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首页|Lysine deserts prevent adventitious ubiquitylation of ubiquitin-proteasome components

Lysine deserts prevent adventitious ubiquitylation of ubiquitin-proteasome components

Lysine deserts prevent adventitious ubiquitylation of ubiquitin-proteasome components

来源:bioRxiv_logobioRxiv
英文摘要

Abstract In terms of its relative frequency, lysine is a common amino acid in the human proteome. However, by bioinformatics we find hundreds of proteins that contain long and evolutionarily conserved stretches completely devoid of lysine residues. These so-called lysine deserts show a high prevalence in intrinsically disordered proteins with known or predicted functions within the ubiquitin-proteasome system (UPS), including many E3 ubiquitin-protein ligases and UBL domain proteasome substrate shuttles, such as BAG6, RAD23A, UBQLN1 and UBQLN2. We show that introduction of lysine residues into the deserts leads to a striking increase in ubiquitylation of some of these proteins. In case of BAG6, we show that ubiquitylation is catalyzed by the E3 RNF126, while RAD23A is ubiquitylated by E6AP. Despite the elevated ubiquitylation, mutant RAD23A appears stable, but displays a partial loss of function phenotype in fission yeast. In case of UBQLN1 and BAG6, introducing lysine leads to a reduced abundance due to proteasomal degradation of the proteins. For UBQLN1 we show that arginine residues within the lysine depleted region are critical for its ability to form cytosolic inclusions. We propose that selective pressure to avoid lysine residues may be a common evolutionary mechanism to prevent unwarranted ubiquitylation and/or perhaps other lysine post-translational modifications. This may be particularly relevant for UPS components as they closely and frequently encounter the ubiquitylation machinery and are thus more susceptible to non-specific ubiquitylation.

Tatham Michael H.、Lindorff-Larsen Kresten、Hartmann-Petersen Rasmus、Oelerich Nicole、Hofmann Kay、Boomsma Wouter、Gr?nb?k-Thygesen Martin、Kampmeyer Caroline、Cagiada Matteo

Centre for Gene Regulation and Expression, Sir James Black Centre, School of Life Sciences, University of DundeeThe Linderstr?m-Lang Centre for Protein Science, Department of Biology, University of CopenhagenThe Linderstr?m-Lang Centre for Protein Science, Department of Biology, University of CopenhagenInstitute for Genetics, University of CologneInstitute for Genetics, University of CologneDepartment of Computer Science, University of CopenhagenThe Linderstr?m-Lang Centre for Protein Science, Department of Biology, University of CopenhagenThe Linderstr?m-Lang Centre for Protein Science, Department of Biology, University of CopenhagenThe Linderstr?m-Lang Centre for Protein Science, Department of Biology, University of Copenhagen

10.1101/2022.12.08.519562

生物化学分子生物学细胞生物学

lysineubiquitinproteasomedegradationPTMintrinsically disordered protein

Tatham Michael H.,Lindorff-Larsen Kresten,Hartmann-Petersen Rasmus,Oelerich Nicole,Hofmann Kay,Boomsma Wouter,Gr?nb?k-Thygesen Martin,Kampmeyer Caroline,Cagiada Matteo.Lysine deserts prevent adventitious ubiquitylation of ubiquitin-proteasome components[EB/OL].(2025-03-28)[2025-04-27].https://www.biorxiv.org/content/10.1101/2022.12.08.519562.点此复制

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