review article | Q7318358 |
scholarly article | Q13442814 |
P356 | DOI | 10.1016/S0079-6123(06)62019-0 |
P698 | PubMed publication ID | 17645929 |
P2093 | author name string | Michael Oglesbee | |
Zachary Traylor | |||
Thomas Carsillo | |||
Matthew A Buccellato | |||
P2860 | cites work | Characterization of the thermotolerant cell. II. Effects on the intracellular distribution of heat-shock protein 70, intermediate filaments, and small nuclear ribonucleoprotein complexes | Q24680022 |
Lipid rafts and signal transduction | Q28131735 | ||
Heat-shock protein 70 antagonizes apoptosis-inducing factor | Q28215084 | ||
Localization of translational components at the ultramicroscopic level at postsynaptic sites of the rat brain | Q28565307 | ||
Constitutive expression of heat shock proteins Hsp90, Hsc70, Hsp70 and Hsp60 in neural and non-neural tissues of the rat during postnatal development | Q28566038 | ||
Presence of molecular chaperones, heat shock cognate (Hsc) 70 and heat shock proteins (Hsp) 40, in the postsynaptic structures of rat brain | Q28568818 | ||
Presence of both constitutive and inducible forms of heat shock protein 70 in the cerebral cortex and hippocampal synapses | Q28571313 | ||
Association of heat shock proteins and neuronal membrane components with lipid rafts from the rat brain | Q28571921 | ||
Rab-alphaGDI activity is regulated by a Hsp90 chaperone complex | Q28578339 | ||
Hsp72 recognizes a P binding motif in the measles virus N protein C-terminus | Q28910411 | ||
Pathways of chaperone-mediated protein folding in the cytosol | Q29618887 | ||
Whole body hyperthermia: effects upon canine immune and hemostatic functions | Q33330199 | ||
Alterations in hemostasis associated with hyperthermia in a canine model | Q33333265 | ||
Protein translocation: how Hsp70 pulls it off. | Q33669323 | ||
Molecular chaperone function of mammalian Hsp70 and Hsp40--a review | Q33903586 | ||
LTP mechanisms: from silence to four-lane traffic | Q33905426 | ||
Cysteine-string protein increases the calcium sensitivity of neurotransmitter exocytosis in Drosophila. | Q33912972 | ||
Roles of molecular chaperones in the nervous system | Q34067828 | ||
Interaction of heat shock proteins with peptides and antigen presenting cells: chaperoning of the innate and adaptive immune responses | Q34115645 | ||
Protein synthesis in salivary glands of Drosophila melanogaster: relation to chromosome puffs | Q34204429 | ||
A new puffing pattern induced by temperature shock and DNP in drosophila | Q55918906 | ||
Exercise induces hepatosplanchnic release of heat shock protein 72 in humans | Q59326285 | ||
A mechanism for the specific immunogenicity of heat shock protein-chaperoned peptides | Q60307732 | ||
Hyperthermic stress stimulates the association of both constitutive and inducible isoforms of 70 kDa heat shock protein with rat liver glucocorticoid receptor | Q60644098 | ||
Neuronal injury and expression of 72-kDa heat-shock protein after forebrain ischemia in the rat | Q67861874 | ||
Hyperthermia protects against light damage in the rat retina | Q67942688 | ||
Trigeminal ganglion neurons are protected by the heat shock proteins hsp70 and hsp90 from thermal stress but not from programmed cell death following nerve growth factor withdrawal | Q71525706 | ||
Glia-to-axon communication: enrichment of glial proteins transferred to the squid giant axon | Q71751919 | ||
The role of ATP in the functional cycle of the DnaK chaperone system | Q72300885 | ||
Heat shock protein vaccines against cancer | Q72705617 | ||
Heat shock proteins hsp90 and hsp70 protect neuronal cells from thermal stress but not from programmed cell death | Q72729101 | ||
Identification of mRNAs localizing in the postsynaptic region | Q73101791 | ||
Hyperthermic induction of the 27-kDa heat shock protein (Hsp27) in neuroglia and neurons of the rat central nervous system | Q73179690 | ||
The effect of pre hypoxic-ischemic (HI) hypo and hyperthermia on brain damage in the immature rat | Q73196412 | ||
Heat-induced alterations in the localization of HSP72 and HSP73 as measured by indirect immunohistochemistry and immunogold electron microscopy | Q73462693 | ||
HBV-specific peptide associated with heat-shock protein gp96 | Q73566385 | ||
CD91: a receptor for heat shock protein gp96 | Q73615235 | ||
J proteins catalytically activate Hsp70 molecules to trap a wide range of peptide sequences | Q77652505 | ||
Elevated levels of inducible heat shock 70 proteins in human brain | Q82263280 | ||
Use of Hsp90 inhibitors to disrupt GDI-dependent Rab recycling | Q82533395 | ||
Thermal preconditioning and heat-shock protein 72 preserve synaptic transmission during thermal stress. | Q43833774 | ||
A 72 kDa heat shock protein is protective against the selective vulnerability of CA1 neurons and is essential for the tolerance exhibited by CA3 neurons in the hippocampus | Q43942889 | ||
Roles of cytosolic Hsp70 and Hsp40 molecular chaperones in post-translational translocation of presecretory proteins into the endoplasmic reticulum | Q44257199 | ||
Hyperthermic pre-conditioning protects retinal neurons from N-methyl-D-aspartate (NMDA)-induced apoptosis in rat. | Q44410515 | ||
Identification of cerebral neurons and glial cell types inducing heat shock protein Hsp70 following heat stress in the rat | Q44434699 | ||
Necrotic but not apoptotic cell death releases heat shock proteins, which deliver a partial maturation signal to dendritic cells and activate the NF-kappa B pathway | Q44539124 | ||
Heat-shock pretreatment prevents suppression of long-term potentiation induced by scopolamine in rat hippocampal CA1 synapses | Q44753644 | ||
Cat exposure induces both intra- and extracellular Hsp72: the role of adrenal hormones | Q44953253 | ||
Hyperthermic pre-conditioning promotes measles virus clearance from brain in a mouse model of persistent infection | Q45662942 | ||
Constitutive overexpression of the major inducible 70 kDa heat shock protein mediates large plaque formation by measles virus | Q45753704 | ||
The cellular stress response increases measles virus-induced cytopathic effect | Q45754598 | ||
Interaction of Hsp 70 with newly synthesized proteins: implications for protein folding and assembly. | Q45950874 | ||
Heat shock protein HSP70 increases the resistance of cortical cells to glutamate excitotoxicity | Q46778460 | ||
Role for calcium in heat shock-mediated synaptic thermoprotection in Drosophila larvae | Q47689691 | ||
Generation of tumor-specific cytotoxic T lymphocytes and memory T cells by immunization with tumor-derived heat shock protein gp96. | Q47807166 | ||
Heat-shock proteins in axoplasm: high constitutive levels and transfer of inducible isoforms from glia | Q47983189 | ||
Induction of Hsp27 and Hsp32 stress proteins and vimentin in glial cells of the rat hippocampus following hyperthermia | Q48266629 | ||
Heat shock-like protein is transferred from glia to axon | Q48385741 | ||
Intrinsic thermal resistance of the canine brain | Q48544986 | ||
Auditory brainstem response during systemic hyperthermia | Q48695036 | ||
HSP70 is essential to the neuroprotective effect of heat-shock | Q48859658 | ||
Constitutive expression of heat shock protein HSP25 in the central nervous system of the developing and adult mouse | Q48893494 | ||
Heat shock protects synaptic transmission in flight motor circuitry of locusts. | Q52565459 | ||
Enhancement of presynaptic performance in transgenic Drosophila overexpressing heat shock protein Hsp70. | Q52594314 | ||
Role of extracellular HSP72 in acute stress-induced potentiation of innate immunity in active rats. | Q54536327 | ||
Hsp70 interactions with the p53 tumour suppressor protein | Q34353830 | ||
Identification and characterization of a regulatory domain on the carboxyl terminus of the measles virus nucleocapsid protein | Q34362639 | ||
Heat shock proteins and cardiovascular pathophysiology. | Q34388079 | ||
A single codon in the nucleocapsid protein C terminus contributes to in vitro and in vivo fitness of Edmonston measles virus | Q34434979 | ||
Lipid rafts at postsynaptic sites: distribution, function and linkage to postsynaptic density | Q34804497 | ||
Role for heat shock proteins in the immune response to measles virus infection | Q35024339 | ||
Heat shock protein 70: role in antigen presentation and immune stimulation | Q35049403 | ||
Heat shock proteins in the regulation of apoptosis: new strategies in tumor therapy: a comprehensive review | Q35697057 | ||
Local protein synthesis during axon guidance and synaptic plasticity | Q35803110 | ||
Mechanisms of herpes simplex virus type 1 reactivation | Q35865825 | ||
Characterization of the thermotolerant cell. I. Effects on protein synthesis activity and the regulation of heat-shock protein 70 expression | Q36218354 | ||
The constitutive and stress inducible forms of hsp 70 exhibit functional similarities and interact with one another in an ATP-dependent fashion | Q36233087 | ||
Substrate specificity of the DnaK chaperone determined by screening cellulose-bound peptide libraries | Q36857677 | ||
The effect of hyperthermia on the induction of cell death in brain, testis, and thymus of the adult and developing rat. | Q37489976 | ||
Stress-induced extracellular Hsp72 is a functionally significant danger signal to the immune system | Q37490925 | ||
Regulation of the heat-shock protein 70 reaction cycle by the mammalian DnaJ homolog, Hsp40. | Q38354169 | ||
gp96-peptide vaccination of mice against intracellular bacteria | Q39521059 | ||
Spatial analysis of cell death and Hsp70 induction in brain, thymus, and bone marrow of the hyperthermic rat. | Q39958544 | ||
Exogenous heat shock cognate protein Hsc 70 prevents axotomy-induced death of spinal sensory neurons | Q40104229 | ||
Cell death and expression of heat-shock protein Hsc70 in the hyperthermic rat brain. | Q40480561 | ||
A role for the cytoskeleton in heat-shock-mediated thermoprotection of locust neuromuscular junctions | Q40528104 | ||
In vivo heat-shock response in the brain: signalling pathway and transcription factor activation. | Q40546995 | ||
Measles virus infections in rodents | Q40549707 | ||
Induction of stress proteins in a panel of mouse tissues by fever-range whole body hyperthermia | Q40567146 | ||
Hyperthermia induces gene expression of heat shock protein 70 and phosphorylation of mitogen activated protein kinases in the rat cerebellum. | Q40595124 | ||
Heat shock transcription factors and the hsp70 induction response in brain and kidney of the hyperthermic rat during postnatal development | Q40620135 | ||
Heat shock proteins Hsp27 and Hsp32 localize to synaptic sites in the rat cerebellum following hyperthermia | Q40626001 | ||
Localization of the heat-shock protein Hsp70 to the synapse following hyperthermic stress in the brain | Q40627126 | ||
Cell specific expression of Hsp70 in neurons and glia of the rat hippocampus after hyperthermia and kainic acid-induced seizure activity | Q40631590 | ||
Differential induction of heat shock mRNA in oligodendrocytes, microglia, and astrocytes following hyperthermia | Q40651729 | ||
Expression of mRNA species encoding heat shock protein 90 (hsp90) in control and hyperthermic rabbit brain | Q40672668 | ||
Expression of Heat Shock Protein 90 (hsp90) in Neural and Nonneural Tissues of the Control and Hyperthermic Rabbit | Q40681798 | ||
Effect of hyperthermia on the central nervous system: a review | Q40734266 | ||
Distribution of 72-kDa heat-shock protein in rat brain after hyperthermia | Q40740530 | ||
Time course of induction of a heat shock gene (hsp70) in the rabbit cerebellum after LSD in vivo: involvement of drug-induced hyperthermia | Q40766450 | ||
Bag1-Hsp70 mediates a physiological stress signalling pathway that regulates Raf-1/ERK and cell growth. | Q40822867 | ||
Heat shock protein-peptide complexes elicit cytotoxic T-lymphocyte and antibody responses specific for bovine herpesvirus 1. | Q40829464 | ||
Heat shock protein 70 kDa: molecular biology, biochemistry, and physiology | Q40833247 | ||
The effect of the cellular stress response on human T-lymphotropic virus type I envelope protein expression | Q40982872 | ||
A cycle of binding and release of the DnaK, DnaJ and GrpE chaperones regulates activity of the Escherichia coli heat shock transcription factor sigma32. | Q41063873 | ||
Cell-nuclear accumulation of 72-kDa stress protein induced by dimethylated arsenics | Q41118203 | ||
Enhanced human T-cell lymphotropic virus type I expression following induction of the cellular stress response | Q41349437 | ||
Enhanced production of morbillivirus gene-specific RNAs following induction of the cellular stress response in stable persistent infection | Q41576311 | ||
Activation of the ATPase activity of heat-shock proteins Hsc70/Hsp70 by cysteine-string protein | Q42216617 | ||
Independent functions of hsp90 in neurotransmitter release and in the continuous synaptic cycling of AMPA receptors. | Q42461889 | ||
HSP70 constitutive expression in rat central nervous system from postnatal development to maturity | Q42524955 | ||
Administration of Hsp70 in vivo inhibits motor and sensory neuron degeneration. | Q42705248 | ||
CD91 is a common receptor for heat shock proteins gp96, hsp90, hsp70, and calreticulin | Q43566795 | ||
Drosophila Hsc70-4 is critical for neurotransmitter exocytosis in vivo | Q43631819 | ||
In vitro studies show that Hsp70 can be released by glia and that exogenous Hsp70 can enhance neuronal stress tolerance | Q43751823 | ||
Stress proteins in oligodendrocytes: differential effects of heat shock and oxidative stress | Q43752322 | ||
Uncoating of clathrin-coated vesicles in presynaptic terminals: roles for Hsc70 and auxilin | Q43782625 | ||
P304 | page(s) | 395-415 | |
P577 | publication date | 2007-01-01 | |
P1433 | published in | Progress in Brain Research | Q15800382 |
P1476 | title | Heat shock protein expression in brain: a protective role spanning intrinsic thermal resistance and defense against neurotropic viruses | |
P478 | volume | 162 |
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