Catalase and superoxide dismutase-2 enhance survival and protect ovaries during overwintering diapause in the mosquito Culex pipiens.
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[1] Claire Fraser-Liggett,et al. Sequencing of Culex quinquefasciatus Establishes a Platform for Mosquito Comparative Genomics , 2010, Science.
[2] C. Sim,et al. Transcription profiling and regulation of fat metabolism genes in diapausing adults of the mosquito Culex pipiens. , 2009, Physiological genomics.
[3] O. Puig,et al. Drosophila FoxO Regulates Organism Size and Stress Resistance through an Adenylate Cyclase , 2009, Molecular and Cellular Biology.
[4] C. Sim,et al. A shut‐down in expression of an insulin‐like peptide, ILP‐1, halts ovarian maturation during the overwintering diapause of the mosquito Culex pipiens , 2009, Insect molecular biology.
[5] A. Rudich,et al. Positive and negative regulation of insulin signaling by reactive oxygen and nitrogen species. , 2009, Physiological reviews.
[6] Masashi Tanaka,et al. Modulation of longevity and diapause by redox regulation mechanisms under the insulin-like signaling control in Caenorhabditis elegans , 2008, Experimental Gerontology.
[7] C. Sim,et al. Insulin signaling and FOXO regulate the overwintering diapause of the mosquito Culex pipiens , 2008, Proceedings of the National Academy of Sciences.
[8] D. Denlinger. Why study diapause? , 2008 .
[9] L. Partridge,et al. Role of insulin-like signalling in Drosophila lifespan. , 2007, Trends in biochemical sciences.
[10] Robert M Peitzsch,et al. High-resolution dynamics of the transcriptional response to nutrition in Drosophila: a key role for dFOXO. , 2007, Physiological genomics.
[11] D. Denlinger,et al. Diapause-specific gene expression in the northern house mosquito, Culex pipiens L., identified by suppressive subtractive hybridization. , 2007, Journal of insect physiology.
[12] Lisa M. Miller,et al. Reactive oxygen species detoxification by catalase is a major determinant of fecundity in the mosquito Anopheles gambiae , 2007, Proceedings of the National Academy of Sciences.
[13] D. Denlinger,et al. Upregulation of two actin genes and redistribution of actin during diapause and cold stress in the northern house mosquito, Culex pipiens. , 2006, Journal of insect physiology.
[14] M. Suster,et al. Natural variation in Drosophila melanogaster diapause due to the insulin-regulated PI3-kinase , 2006, Proceedings of the National Academy of Sciences.
[15] D. Denlinger,et al. Enhanced Cold and Desiccation Tolerance in Diapausing Adults of Culex pipiens, and a Role for Hsp70 in Response to Cold Shock but Not as a Component of the Diapause Program , 2006, Journal of medical entomology.
[16] Michael R. Green,et al. Identification of direct DAF-16 targets controlling longevity, metabolism and diapause by chromatin immunoprecipitation , 2006, Nature Genetics.
[17] D. Denlinger,et al. Diapause in the mosquito Culex pipiens evokes a metabolic switch from blood feeding to sugar gluttony. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[18] M. Tatar,et al. Drosophila dFOXO controls lifespan and regulates insulin signalling in brain and fat body , 2004, Nature.
[19] Cori Bargmann,et al. Genes that act downstream of DAF-16 to influence the lifespan of Caenorhabditis elegans , 2003, Nature.
[20] J. McElwee,et al. Transcriptional outputs of the Caenorhabditis elegans forkhead protein DAF‐16 , 2003, Aging cell.
[21] Geert J. P. L. Kops,et al. Forkhead transcription factor FOXO3a protects quiescent cells from oxidative stress , 2002, Nature.
[22] Raymond Y. N. Lee,et al. Regulation of C. elegans DAF-16 and its human ortholog FKHRL1 by the daf-2 insulin-like signaling pathway , 2001, Current Biology.
[23] L. T. Jensen,et al. A fraction of yeast Cu,Zn-superoxide dismutase and its metallochaperone, CCS, localize to the intermembrane space of mitochondria. A physiological role for SOD1 in guarding against mitochondrial oxidative damage. , 2001, The Journal of biological chemistry.
[24] G. Williams,et al. Malaria-induced apoptosis in mosquito ovaries: a mechanism to control vector egg production. , 2001, The Journal of experimental biology.
[25] M. Tatar,et al. A Mutant Drosophila Insulin Receptor Homolog That Extends Life-Span and Impairs Neuroendocrine Function , 2001, Science.
[26] M. Bownes,et al. Control of oocyte maturation in sexually mature Drosophila females. , 1999, Developmental biology.
[27] K. Hartfelder,et al. Juvenile hormone effect on DNA synthesis and apoptosis in caste-specific differentiation of the larval honey bee (Apis mellifera L.) ovary. , 1998, Journal of insect physiology.
[28] H. Ishikawa,et al. Involvement of juvenile hormone and ubiquitin-dependent proteolysis in flight muscle breakdown of alate aphid (Acyrthosiphon pisum) , 1994 .
[29] J. Crapo,et al. Copper,zinc superoxide dismutase is primarily a cytosolic protein in human cells. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[30] M. Golomb,et al. Gene expression in the Caenorhabditis elegans dauer larva: developmental regulation of Hsp90 and other genes. , 1992, Developmental biology.
[31] C. J. Mitchell,et al. Fate of the blood meal in force-fed, diapausing Culex pipiens (Diptera: Culicidae). , 1989, Journal of medical entomology.
[32] C. J. Mitchell,et al. Inability of diapausing Culex pipiens (Diptera: Culicidae) to use blood for producing lipid reserves for overwinter survival. , 1989, Journal of medical entomology.
[33] A. P. Wilson. Cytotoxicity and viability assays , 1986 .
[34] A. Clements,et al. Ovarian development in mosquitoes: stages of growth and arrest, and follicular resorption , 1984 .
[35] C. J. Mitchell. Differentiation of host-seeking behavior from blood-feeding behavior in overwintering Culex pipiens (Diptera: Culicidae) and observations on gonotrophic dissociation. , 1983, Journal of medical entomology.
[36] R. Petralia,et al. Juvenile Hormone Induction of Biting Behavior in Culex Mosquitoes , 1980, Science.
[37] W. J. Bell,et al. OOSORPTION IN INSECTS , 1975, Biological reviews of the Cambridge Philosophical Society.
[38] A. Spielman. Effect of synthetic juvenile hormone on ovarian diapause of Culex pipiens mosquitoes. , 1974, Journal of medical entomology.
[39] J. R. Larsen,et al. Effect of photoperiod and temperature on ovarian development in Culex pipiens pipiens. , 1973, Journal of insect physiology.
[40] A. Spielman. Studies on autogeny in natural populations of Culex pipiens. II. Seasonal abundance of autogenous and anautogenous populations. , 1971, Journal of medical entomology.
[41] A. Spielman. STUDIES ON AUTOGENY IN CULEX PIPIENS POPULATIONS IN NATURE. I. REPRODUCTIVE ISOLATION BETWEEN AUTOGENOUS AND ANAUTOGENOUS POPULATIONS. , 1964, American journal of hygiene.
[42] A. R. Barr,et al. The distribution of Culex p. pipiens and C.P. quinquefasciatus in North America. , 1957, The American journal of tropical medicine and hygiene.