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Mammalian Genetic Models with Minimal or Complex Phenotypes

Heat Shock Transcription Factor 2 Is Not Essential for Embryonic Development, Fertility, or Adult Cognitive and Psychomotor Function in Mice

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Pages 8005-8014 | Received 25 Jun 2002, Accepted 20 Aug 2002, Published online: 28 Mar 2023

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Florent Le Masson, Zak Razak, Mo Kaigo, Christophe Audouard, Colette Charry, Howard Cooke, J. Timothy Westwood & Elisabeth S. Christians. (2011) Identification of Heat Shock Factor 1 Molecular and Cellular Targets during Embryonic and Adult Female Meiosis. Molecular and Cellular Biology 31:16, pages 3410-3423.
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Ashish Nagarsekar, Jeffrey D. Hasday & Ishwar S. Singh. (2005) CXC Chemokines: A New Family of Heat-Shock Proteins?. Immunological Investigations 34:3, pages 381-398.
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Articles from other publishers (59)

Yasuko Tokunaga, Ken-Ichiro Otsuyama, Shigeru Kakuta & Naoki Hayashida. (2022) Heat Shock Transcription Factor 2 Is Significantly Involved in Neurodegenerative Diseases, Inflammatory Bowel Disease, Cancer, Male Infertility, and Fetal Alcohol Spectrum Disorder: The Novel Mechanisms of Several Severe Diseases. International Journal of Molecular Sciences 23:22, pages 13763.
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Nishi Gupta, Saumya Sarkar, Poonam Mehta, Satya Narayan Sankhwar & Singh Rajender. (2022) Polymorphisms in the HSF2 , LRRC6 , MEIG1 and PTIP genes correlate with sperm motility in idiopathic infertility . Andrologia 54:9.
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Agathe Duchateau, Aurélie de Thonel, Rachid El Fatimy, Véronique Dubreuil & Valérie Mezger. (2020) The “HSF connection”: Pleiotropic regulation and activities of Heat Shock Factors shape pathophysiological brain development. Neuroscience Letters 725, pages 134895.
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Jenny Joutsen & Lea Sistonen. (2019) Tailoring of Proteostasis Networks with Heat Shock Factors. Cold Spring Harbor Perspectives in Biology 11:4, pages a034066.
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D. Haouzi, I. Boumela, K. Chebli & S. Hamamah. (2018) Global, Survival, and Apoptotic Transcriptome during Mouse and Human Early Embryonic Development. BioMed Research International 2018, pages 1-16.
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Hao Deng, Wen Zheng & Zhi Song. (2018) The genetics and molecular biology of fever-associated seizures or epilepsy. Expert Reviews in Molecular Medicine 20.
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Xiongjie Jin, Binnur Eroglu, Demetrius Moskophidis & Nahid F. Mivechi. 2018. Chaperones. Chaperones 1 22 .
Ryosuke Takii, Mitsuaki Fujimoto, Yuki Matsuura, Fangxu Wu, Namiko Oshibe, Eiichi Takaki, Arpit Katiyar, Hiroshi Akashi, Takashi Makino, Masakado Kawata & Akira Nakai. (2017) HSF1 and HSF3 cooperatively regulate the heat shock response in lizards. PLOS ONE 12:7, pages e0180776.
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Kaixiang Cao, Clayton K. Collings, Stacy A. Marshall, Marc A. Morgan, Emily J. Rendleman, Lu Wang, Christie C. Sze, Tianjiao Sun, Elizabeth T. Bartom & Ali Shilatifard. (2017) SET1A/COMPASS and shadow enhancers in the regulation of homeotic gene expression. Genes & Development 31:8, pages 787-801.
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Elisabeth S. Christians. 2017. The Role of Heat Shock Proteins in Reproductive System Development and Function. The Role of Heat Shock Proteins in Reproductive System Development and Function 1 27 .
Ashish Kumar & M.K. Thakur. (2016) Binding of transcription factors to Presenilin 1 and 2 promoter cis-acting elements varies during the development of mouse cerebral cortex. Neuroscience Letters 628, pages 98-104.
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Ahmed G. Nomir, Yuto Takeuchi, Junji Fujikawa, Ashraf A. El Sharaby, Satoshi Wakisaka & Makoto Abe. (2016) Fate mapping of Trps1 daughter cells during cardiac development using novel Trps1-Cre mice. genesis 54:7, pages 379-388.
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Dig B. Mahat, H. Hans Salamanca, Fabiana M. Duarte, Charles G. Danko & John T. Lis. (2016) Mammalian Heat Shock Response and Mechanisms Underlying Its Genome-wide Transcriptional Regulation. Molecular Cell 62:1, pages 63-78.
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Chengkai Dai & Stephen Byers Sampson. (2016) HSF1: Guardian of Proteostasis in Cancer. Trends in Cell Biology 26:1, pages 17-28.
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Koji Shiraishi. 2016. Heat Shock Factor. Heat Shock Factor 147 164 .
Ryosuke Takii & Mitsuaki Fujimoto. 2016. Heat Shock Factor. Heat Shock Factor 31 50 .
Naoki Hayashida. (2015) Set1/MLL complex is indispensable for the transcriptional ability of heat shock transcription factor 2. Biochemical and Biophysical Research Communications 467:4, pages 805-812.
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Viktoria Ortner, Alfred Ludwig, Elisabeth Riegel, Sarah Dunzinger & Thomas Czerny. (2014) An artificial HSE promoter for efficient and selective detection of heat shock pathway activity. Cell Stress and Chaperones 20:2, pages 277-288.
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Sudhish Sharma, Rachana Mishra, Brandon L. Walker, Savitha Deshmukh, Manuela Zampino, Jay Patel, Mani Anamalai, David Simpson, Ishwar S. Singh, Shalesh Kaushal & Sunjay Kaushal. (2014) Celastrol, an oral heat shock activator, ameliorates multiple animal disease models of cell death. Cell Stress and Chaperones 20:1, pages 185-201.
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Elizabeth E. Puscheck, Awoniyi O. Awonuga, Yu Yang, Zhongliang Jiang & Daniel A. Rappolee. 2015. Cell Signaling During Mammalian Early Embryo Development. Cell Signaling During Mammalian Early Embryo Development 77 128 .
Anson Pierce, Natalia Podlutskaya, Jonathan J. Halloran, Stacy A. Hussong, Pei-Yi Lin, Raquel Burbank, Matthew J. Hart & Veronica Galvan. (2013) Over-expression of heat shock factor 1 phenocopies the effect of chronic inhibition of TOR by rapamycin and is sufficient to ameliorate Alzheimer's-like deficits in mice modeling the disease. Journal of Neurochemistry 124:6, pages 880-893.
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Sylvain Lecomte, Léa Reverdy, Catherine Le Quément, Florent Le Masson, Axelle Amon, Pascale Le Goff, Denis Michel, Elisabeth Christians & Yves Le Dréan. (2013) Unraveling Complex Interplay between Heat Shock Factor 1 and 2 Splicing Isoforms. PLoS ONE 8:2, pages e56085.
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Lisha Mou, Yadong Wang, Honggang Li, Yi Huang, Tao Jiang, Weiren Huang, Zesong Li, Jing Chen, Jun Xie, Yuchen Liu, Zhimao Jiang, Xianxin Li, Jiongxian Ye, Zhiming Cai & Yaoting Gui. (2012) A dominant-negative mutation of HSF2 associated with idiopathic azoospermia. Human Genetics 132:2, pages 159-165.
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Chengkai Dai, Siyuan Dai & Junyue Cao. (2012) Proteotoxic stress of cancer: Implication of the heat-shock response in oncogenesis. Journal of Cellular Physiology 227:8, pages 2982-2987.
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Toyohide Shinkawa, Ke Tan, Mitsuaki Fujimoto, Naoki Hayashida, Kaoru Yamamoto, Eiichi Takaki, Ryosuke Takii, Ramachandran Prakasam, Sachiye Inouye, Valerie Mezger & Akira Nakai. (2011) Heat shock factor 2 is required for maintaining proteostasis against febrile-range thermal stress and polyglutamine aggregation. Molecular Biology of the Cell 22:19, pages 3571-3583.
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Florent Le Masson & Elisabeth Christians. (2010) HSFs and regulation of Hsp70.1 (Hspa1b) in oocytes and preimplantation embryos: new insights brought by transgenic and knockout mouse models. Cell Stress and Chaperones 16:3, pages 275-285.
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Xiongjie Jin, Binnur Eroglu, Demetrius Moskophidis & Nahid F. Mivechi. 2011. Molecular Chaperones. Molecular Chaperones 1 20 .
Andrew T. N. Tebbenkamp & David R. Borchelt. (2010) Analysis of Chaperone mRNA Expression in the Adult Mouse Brain by Meta Analysis of the Allen Brain Atlas. PLoS ONE 5:10, pages e13675.
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Ryma Abane & Valérie Mezger. (2010) Roles of heat shock factors in gametogenesis and development. FEBS Journal 277:20, pages 4150-4172.
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Johanna K. Björk & Lea Sistonen. (2010) Regulation of the members of the mammalian heat shock factor family. FEBS Journal 277:20, pages 4126-4139.
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Mitsuaki Fujimoto & Akira Nakai. (2010) The heat shock factor family and adaptation to proteotoxic stress. FEBS Journal 277:20, pages 4112-4125.
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S Lecomte, F Desmots, F Le Masson, P Le Goff, D Michel, E S Christians & Y Le Dréan. (2010) Roles of heat shock factor 1 and 2 in response to proteasome inhibition: consequence on p53 stability. Oncogene 29:29, pages 4216-4224.
Crossref
Christiane Richter-LandsbergKate Reed Herbert, Afshin Samali & Adrienne Gorman. 2009. Heat Shock Proteins in Neural Cells. Heat Shock Proteins in Neural Cells 25 37 .
A Hishiya & S Takayama. (2008) Molecular chaperones as regulators of cell death. Oncogene 27:50, pages 6489-6506.
Crossref
Andrew D. SteeleGregor Hutter, Walker S. JacksonFrank L. Heppner, Andrew W. BorkowskiOliver D. KingGregory J. Raymond, Adriano Aguzzi & Susan Lindquist. (2008) Heat shock factor 1 regulates lifespan as distinct from disease onset in prion disease. Proceedings of the National Academy of Sciences 105:36, pages 13626-13631.
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Donald C. Wilkerson, Lynea A. Murphy & Kevin D. Sarge. (2008) Interaction of HSF1 and HSF2 with the Hspa1b Promoter in Mouse Epididymal Spermatozoa1. Biology of Reproduction 79:2, pages 283-288.
Crossref
James P. Stice & Anne A. Knowlton. (2008) Estrogen, NFκB, and the Heat Shock Response. Molecular Medicine 14:7-8, pages 517-527.
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Päivi Östling, Johanna K. Björk, Pia Roos-Mattjus, Valérie Mezger & Lea Sistonen. (2007) Heat Shock Factor 2 (HSF2) Contributes to Inducible Expression of hsp Genes through Interplay with HSF1. Journal of Biological Chemistry 282:10, pages 7077-7086.
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Tyler G. Evans, Zachery Belak, Nick Ovsenek & Patrick H. Krone. (2007) Heat shock factor 1 is required for constitutive Hsp70 expression and normal lens development in embryonic zebrafish. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology 146:1, pages 131-140.
Crossref
András Orosz & Ivor J. Benjamin. 2007. Cell Stress Proteins. Cell Stress Proteins 91 121 .
Naxin Tu, Yanzhong Hu & Nahid F. Mivechi. (2006) Heat shock transcription factor (Hsf)-4b recruits Brg1 during the G1 phase of the cell cycle and regulates the expression of heat shock proteins. Journal of Cellular Biochemistry 98:6, pages 1528-1542.
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Hiroshi Kajiya, Masahiro Ito, Hayato Ohshima, Shin-ichi Kenmotsu, William L. Ries, Ivor J. Benjamin & Sakamuri V. Reddy. (2006) RANK ligand expression in heat shock factor-2 deficient mouse bone marrow stromal/preosteoblast cells. Journal of Cellular Biochemistry 97:6, pages 1362-1369.
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Yunhua Chang, Päivi Östling, Malin Åkerfelt, Diane Trouillet, Murielle Rallu, Yorick Gitton, Rachid El Fatimy, Vivienne Fardeau, Stéphane Le Crom, Michel Morange, Lea Sistonen & Valérie Mezger. (2006) Role of heat-shock factor 2 in cerebral cortex formation and as a regulatorof p35 expression. Genes & Development 20:7, pages 836-847.
Crossref
Mitsuaki FUJIMOTO. (2006) Functional Analysis of Heat Shock Transcription Factors by Generating Knockout Mice. Yamaguchi Medical Journal 55:1, pages 11-16.
Crossref
Ville Hietakangas & Lea Sistonen. 2006. Chaperones. Chaperones 1 34 .
M. Morange. 2006. Molecular Chaperones in Health and Disease. Molecular Chaperones in Health and Disease 153 169 .
E.S. Christians & I.J. Benjamin. 2006. Molecular Chaperones in Health and Disease. Molecular Chaperones in Health and Disease 139 152 .
Mitsuaki Fujimoto, Hanae Izu, Keisuke Seki, Ken Fukuda, Teruo Nishida, Shu-ichi Yamada, Kanefusa Kato, Shigenobu Yonemura, Sachiye Inouye & Akira Nakai. (2004) HSF4 is required for normal cell growth and differentiation during mouse lens development. The EMBO Journal 23:21, pages 4297-4306.
Crossref
T. Somasundaram & Suraj P. Bhat. (2004) Developmentally Dictated Expression of Heat Shock Factors: Exclusive Expression of HSF4 in the Postnatal Lens and Its Specific Interaction with αB-crystallin Heat Shock Promoter. Journal of Biological Chemistry 279:43, pages 44497-44503.
Crossref
Toshikatstu Shinka, Yoko Sato, Gang Chen, Takushi Naroda, Keigo Kinoshita, Yukiko Unemi, Keiko Tsuji, Kazunori Toida, Teruaki Iwamoto & Yutaka Nakahori. (2004) Molecular Characterization of Heat Shock-Like Factor Encoded on the Human Y Chromosome, and Implications for Male Infertility1. Biology of Reproduction 71:1, pages 297-306.
Crossref
D.Randy McMillan & Perrin C White. (2004) Loss of the transmembrane and cytoplasmic domains of the very large G-protein-coupled receptor-1 (VLGR1 or Mass1) causes audiogenic seizures in mice. Molecular and Cellular Neuroscience 26:2, pages 322-329.
Crossref
Pascale Le Goff, Yves Le Dréan, Christine Le Péron, Catherine Le Jossic-Corcos, Abdelkadder Ainouche & Denis Michel. (2004) Intracellular trafficking of heat shock factor 2. Experimental Cell Research 294:2, pages 480-493.
Crossref
Nathan D. Trinklein, John I. Murray, Sara J. Hartman, David Botstein & Richard M. Myers. (2004) The Role of Heat Shock Transcription Factor 1 in the Genome-wide Regulation of the Mammalian Heat Shock Response. Molecular Biology of the Cell 15:3, pages 1254-1261.
Crossref
Jennifer L. Roccisana, Noriaki Kawanabe, Hiroshi Kajiya, Masanori Koide, G. David Roodman & Sakamuri V. Reddy. (2004) Functional Role for Heat Shock Factors in the Transcriptional Regulation of Human RANK Ligand Gene Expression in Stromal/Osteoblast Cells. Journal of Biological Chemistry 279:11, pages 10500-10507.
Crossref
Guanghu Wang, Zhekang Ying, Xiongjie Jin, Naxin Tu, Yan Zhang, Michele Phillips, Demetrius Moskophidis & Nahid F. Mivechi. (2004) Essential requirement for bothhsf1 andhsf2 transcriptional activity in spermatogenesis and male fertility. genesis 38:2, pages 66-80.
Crossref
Nathan D. Trinklein, Will C. Chen, Robert E. Kingston & Richard M. Myers. (2004) Transcriptional regulation and binding of heat shock factor 1 and heat shock factor 2 to 32 human heat shock genes during thermal stress and differentiation. Cell Stress & Chaperones 9:1, pages 21.
Crossref
S.D Santos & M.J Saraiva. (2004) Enlarged ventricles, astrogliosis and neurodegeneration in heat shock factor 1 null mouse brain. Neuroscience 126:3, pages 657-663.
Crossref
Elisabeth S. Christians, Qi Zhou, JeanPaul Renard & Ivor J. Benjamin. (2003) Heat shock proteins in mammalian development. Seminars in Cell & Developmental Biology 14:5, pages 283-290.
Crossref
Hao Wu, Eric J. Lien, Linda L. Lien, Richard M. Schultz, Vishnu Ji Ram, Esteban Domingo, Paul Spence, Satya P. Gupta, Suraj P. Bhat & Elcira C. VillarrealSuraj P. Bhat. 2003. Progress in Drug Research. Progress in Drug Research 205 262 .

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