scholarly article | Q13442814 |
P356 | DOI | 10.1016/0012-1606(80)90488-1 |
P8608 | Fatcat ID | release_qvi6asjxhnhtha2fe742mef3gu |
P698 | PubMed publication ID | 7399133 |
P2093 | author name string | Lindquist S | |
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 463-479 | |
P577 | publication date | 1980-06-01 | |
P1433 | published in | Developmental Biology | Q3025402 |
P1476 | title | Varying patterns of protein synthesis in Drosophila during heat shock: implications for regulation. | |
P478 | volume | 77 |
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Q92084893 | A Legionella pneumophila Kinase Phosphorylates the Hsp70 Chaperone Family to Inhibit Eukaryotic Protein Synthesis |
Q70058924 | A Neurospora crassa heat-shocked cell lysate translates homologous and heterologous messenger RNA efficiently, without preference for heat shock messages |
Q61874626 | A Programmable Optical Stimulator for the Eye |
Q36896381 | A consensus sequence polymer inhibits in vivo expression of heat shock genes |
Q36925437 | A normal mitochondrial protein is selectively synthesized and accumulated during heat shock in Tetrahymena thermophila |
Q42158646 | A novel chaperone-activity-reducing mechanism of the 90-kDa molecular chaperone HSP90. |
Q40410996 | A regulatory role for the 5' and 3' untranslated regions in differential expression of hsp83 in Leishmania |
Q52521480 | Activating protein factor binds in vitro to upstream control sequences in heat shock gene chromatin. |
Q40893724 | Adaptation of an insect cell line of Spodoptera frugiperda to grow at 37 degrees C: characterization of an endodiploid clone |
Q67988321 | Age-related changes of heat shock protein gene transcription in human peripheral blood mononuclear cells |
Q28237753 | An RNA aptamer perturbs heat shock transcription factor activity in Drosophila melanogaster |
Q36971809 | Antibodies to two major chicken heat shock proteins cross-react with similar proteins in widely divergent species |
Q70474054 | Arsenite-induced changes in methylation of the 70,000 dalton heat shock proteins in chicken embryo fibroblasts |
Q36023274 | Biology of the heat shock response and protein chaperones: budding yeast (Saccharomyces cerevisiae) as a model system. |
Q33700793 | Characterization of the small heat shock protein Hsp27 gene in Chironomus riparius (Diptera) and its expression profile in response to temperature changes and xenobiotic exposures. |
Q36218354 | Characterization of the thermotolerant cell. I. Effects on protein synthesis activity and the regulation of heat-shock protein 70 expression |
Q21092435 | Chromatin Landscape Dictates HSF Binding to Target DNA Elements |
Q46762075 | Cloning & sequence identification of Hsp27 gene and expression analysis of the protein on thermal stress in Lucilia cuprina |
Q46019495 | Combinatorial signaling by Twisted Gastrulation and Decapentaplegic. |
Q41086145 | DNA transfection in the ecdysteroid-responsive GV1 cell line from the tobacco hornworm, Manduca sexta |
Q36840325 | Developmental-stage-specific expression of the hsp70 gene family during differentiation of the mammalian male germ line |
Q89560402 | Differential patterns in the temporal experession ofBombyx mori chorion genes |
Q41874919 | Durable synthesis of high molecular weight heat shock proteins in G0 cells of the yeast and other eucaryotes |
Q41757257 | Early Activation of Heat Shock Genes in H2O2-Treated Drosophila Cells |
Q68872900 | Elevated transcription of heat shock protein gene in scleroderma fibroblasts |
Q33563117 | Enhanced expression of the heat shock protein gene in peripheral blood mononuclear cells of patients with active systemic lupus erythematosus |
Q36912272 | Expression and localization of Drosophila melanogaster hsp70 cognate proteins |
Q42467706 | Expression of HSPs: an adaptive mechanism during long-term heat stress in goats (Capra hircus). |
Q48711180 | Expression of heat shock protein 70 and heat shock cognate 70 messenger RNAs in rat cortex and cerebellum after heat shock or amphetamine treatment |
Q34308060 | Fruit flies with additional expression of the elongation factor EF-1 alpha live longer |
Q36864694 | Fungal Hsp90: a biological transistor that tunes cellular outputs to thermal inputs |
Q53614761 | Gene expression profiles during heat acclimation in Arabidopsis thaliana suspension-culture cells. |
Q33630846 | Genetic organization of polytene chromosomes |
Q46607390 | Glutamine is a powerful effector of heat shock protein expression inDrosophila Kc cells |
Q52549799 | HSF recruitment and loss at most Drosophila heat shock loci is coordinated and depends on proximal promoter sequences. |
Q42073334 | Heat sensitivity and protein synthesis during heat-shock in the tobacco hornworm, Manduca sexta |
Q36327102 | Heat shock 70 gene is differentially expressed in Histoplasma capsulatum strains with different levels of thermotolerance and pathogenicity |
Q36936173 | Heat shock alters nuclear ribonucleoprotein assembly in Drosophila cells |
Q36764536 | Heat shock and developmental regulation of the Drosophila melanogaster hsp83 gene |
Q36315775 | Heat shock and recovery are mediated by different translational mechanisms |
Q44386820 | Heat shock phenomena in Aspergillus nidulans. I. The effect of heat on mycelial protein synthesis |
Q46322978 | Heat shock protein 70 from a thermotolerant Diptera species provides higher thermoresistance to Drosophila larvae than correspondent endogenous gene. |
Q39834700 | Heat shock protein 72 protects kidney proximal tubule cells from injury induced by triptolide by means of activation of the MEK/ERK pathway |
Q37602285 | Heat shock protein in mammalian brain and other organs after a physiologically relevant increase in body temperature induced by D-lysergic acid diethylamide |
Q47934903 | Heat shock proteins in maize |
Q36359926 | Heat shock response in Drosophila |
Q36305594 | Heat shock response of Neurospora crassa: protein synthesis and induced thermotolerance |
Q52263533 | Heat shock responses in polytene foot pad cells of Sarcophaga bullata. |
Q36949966 | Heat shock-induced translational control of HSP70 and globin synthesis in chicken reticulocytes |
Q41580877 | Heat-induced unresponsiveness of heat shock gene expression is regulated at the transcriptional level |
Q48086826 | Heat-inducible rice hsp82 and hsp70 are not always co-regulated |
Q33259824 | Heat-shock promoters: targets for evolution by P transposable elements in Drosophila |
Q41454401 | Heat-shock proteins are associated with hnRNA in Drosophila melanogaster tissue culture cells. |
Q36205225 | Heat-shock proteins of Drosophila are associated with nuclease-resistant, high-salt-resistant nuclear structures |
Q39238266 | Heat-shock response and antioxidant defense during air exposure in Patagonian shallow-water limpets from different climatic habitats. |
Q39956857 | Hsp70 and thermal pretreatment mitigate developmental damage caused by mitotic poisons in Drosophila |
Q45294110 | Huntingtin interacting protein HYPK is a negative regulator of heat shock response and is downregulated in models of Huntington's Disease |
Q64258342 | IRES Trans-Acting Factors, Key Actors of the Stress Response |
Q24617567 | In vivo interactions of RNA polymerase II with genes of Drosophila melanogaster |
Q47745411 | Induction of stress proteins in anoxic and hyperthermicSpodoptera frugiperda cells. |
Q35586489 | Inhibition of heat shock protein synthesis by heat-inducible antisense RNA. |
Q48366231 | Interspecific nucleotide sequence comparisons used to identify regulatory and structural features of the Drosophila hsp82 gene |
Q36206604 | Is the major Drosophila heat shock protein present in cells that have not been heat shocked? |
Q41818780 | Isoprenaline-induced transcription of 4 beta-galactosyltransferase is inhibited by both cycloheximide and actinomycin D in rat parotid acinar cells |
Q52517011 | Kinetics and models of the Drosophila heat-shock system |
Q52692258 | Latitudinal and cold-tolerance variation associate with DNA repeat-number variation in the hsr-omega RNA gene of Drosophila melanogaster. |
Q38747462 | Lipid Biosynthesis Coordinates a Mitochondrial-to-Cytosolic Stress Response. |
Q40494020 | Localization of the hsp83 transcript within a 3292 nucleotide sequence from the 63B heat shock locus ofD. melanogaster |
Q40292403 | Modelling the regulation of thermal adaptation in Candida albicans, a major fungal pathogen of humans |
Q92664199 | Molecular basis for efficacy of Guduchi and Madhuyashti feeding on different environmental stressors in Drosophila |
Q36916283 | No heat shock protein synthesis is required for induced thermostabilization of translational machinery |
Q40677037 | Noncoordinate histone synthesis in heat-shocked Drosophila cells is regulated at multiple levels |
Q81798921 | Novel gene switches for targeted and timed expression of proteins of interest |
Q36208352 | Nuclear RNA-protein interactions and messenger RNA processing |
Q36910666 | Nucleosomal instability and induction of new upstream protein-DNA associations accompany activation of four small heat shock protein genes in Drosophila melanogaster |
Q33716872 | On mechanisms that control heat shock transcription factor activity in metazoan cells |
Q33586257 | Phylogeny disambiguates the evolution of heat-shock cis-regulatory elements in Drosophila |
Q36654109 | Preferential deadenylation of Hsp70 mRNA plays a key role in regulating Hsp70 expression in Drosophila melanogaster |
Q47930661 | Presence of Heat Shock mRNAs in Field Crown Soybeans |
Q40078312 | Primary culture, cellular stress and differentiated function |
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Q43884437 | Protection against heat stress-induced oxidative damage in Arabidopsis involves calcium, abscisic acid, ethylene, and salicylic acid |
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Q33838779 | Protein synthesis rates in Drosophila associate with levels of the hsr-omega nuclear transcript |
Q35613156 | RNA aptamers as effective protein antagonists in a multicellular organism |
Q36738468 | RNA polymerase II pauses at the 5' end of the transcriptionally induced Drosophila hsp70 gene |
Q37170852 | Rapamycin conditionally inhibits Hsp90 but not Hsp70 mRNA translation in Drosophila: implications for the mechanisms of Hsp mRNA translation |
Q36686112 | Rapid changes in Drosophila transcription after an instantaneous heat shock |
Q37004590 | Recombinant HSP70 and mild heat shock stimulate growth of aged mesenchymal stem cells |
Q35329588 | Recovery of protein synthesis after heat shock: prior heat treatment affects the ability of cells to translate mRNA |
Q40640802 | Regulation of HSP70 synthesis by messenger RNA degradation |
Q52446784 | Regulatory elements near the Drosophila hsp 22 gene required for ecdysterone and heat shock induction. |
Q52466432 | Relationship between cell survival and heat-stress protein synthesis in a Drosophila cell line. |
Q68023265 | Relationship between heat-shock protein synthesis and thermotolerance in rainbow trout fibroblasts |
Q28118304 | Repression of heat shock transcription factor HSF1 activation by HSP90 (HSP90 complex) that forms a stress-sensitive complex with HSF1 |
Q52449383 | Requirement for period gene expression in the adult and not during development for locomotor activity rhythms of imaginal Drosophila melanogaster. |
Q40901427 | Response of high mobility group proteins of human kidney T1 and murine L 929 cell lines to heat shock |
Q47931339 | Ribulose 1,5-Bisphosphate Carboxylase Synthesis during Heat Shock |
Q47071279 | Selective arrangement of ubiquitinated and D1 protein-containing nucleosomes within the drosophila genome |
Q29040995 | Sensing stress and responding to stress |
Q36915290 | Sequence requirement for expression of the Drosophila melanogaster heat shock protein hsp22 gene during heat shock and normal development |
Q42409783 | Signalling mucin Msb2 Regulates adaptation to thermal stress in Candida albicans |
Q34338604 | Small molecule activators of the heat shock response: chemical properties, molecular targets, and therapeutic promise |
Q52782559 | Spatial analysis of gene regulation reveals new insights into the molecular basis of upper thermal limits. |
Q68896505 | Spontaneous activation of heat shock protein gene transcription in peripheral blood mononuclear cells of individuals with active systemic lupus erythematosus |
Q52295886 | Stage dependent synthesis of heat shock induced proteins in early embryos of Drosophila melanogaster. |
Q36948865 | Starved Tetrahymena thermophila cells that are unable to mount an effective heat shock response selectively degrade their rRNA. |
Q30316340 | Stress and biological aging: A double-edged sword. |
Q36280528 | Synthesis of low molecular weight heat shock peptides stimulated by ecdysterone in a cultured Drosophila cell line |
Q36206089 | Synthesis, transport, and utilization of specific flagellar proteins during flagellar regeneration in Chlamydomonas |
Q34767044 | The 2008 Genetics Society of America Medal. Susan Lindquist |
Q36548165 | The Use of Heat-Shock-Induced Ectopic Expression to Examine the Functions of Genes Regulating Development |
Q35959597 | The conditional inhibition of gene expression in cultured Drosophila cells by antisense RNA |
Q41609447 | The consequences of expressing hsp70 in Drosophila cells at normal temperatures |
Q52442944 | The heat shock response. Cells coping with transient stress |
Q35433020 | Transcription, export and turnover of Hsp70 and alpha beta, two Drosophila heat shock genes sharing a 400 nucleotide 5' upstream region |
Q52546103 | Transcriptional regulation in Drosophila during heat shock: a nuclear run-on analysis. |
Q35813289 | Transcriptional regulation of the metazoan stress protein response |
Q90147225 | Transcriptome analysis of Panax ginseng response to high light stress |
Q52717061 | Transcripts from the Drosophila heat-shock gene hsr-omega influence rates of protein synthesis but hardly affect resistance to heat knockdown. |
Q34307813 | Transient interaction of Hsp90 with early unfolding intermediates of citrate synthase. Implications for heat shock in vivo |
Q33940144 | Transient paralysis by heat shock of hormonal regulation of gene expression |
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Q35743647 | Two closely linked transcription units within the 63B heat shock puff locus of D. melanogaster display strikingly different regulation |
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