New insights into the cellular temporal response to proteostatic stress
10.7554/eLife.39054
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sg-nus-scholar.10635-1750412024-11-11T14:52:40Z New insights into the cellular temporal response to proteostatic stress Rendleman, J Cheng, Z Maity, S Kastelic, N Munschauer, M Allgoewer, K Teo, G Zhang, Y.B.M Lei, A Parker, B Landthaler, M Freeberg, L Kuersten, S Choi, H Vogel, C SAW SWEE HOCK SCHOOL OF PUBLIC HEALTH amino acid transfer RNA ligase chaperone complementary DNA DNA mismatch repair protein MSH2 integrin messenger RNA monocyte chemotactic protein 1 Rad51 protein reactive oxygen metabolite transcriptome tunicamycin amino acid transfer RNA ligase initiation factor 2 membrane protein PERK kinase protein kinase R tunicamycin 3' untranslated region alternative RNA splicing Article bioinformatics cellular distribution cellular stress response citric acid cycle controlled study DNA library DNA repair down regulation endoplasmic reticulum stress energy metabolism energy yield gene gene expression gene expression regulation human human cell mass spectrometry mitochondrion oxidative phosphorylation oxidative stress protein binding protein degradation protein expression protein footprinting protein homeostasis protein RNA binding protein secondary structure proteomics real time polymerase chain reaction regulatory mechanism RNA degradation RNA extraction RNA sequence RNA translation signal transduction upregulation uterine cervix cancer Western blotting conformation drug effect endoplasmic reticulum essential gene genetic transcription genetics HeLa cell line metabolism open reading frame physiological stress principal component analysis protein synthesis ribosome time factor unfolded protein response Amino Acyl-tRNA Synthetases DNA Repair eIF-2 Kinase Endoplasmic Reticulum Endoplasmic Reticulum Stress Eukaryotic Initiation Factor-2 Gene Expression Regulation Genes, Essential HeLa Cells Humans Membrane Proteins Nucleic Acid Conformation Open Reading Frames Principal Component Analysis Protein Biosynthesis Proteostasis Ribosomes Signal Transduction Stress, Physiological Time Factors Transcription, Genetic Tunicamycin Unfolded Protein Response 10.7554/eLife.39054 eLife 7 e39054 2020-09-09T03:07:11Z 2020-09-09T03:07:11Z 2018 Article Rendleman, J, Cheng, Z, Maity, S, Kastelic, N, Munschauer, M, Allgoewer, K, Teo, G, Zhang, Y.B.M, Lei, A, Parker, B, Landthaler, M, Freeberg, L, Kuersten, S, Choi, H, Vogel, C (2018). New insights into the cellular temporal response to proteostatic stress. eLife 7 : e39054. ScholarBank@NUS Repository. https://doi.org/10.7554/eLife.39054 2050084X https://scholarbank.nus.edu.sg/handle/10635/175041 Unpaywall 20200831 |
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amino acid transfer RNA ligase chaperone complementary DNA DNA mismatch repair protein MSH2 integrin messenger RNA monocyte chemotactic protein 1 Rad51 protein reactive oxygen metabolite transcriptome tunicamycin amino acid transfer RNA ligase initiation factor 2 membrane protein PERK kinase protein kinase R tunicamycin 3' untranslated region alternative RNA splicing Article bioinformatics cellular distribution cellular stress response citric acid cycle controlled study DNA library DNA repair down regulation endoplasmic reticulum stress energy metabolism energy yield gene gene expression gene expression regulation human human cell mass spectrometry mitochondrion oxidative phosphorylation oxidative stress protein binding protein degradation protein expression protein footprinting protein homeostasis protein RNA binding protein secondary structure proteomics real time polymerase chain reaction regulatory mechanism RNA degradation RNA extraction RNA sequence RNA translation signal transduction upregulation uterine cervix cancer Western blotting conformation drug effect endoplasmic reticulum essential gene genetic transcription genetics HeLa cell line metabolism open reading frame physiological stress principal component analysis protein synthesis ribosome time factor unfolded protein response Amino Acyl-tRNA Synthetases DNA Repair eIF-2 Kinase Endoplasmic Reticulum Endoplasmic Reticulum Stress Eukaryotic Initiation Factor-2 Gene Expression Regulation Genes, Essential HeLa Cells Humans Membrane Proteins Nucleic Acid Conformation Open Reading Frames Principal Component Analysis Protein Biosynthesis Proteostasis Ribosomes Signal Transduction Stress, Physiological Time Factors Transcription, Genetic Tunicamycin Unfolded Protein Response |
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amino acid transfer RNA ligase chaperone complementary DNA DNA mismatch repair protein MSH2 integrin messenger RNA monocyte chemotactic protein 1 Rad51 protein reactive oxygen metabolite transcriptome tunicamycin amino acid transfer RNA ligase initiation factor 2 membrane protein PERK kinase protein kinase R tunicamycin 3' untranslated region alternative RNA splicing Article bioinformatics cellular distribution cellular stress response citric acid cycle controlled study DNA library DNA repair down regulation endoplasmic reticulum stress energy metabolism energy yield gene gene expression gene expression regulation human human cell mass spectrometry mitochondrion oxidative phosphorylation oxidative stress protein binding protein degradation protein expression protein footprinting protein homeostasis protein RNA binding protein secondary structure proteomics real time polymerase chain reaction regulatory mechanism RNA degradation RNA extraction RNA sequence RNA translation signal transduction upregulation uterine cervix cancer Western blotting conformation drug effect endoplasmic reticulum essential gene genetic transcription genetics HeLa cell line metabolism open reading frame physiological stress principal component analysis protein synthesis ribosome time factor unfolded protein response Amino Acyl-tRNA Synthetases DNA Repair eIF-2 Kinase Endoplasmic Reticulum Endoplasmic Reticulum Stress Eukaryotic Initiation Factor-2 Gene Expression Regulation Genes, Essential HeLa Cells Humans Membrane Proteins Nucleic Acid Conformation Open Reading Frames Principal Component Analysis Protein Biosynthesis Proteostasis Ribosomes Signal Transduction Stress, Physiological Time Factors Transcription, Genetic Tunicamycin Unfolded Protein Response Rendleman, J Cheng, Z Maity, S Kastelic, N Munschauer, M Allgoewer, K Teo, G Zhang, Y.B.M Lei, A Parker, B Landthaler, M Freeberg, L Kuersten, S Choi, H Vogel, C New insights into the cellular temporal response to proteostatic stress |
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10.7554/eLife.39054 |
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SAW SWEE HOCK SCHOOL OF PUBLIC HEALTH |
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SAW SWEE HOCK SCHOOL OF PUBLIC HEALTH Rendleman, J Cheng, Z Maity, S Kastelic, N Munschauer, M Allgoewer, K Teo, G Zhang, Y.B.M Lei, A Parker, B Landthaler, M Freeberg, L Kuersten, S Choi, H Vogel, C |
format |
Article |
author |
Rendleman, J Cheng, Z Maity, S Kastelic, N Munschauer, M Allgoewer, K Teo, G Zhang, Y.B.M Lei, A Parker, B Landthaler, M Freeberg, L Kuersten, S Choi, H Vogel, C |
author_sort |
Rendleman, J |
title |
New insights into the cellular temporal response to proteostatic stress |
title_short |
New insights into the cellular temporal response to proteostatic stress |
title_full |
New insights into the cellular temporal response to proteostatic stress |
title_fullStr |
New insights into the cellular temporal response to proteostatic stress |
title_full_unstemmed |
New insights into the cellular temporal response to proteostatic stress |
title_sort |
new insights into the cellular temporal response to proteostatic stress |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/175041 |
_version_ |
1821213678234501120 |