMID: 23716602      PMCID: PMC3769323          DOI: 10.1074/mcp.M112.023416

Source DB:  PubMed          Journal:  Mol Cell Proteomics        ISSN: 1535-9476            Impact factor:   5.911


  42 in total

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  10 in total

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2.  Can proteins be intrinsically disordered inside a membrane?

Authors:  Magnus Kjaergaard
Journal:  Intrinsically Disord Proteins       Date:  2015-03-02

3.  Ubiquitination is essential for recovery of cellular activities after heat shock.

Authors:  Brian A Maxwell; Youngdae Gwon; Ashutosh Mishra; Junmin Peng; Haruko Nakamura; Ke Zhang; Hong Joo Kim; J Paul Taylor
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4.  Ubiquitin diGLY Proteomics as an Approach to Identify and Quantify the Ubiquitin-Modified Proteome.

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Review 5.  Classification of intrinsically disordered regions and proteins.

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Review 6.  Structural Insights into Substrate Recognition and Processing by the 20S Proteasome.

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7.  Rsp5/Nedd4 is the main ubiquitin ligase that targets cytosolic misfolded proteins following heat stress.

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Review 8.  Digested disorder: Quarterly intrinsic disorder digest (July-August-September, 2013).

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9.  Abelson kinase's intrinsically disordered region plays essential roles in protein function and protein stability.

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10.  Deubiquitinase activity is required for the proteasomal degradation of misfolded cytosolic proteins upon heat-stress.

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  10 in total

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