Matches in SemOpenAlex for { <https://semopenalex.org/work/W3133663503> ?p ?o ?g. }
- W3133663503 endingPage "104182" @default.
- W3133663503 startingPage "104182" @default.
- W3133663503 abstract "Protein aggregation is indicative of failing protein quality control systems. These systems are responsible for the refolding or degradation of aberrant and misfolded proteins. Heat stress can cause proteins to misfold, triggering cellular responses including a marked increase in the ubiquitination of proteins. This response has been characterized in yeast, however more studies are needed within mammalian cells. Herein, we examine proteins that become ubiquitinated during heat shock in human tissue culture cells using diGly enrichment coupled with mass spectrometry. A majority of these proteins are localized in the nucleus or cytosol. Proteins which are conjugated under stress display longer sequence lengths, more interaction partners, and more hydrophobic patches than controls but do not show lower melting temperatures. Furthermore, heat-induced conjugation sites occur less frequently in disordered regions and are closer to hydrophobic patches than other ubiquitination sites; perhaps providing novel insight into the molecular mechanism mediating this response. Nuclear and cytosolic pools of modified proteins appear to have different protein features. Using a pulse-SILAC approach, we found that both long-lived and newly-synthesized proteins are conjugated under stress. Modified long-lived proteins are predominately nuclear and were distinct from newly-synthesized proteins, indicating that different pathways may mediate the heat-induced increase of polyubiquitination. The maintenance of protein homeostasis requires a balance of protein synthesis, folding, and degradation. Under stress conditions, the cell must rapidly adapt by increasing its folding capacity to eliminate aberrant proteins. A major pathway for proteolysis is mediated by the ubiquitin proteasome system. While increased ubiquitination after heat stress was observed over 30 years ago, it remains unclear which proteins are conjugated during heat shock in mammalian cells and by what means this conjugation occurs. In this study, we combined SILAC-based mass spectrometry with computational analyses to reveal features associated to proteins ubiquitinated while under heat shock. Interestingly, we found that conjugation sites induced by the stress are less often located within disordered regions and more often located near hydrophobic patches. Our study showcases how proteomics can reveal distinct feature associated to a cohort of proteins that are modified post translationally and how the ubiquitin conjugation sites are preferably selected in these conditions. Our work opens a new path for delineating the molecular mechanisms leading to the heat stress response and the regulation of protein homeostasis." @default.
- W3133663503 created "2021-03-15" @default.
- W3133663503 creator A5001598438 @default.
- W3133663503 creator A5006940999 @default.
- W3133663503 creator A5010199730 @default.
- W3133663503 creator A5010887011 @default.
- W3133663503 creator A5025110828 @default.
- W3133663503 creator A5036450315 @default.
- W3133663503 creator A5046029600 @default.
- W3133663503 creator A5058376745 @default.
- W3133663503 creator A5091320502 @default.
- W3133663503 date "2021-05-01" @default.
- W3133663503 modified "2023-10-01" @default.
- W3133663503 title "Protein feature analysis of heat shock induced ubiquitination sites reveals preferential modification site localization" @default.
- W3133663503 cites W1188264494 @default.
- W3133663503 cites W1506260722 @default.
- W3133663503 cites W1545435534 @default.
- W3133663503 cites W182930793 @default.
- W3133663503 cites W1884282970 @default.
- W3133663503 cites W1975200549 @default.
- W3133663503 cites W1977733856 @default.
- W3133663503 cites W1978577182 @default.
- W3133663503 cites W1981616344 @default.
- W3133663503 cites W1986656413 @default.
- W3133663503 cites W1994218254 @default.
- W3133663503 cites W1998852295 @default.
- W3133663503 cites W2002683430 @default.
- W3133663503 cites W2010192118 @default.
- W3133663503 cites W2012034410 @default.
- W3133663503 cites W2012310616 @default.
- W3133663503 cites W2012917547 @default.
- W3133663503 cites W2020392060 @default.
- W3133663503 cites W2027839322 @default.
- W3133663503 cites W2028380145 @default.
- W3133663503 cites W2033827101 @default.
- W3133663503 cites W2034764834 @default.
- W3133663503 cites W2043274355 @default.
- W3133663503 cites W2044287615 @default.
- W3133663503 cites W2050586659 @default.
- W3133663503 cites W2078779750 @default.
- W3133663503 cites W2080553628 @default.
- W3133663503 cites W2084706776 @default.
- W3133663503 cites W2086424573 @default.
- W3133663503 cites W2102679305 @default.
- W3133663503 cites W2106060913 @default.
- W3133663503 cites W2110287117 @default.
- W3133663503 cites W2115012618 @default.
- W3133663503 cites W2115148114 @default.
- W3133663503 cites W2115501297 @default.
- W3133663503 cites W2116504799 @default.
- W3133663503 cites W2126467039 @default.
- W3133663503 cites W2131474431 @default.
- W3133663503 cites W2138780628 @default.
- W3133663503 cites W2140946052 @default.
- W3133663503 cites W2143538182 @default.
- W3133663503 cites W2145240372 @default.
- W3133663503 cites W2147917253 @default.
- W3133663503 cites W2151619201 @default.
- W3133663503 cites W2152013005 @default.
- W3133663503 cites W2153187042 @default.
- W3133663503 cites W2162980545 @default.
- W3133663503 cites W2166987747 @default.
- W3133663503 cites W2275249194 @default.
- W3133663503 cites W2306540679 @default.
- W3133663503 cites W2366093519 @default.
- W3133663503 cites W2497525607 @default.
- W3133663503 cites W2528713053 @default.
- W3133663503 cites W2590059905 @default.
- W3133663503 cites W2609977986 @default.
- W3133663503 cites W2744204310 @default.
- W3133663503 cites W2762198049 @default.
- W3133663503 cites W2765094222 @default.
- W3133663503 cites W2907177719 @default.
- W3133663503 cites W2914425504 @default.
- W3133663503 cites W2917858269 @default.
- W3133663503 cites W2955962786 @default.
- W3133663503 cites W3008140494 @default.
- W3133663503 cites W3033323818 @default.
- W3133663503 cites W3120000595 @default.
- W3133663503 cites W855491747 @default.
- W3133663503 doi "https://doi.org/10.1016/j.jprot.2021.104182" @default.
- W3133663503 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33705978" @default.
- W3133663503 hasPublicationYear "2021" @default.
- W3133663503 type Work @default.
- W3133663503 sameAs 3133663503 @default.
- W3133663503 citedByCount "1" @default.
- W3133663503 countsByYear W31336635032023 @default.
- W3133663503 crossrefType "journal-article" @default.
- W3133663503 hasAuthorship W3133663503A5001598438 @default.
- W3133663503 hasAuthorship W3133663503A5006940999 @default.
- W3133663503 hasAuthorship W3133663503A5010199730 @default.
- W3133663503 hasAuthorship W3133663503A5010887011 @default.
- W3133663503 hasAuthorship W3133663503A5025110828 @default.
- W3133663503 hasAuthorship W3133663503A5036450315 @default.
- W3133663503 hasAuthorship W3133663503A5046029600 @default.
- W3133663503 hasAuthorship W3133663503A5058376745 @default.
- W3133663503 hasAuthorship W3133663503A5091320502 @default.
- W3133663503 hasConcept C104317684 @default.