Insulin signaling and FOXO regulate the overwintering diapause of the mosquito Culex pipiens
暂无分享,去创建一个
[1] Mark R. Brown,et al. An insulin-like peptide regulates egg maturation and metabolism in the mosquito Aedes aegypti , 2008, Proceedings of the National Academy of Sciences.
[2] S. Higgs,et al. Anopheles gambiae heat shock protein cognate 70B impedes o'nyong-nyong virus replication , 2007, BMC Genomics.
[3] D. Denlinger,et al. Up-regulation of heat shock proteins is essential for cold survival during insect diapause , 2007, Proceedings of the National Academy of Sciences.
[4] 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.
[5] C. Thummel,et al. Indicted: Worms Caught using Steroids , 2006, Cell.
[6] Michael R. Green,et al. Identification of direct DAF-16 targets controlling longevity, metabolism and diapause by chromatin immunoprecipitation , 2006, Nature Genetics.
[7] Mark R. Brown,et al. Signaling and function of insulin-like peptides in insects. , 2006, Annual review of entomology.
[8] R. Arking. Multiple Longevity Phenotypes and the Transition from Health to Senescence , 2005, Annals of the New York Academy of Sciences.
[9] 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.
[10] S. Higgs,et al. Modulation of Anopheles gambiae gene expression in response to o’nyong‐nyong virus infection , 2005, Insect molecular biology.
[11] M. Tatar,et al. Mutations in insulin signaling pathway alter juvenile hormone synthesis in Drosophila melanogaster. , 2005, General and comparative endocrinology.
[12] T. Unterman,et al. FoxO proteins in insulin action and metabolism , 2005, Trends in Endocrinology & Metabolism.
[13] D. Denlinger. 3.12 – Hormonal Control of Diapause , 2005 .
[14] Kostas Iatrou,et al. comprehensive molecular insect science , 2004 .
[15] J. Bos,et al. FOXO transcription factor activation by oxidative stress mediated by the small GTPase Ral and JNK , 2004, The EMBO journal.
[16] H. Nijhout,et al. The control of growth , 2003, Development.
[17] H. Nijhout. The control of body size in insects. , 2003, Developmental biology.
[18] E. Hafen,et al. The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling , 2003, Journal of biology.
[19] Cori Bargmann,et al. Genes that act downstream of DAF-16 to influence the lifespan of Caenorhabditis elegans , 2003, Nature.
[20] D. Denlinger,et al. Regulation of diapause. , 2003, Annual review of entomology.
[21] Mark R. Brown,et al. Insulin receptor expression during development and a reproductive cycle in the ovary of the mosquito Aedes aegypti , 2002, Cell and Tissue Research.
[22] Arnold De Loof,et al. Insulin-related peptides and their conserved signal transduction pathway , 2002, Peptides.
[23] 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.
[24] V. Rottiers,et al. A hormonal signaling pathway influencing C. elegans metabolism, reproductive development, and life span. , 2001, Developmental cell.
[25] M. Tatar,et al. A Mutant Drosophila Insulin Receptor Homolog That Extends Life-Span and Impairs Neuroendocrine Function , 2001, Science.
[26] M. Riehle,et al. Insulin stimulates ecdysteroid production through a conserved signaling cascade in the mosquito Aedes aegypti. , 1999, Insect biochemistry and molecular biology.
[27] M. H. Chen,et al. Juvenile hormone biosynthesis in diapausing and nondiapausing Culex pipiens (Diptera: Culicidae). , 1999, Journal of medical entomology.
[28] J. Thompson,et al. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. , 1994, Nucleic acids research.
[29] I. Fridovich,et al. Stable Mn(III) porphyrins mimic superoxide dismutase in vitro and substitute for it in vivo. , 1994, The Journal of biological chemistry.
[30] M. F. Bowen. Patterns of sugar feeding in diapausing and nondiapausing Culex pipiens (Diptera: Culicidae) females. , 1992, Journal of medical entomology.
[31] 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.
[32] E. Van Handel. Rapid determination of total lipids in mosquitoes. , 1985, Journal of the American Mosquito Control Association.
[33] R. Petralia,et al. Juvenile Hormone Induction of Biting Behavior in Culex Mosquitoes , 1980, Science.
[34] A. Spielman. Effect of synthetic juvenile hormone on ovarian diapause of Culex pipiens mosquitoes. , 1974, Journal of medical entomology.
[35] A. Spielman,et al. Environmental Control of Ovarian Diapause in Culex pipiens , 1973 .
[36] J. R. Larsen,et al. Effect of photoperiod and temperature on ovarian development in Culex pipiens pipiens. , 1973, Journal of insect physiology.