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Jacques Landry
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Research Profile (preview)
Chemicals & Drugs
Living Beings
Phenomena
Anatomy
Physiology
Genes & Molecular Sequences
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Network (preview)
14
Huot, Jacques
10
Lambert, Herman
7
Charette, Steve
6
Houle, François
4
Thériault, Jimmy
4
Weber, Lee
4
Rousseau, Simon
4
Chávez Zobel, Aura
4
Marceau, Normand
3
Deschesnes, Réna
3
Dorion, Sonia
3
Bellmann, Kerstin
3
Tanguay, Robert
2
Labrie, Mireille
2
Lavoie, Josée
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All Publications
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2009: Nadeau Philippe J; Charette Steve J; Landry Jacques
REDOX reaction at ASK1-Cys250 is essential for activation of JNK and induction of apoptosis.
Molecular biology of the cell 2009;20(16):3628-37.
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2008: Carra Serena; Seguin Samuel J; Landry Jacques
HspB8 and Bag3: a new chaperone complex targeting misfolded proteins to macroautophagy.
Autophagy 2008;4(2):237-9.
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2008: Carra Serena; Seguin Samuel J; Lambert Herman; Landry Jacques
HspB8 chaperone activity toward poly(Q)-containing proteins depends on its association with Bag3, a stimulator of macroautophagy.
The Journal of biological chemistry 2008;283(3):1437-44.
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2007: Nadeau Philippe J; Charette Steve J; Toledano Michel B; Landry Jacques
Disulfide Bond-mediated multimerization of Ask1 and its reduction by thioredoxin-1 regulate H(2)O(2)-induced c-Jun NH(2)-terminal kinase activation and apoptosis.
Molecular biology of the cell 2007;18(10):3903-13.
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2006: Bellmann Kerstin; Martel Julie; Poirier Dominic J P; Labrie Mireille M; Landry Jacques
Downregulation of the PI3K/Akt survival pathway in cells with deregulated expression of c-Myc.
Apoptosis : an international journal on programmed cell death 2006;11(8):1311-9.
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2005: Carra Serena; Sivilotti Mitchel; Chávez Zobel Aura T; Lambert Herman; Landry Jacques
HspB8, a small heat shock protein mutated in human neuromuscular disorders, has in vivo chaperone activity in cultured cells.
Human molecular genetics 2005;14(12):1659-69.
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2005: Chávez Zobel Aura T; Lambert Herman; Thériault Jimmy R; Landry Jacques
Structural instability caused by a mutation at a conserved arginine in the alpha-crystallin domain of Chinese hamster heat shock protein 27.
Cell stress & chaperones 2005;10(2):157-66.
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2004: Thériault Jimmy R; Lambert Herman; Chávez-Zobel Aura T; Charest Gabriel; Lavigne Pierre; Landry Jacques
Essential role of the NH2-terminal WD/EPF motif in the phosphorylation-activated protective function of mammalian Hsp27.
The Journal of biological chemistry 2004;279(22):23463-71.
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2003: Chávez Zobel Aura T; Loranger Anne; Marceau Normand; Thériault Jimmy R; Lambert Herman; Landry Jacques
Distinct chaperone mechanisms can delay the formation of aggresomes by the myopathy-causing R120G alphaB-crystallin mutant.
Human molecular genetics 2003;12(13):1609-20.
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2003: Desbiens Katia M; Deschesnes Réna G; Labrie Mireille M; Desfossés Yan; Lambert Herman; Landry Jacques; Bellmann Kerstin
c-Myc potentiates the mitochondrial pathway of apoptosis by acting upstream of apoptosis signal-regulating kinase 1 (Ask1) in the p38 signalling cascade.
The Biochemical journal 2003;372(Pt 2):631-41.
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2002: Dorion Sonia; Lambert Herman; Landry Jacques
Activation of the p38 signaling pathway by heat shock involves the dissociation of glutathione S-transferase Mu from Ask1.
The Journal of biological chemistry 2002;277(34):30792-7.
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2002: Dorion Sonia; Landry Jacques
Activation of the mitogen-activated protein kinase pathways by heat shock.
Cell stress & chaperones 2002;7(2):200-6.
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2001: Charette S J; Lambert H; Landry J
A kinase-independent function of Ask1 in caspase-independent cell death.
The Journal of biological chemistry 2001;276(39):36071-4.
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2001: Deschesnes R G; Huot J; Valerie K; Landry J
Involvement of p38 in apoptosis-associated membrane blebbing and nuclear condensation.
Molecular biology of the cell 2001;12(6):1569-82.
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2000: Charette S J; Lavoie J N; Lambert H; Landry J
Inhibition of Daxx-mediated apoptosis by heat shock protein 27.
Molecular and cellular biology 2000;20(20):7602-12.
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2000: Bellmann K; Burkart V; Bruckhoff J; Kolb H; Landry J
p38-dependent enhancement of cytokine-induced nitric-oxide synthase gene expression by heat shock protein 70.
The Journal of biological chemistry 2000;275(24):18172-9.
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2000: Rousseau S; Houle F; Kotanides H; Witte L; Waltenberger J; Landry J; Huot J
Vascular endothelial growth factor (VEGF)-driven actin-based motility is mediated by VEGFR2 and requires concerted activation of stress-activated protein kinase 2 (SAPK2/p38) and geldanamycin-sensitive phosphorylation of focal adhesion kinase.
The Journal of biological chemistry 2000;275(14):10661-72.
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2000: Charette S J; Landry J
The interaction of HSP27 with Daxx identifies a potential regulatory role of HSP27 in Fas-induced apoptosis.
Annals of the New York Academy of Sciences 2000;926():126-31.
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1999: Dorion S; Bérubé J; Huot J; Landry J
A short lived protein involved in the heat shock sensing mechanism responsible for stress-activated protein kinase 2 (SAPK2/p38) activation.
The Journal of biological chemistry 1999;274(53):37591-7.
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1999: Thériault J R; Charette S J; Lambert H; Landry J
Cloning and characterization of hGMEB1, a novel glucocorticoid modulatory element binding protein.
FEBS letters 1999;452(3):170-6.
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1999: Giroux S; Tremblay M; Bernard D; Cardin-Girard J F; Aubry S; Larouche L; Rousseau S; Huot J; Landry J; Jeannotte L; Charron J
Embryonic death of Mek1-deficient mice reveals a role for this kinase in angiogenesis in the labyrinthine region of the placenta.
Current biology : CB 1999;9(7):369-72.
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1999: Lambert H; Charette S J; Bernier A F; Guimond A; Landry J
HSP27 multimerization mediated by phosphorylation-sensitive intermolecular interactions at the amino terminus.
The Journal of biological chemistry 1999;274(14):9378-85.
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1999: Landry J; Huot J
Regulation of actin dynamics by stress-activated protein kinase 2 (SAPK2)-dependent phosphorylation of heat-shock protein of 27 kDa (Hsp27).
Biochemical Society symposium 1999;64():79-89.
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1998: Huot J; Houle F; Rousseau S; Deschesnes R G; Shah G M; Landry J
SAPK2/p38-dependent F-actin reorganization regulates early membrane blebbing during stress-induced apoptosis.
The Journal of cell biology 1998;143(5):1361-73.
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1997: Rousseau S; Houle F; Landry J; Huot J
p38 MAP kinase activation by vascular endothelial growth factor mediates actin reorganization and cell migration in human endothelial cells.
Oncogene 1997;15(18):2169-77.
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1997: Huot J; Houle F; Marceau F; Landry J
Oxidative stress-induced actin reorganization mediated by the p38 mitogen-activated protein kinase/heat shock protein 27 pathway in vascular endothelial cells.
Circulation research 1997;80(3):383-92.
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1997: Guay J; Lambert H; Gingras-Breton G; Lavoie J N; Huot J; Landry J
Regulation of actin filament dynamics by p38 map kinase-mediated phosphorylation of heat shock protein 27.
Journal of cell science 1997;110 ( Pt 3)():357-68.
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1996: Huot J; Houle F; Spitz D R; Landry J
HSP27 phosphorylation-mediated resistance against actin fragmentation and cell death induced by oxidative stress.
Cancer research 1996;56(2):273-9.
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1995: Landry J; Huot J
Modulation of actin dynamics during stress and physiological stimulation by a signaling pathway involving p38 MAP kinase and heat-shock protein 27.
Biochemistry and cell biology = Biochimie et biologie cellulaire 1995;73(9-10):703-7.
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1995: Huot J; Lambert H; Lavoie J N; Guimond A; Houle F; Landry J
Characterization of 45-kDa/54-kDa HSP27 kinase, a stress-sensitive kinase which may activate the phosphorylation-dependent protective function of mammalian 27-kDa heat-shock protein HSP27.
European journal of biochemistry / FEBS 1995;227(1-2):416-27.
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1995: Lavoie J N; Lambert H; Hickey E; Weber L A; Landry J
Modulation of cellular thermoresistance and actin filament stability accompanies phosphorylation-induced changes in the oligomeric structure of heat shock protein 27.
Molecular and cellular biology 1995;15(1):505-16.
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1993: Lavoie J N; Hickey E; Weber L A; Landry J
Modulation of actin microfilament dynamics and fluid phase pinocytosis by phosphorylation of heat shock protein 27.
The Journal of biological chemistry 1993;268(32):24210-4.
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1993: Lavoie J N; Gingras-Breton G; Tanguay R M; Landry J
Induction of Chinese hamster HSP27 gene expression in mouse cells confers resistance to heat shock. HSP27 stabilization of the microfilament organization.
The Journal of biological chemistry 1993;268(5):3420-9.
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1993: Zhou M; Lambert H; Landry J
Transient activation of a distinct serine protein kinase is responsible for 27-kDa heat shock protein phosphorylation in mitogen-stimulated and heat-shocked cells.
The Journal of biological chemistry 1993;268(1):35-43.
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1992: Rollet E; Lavoie J N; Landry J; Tanguay R M
Expression of Drosophila's 27 kDa heat shock protein into rodent cells confers thermal resistance.
Biochemical and biophysical research communications 1992;185(1):116-20.
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1992: Têtu B; Lacasse B; Bouchard H L; Lagacé R; Huot J; Landry J
Prognostic influence of HSP-27 expression in malignant fibrous histiocytoma: a clinicopathological and immunohistochemical study.
Cancer research 1992;52(8):2325-8.
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1992: Landry J; Lambert H; Zhou M; Lavoie J N; Hickey E; Weber L A; Anderson C W
Human HSP27 is phosphorylated at serines 78 and 82 by heat shock and mitogen-activated kinases that recognize the same amino acid motif as S6 kinase II.
The Journal of biological chemistry 1992;267(2):794-803.
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1991: Huot J; Roy G; Lambert H; Chrétien P; Landry J
Increased survival after treatments with anticancer agents of Chinese hamster cells expressing the human Mr 27,000 heat shock protein.
Cancer research 1991;51(19):5245-52.
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1991: Landry J; Chrétien P; Laszlo A; Lambert H
Phosphorylation of HSP27 during development and decay of thermotolerance in Chinese hamster cells.
Journal of cellular physiology 1991;147(1):93-101.
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1990: Lavoie J; Chrétien P; Landry J
Sequence of the Chinese hamster small heat shock protein HSP27.
Nucleic acids research 1990;18(6):1637.
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1990: Crête P; Landry J
Induction of HSP27 phosphorylation and thermoresistance in Chinese hamster cells by arsenite, cycloheximide, A23187, and EGTA.
Radiation research 1990;121(3):320-7.
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1989: Landry J; Chrétien P; Lambert H; Hickey E; Weber L A
Heat shock resistance conferred by expression of the human HSP27 gene in rodent cells.
The Journal of cell biology 1989;109(1):7-15.
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1988: Chrétien P; Landry J
Enhanced constitutive expression of the 27-kDa heat shock proteins in heat-resistant variants from Chinese hamster cells.
Journal of cellular physiology 1988;137(1):157-66.
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1988: Landry J; Crête P; Lamarche S; Chrétien P
Activation of Ca2+-dependent processes during heat shock: role in cell thermoresistance.
Radiation research 1988;113(3):426-36.
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1986: Landry J; Samson S; Chrétien P
Hyperthermia-induced cell death, thermotolerance, and heat shock proteins in normal, respiration-deficient, and glycolysis-deficient Chinese hamster cells.
Cancer research 1986;46(1):324-7.
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1985: Lamarche S; Chrétien P; Landry J
Inhibition of the heat shock response and synthesis of glucose-regulated proteins in Ca2+-deprived rat hepatoma cells.
Biochemical and biophysical research communications 1985;131(2):868-76.
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1985: Landry J; Bernier D; Ouellet C; Goyette R; Marceau N
Spheroidal aggregate culture of rat liver cells: histotypic reorganization, biomatrix deposition, and maintenance of functional activities.
The Journal of cell biology 1985;101(3):914-23.
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1985: Landry J; Chrétien P; de Muys J M; Morais R
Induction of thermotolerance and heat shock protein synthesis in normal and respiration-deficient chick embryo fibroblasts.
Cancer research 1985;45(5):2240-7.
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1983: Landry J; Chrétien P
Relationship between hyperthermia-induced heat-shock proteins and thermotolerance in Morris hepatoma cells.
Canadian journal of biochemistry and cell biology = Revue canadienne de biochimie et biologie cellulaire 1983;61(6):428-37.
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1982: Landry J; Bernier D; Chrétien P; Nicole L M; Tanguay R M; Marceau N
Synthesis and degradation of heat shock proteins during development and decay of thermotolerance.
Cancer research 1982;42(6):2457-61.
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1982: Landry J; Chrétien P; Bernier D; Nicole L M; Marceau N; Tanguay R M
Thermotolerance and heat shock proteins induced by hyperthermia in rat liver cells.
International journal of radiation oncology, biology, physics 1982;8(1):59-62.
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