N‐acetyl‐l‐tyrosine is an intrinsic triggering factor of mitohormesis in stressed animals
暂无分享,去创建一个
[1] J. Teodoro,et al. Mitohormesis , 2021, Mitochondrial Physiology and Vegetal Molecules.
[2] P. Schultz,et al. A metabolite-derived protein modification integrates glycolysis with KEAP1-NRF2 signaling , 2018, Nature.
[3] H. Matsumoto,et al. Identification of a cytokine combination that protects insects from stress. , 2018, Insect biochemistry and molecular biology.
[4] Y. Urano,et al. N-Acetyl Cysteine Functions as a Fast-Acting Antioxidant by Triggering Intracellular H2S and Sulfane Sulfur Production. , 2018, Cell chemical biology.
[5] Ming Chen,et al. Gene-expression signature regulated by the KEAP1-NRF2-CUL3 axis is associated with a poor prognosis in head and neck squamous cell cancer , 2018, BMC Cancer.
[6] J. Putney,et al. Cytokine signaling through Drosophila Mthl10 ties lifespan to environmental stress , 2017, Proceedings of the National Academy of Sciences.
[7] H. Matsumoto,et al. Heat stress hardening of oriental armyworms is induced by a transient elevation of reactive oxygen species during sublethal stress. , 2017, Archives of insect biochemistry and physiology.
[8] Francisco J. Sánchez-Rivera,et al. Keap1 loss promotes Kras-driven lung cancer and results in a dependence on glutaminolysis , 2017, Nature Medicine.
[9] Ashutosh Kumar Singh,et al. The see-saw of Keap1-Nrf2 pathway in cancer. , 2017, Critical reviews in oncology/hematology.
[10] Masayuki Yamamoto,et al. The KEAP1–NRF2 System in Cancer , 2017, Front. Oncol..
[11] In-geun Ryoo,et al. Involvement of NRF2 Signaling in Doxorubicin Resistance of Cancer Stem Cell-Enriched Colonospheres , 2016, Biomolecules & therapeutics.
[12] B. Tang,et al. Novel super-resolution capable mitochondrial probe, MitoRed AIE, enables assessment of real-time molecular mitochondrial dynamics , 2016, Scientific Reports.
[13] H. You,et al. FoxO3 inactivation promotes human cholangiocarcinoma tumorigenesis and chemoresistance through Keap1‐Nrf2 signaling , 2016, Hepatology.
[14] A. Dinkova-Kostova,et al. The emerging role of Nrf2 in mitochondrial function , 2015, Free radical biology & medicine.
[15] H. Matsumoto,et al. Switching between humoral and cellular immune responses in Drosophila is guided by the cytokine GBP , 2014, Nature Communications.
[16] D. Denlinger,et al. Surviving in a frozen desert: environmental stress physiology of terrestrial Antarctic arthropods , 2014, Journal of Experimental Biology.
[17] H. Matsumoto,et al. Drosophila growth-blocking peptide-like factor mediates acute immune reactions during infectious and non-infectious stress , 2012, Scientific Reports.
[18] M. Ristow,et al. How increased oxidative stress promotes longevity and metabolic health: The concept of mitochondrial hormesis (mitohormesis) , 2010, Experimental Gerontology.
[19] Jaehyoung Cho,et al. Extension of Drosophila Life Span by RNAi of the Mitochondrial Respiratory Chain , 2009, Current Biology.
[20] É. Le Bourg. Hormesis, aging and longevity. , 2009, Biochimica et biophysica acta.
[21] Linda Partridge,et al. Minireview Stress-response Hormesis and Aging: ''that Which Does Not Kill Us Makes Us Stronger'' Figure 1. Dose-response Curve of a Treatment with a Hormetic Effect Minireview Cell Metabolism , 2022 .
[22] M. Mattson. Hormesis defined , 2008, Ageing Research Reviews.
[23] Suresh I. S. Rattan,et al. Hormesis in aging , 2008, Ageing Research Reviews.
[24] D. Hayes,et al. Nutritional hormesis , 2007, European Journal of Clinical Nutrition.
[25] M. Strand,et al. Evolution of developmental strategies in parasitic hymenoptera. , 2006, Annual review of entomology.
[26] G. Ruvkun,et al. A systematic RNAi screen for longevity genes in C. elegans. , 2005, Genes & development.
[27] P. Pelicci,et al. The Life Span Determinant p66Shc Localizes to Mitochondria Where It Associates with Mitochondrial Heat Shock Protein 70 and Regulates Trans-membrane Potential* , 2004, Journal of Biological Chemistry.
[28] Edward J Calabrese,et al. Hormesis: the dose-response revolution. , 2003, Annual review of pharmacology and toxicology.
[29] Andrew G Fraser,et al. Rates of Behavior and Aging Specified by Mitochondrial Function During Development , 2002, Science.
[30] Jun Fujita,et al. Invited review: Effects of heat and cold stress on mammalian gene expression. , 2002, Journal of applied physiology.
[31] Pier Paolo Pandolfi,et al. The p66shc adaptor protein controls oxidative stress response and life span in mammals , 1999, Nature.
[32] U. Meyer,et al. Cloning of an arylalkylamine N-acetyltransferase (aaNAT1) from Drosophila melanogaster expressed in the nervous system and the gut. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[33] Y. Hayakawa. Growth-blocking peptide: an insect biogenic peptide that prevents the onset of metamorphosis , 1995 .
[34] Y. Hayakawa. Structure of a growth-blocking peptide present in parasitized insect hemolymph. , 1991, The Journal of biological chemistry.
[35] K. Lenz,et al. Utilization of tyrosine dipeptides and acetyltyrosine in normal and uremic humans. , 1991, The American journal of physiology.
[36] Y. Hayakawa. Juvenile hormone esterase activity repressive factor in the plasma of parasitized insect larvae. , 1990, The Journal of biological chemistry.
[37] J. Wahren,et al. N-acetyl-L-tyrosine and N-acetyl-L-cysteine as tyrosine and cysteine precursors during intravenous infusion in humans. , 1989, Metabolism: clinical and experimental.
[38] T. Wyss,et al. Lymphokine gene expression related to CD4 T cell subset (CD45R/CDw29) phenotype conversion , 1989, European journal of immunology.
[39] N. Kennaway,et al. Metabolic Studies in a Patient with Hepatic Cytosol Tyrosine Aminotransferase Deficiency , 1971, Pediatric Research.
[40] J. C. Roberts,et al. Temperature acclimation in birds and mammals. , 1971, Annual review of physiology.
[41] R. F. Coward,et al. Urinary excretion of 4-hydroxyphenyllactic acids and related compounds in man, including a screening test for tyrosyluria , 1968 .
[42] D. Francis,et al. Diagnosis and treatment of tyrosinosis. , 1968, Archives of disease in childhood.
[43] J. Dubovský,et al. The excretion of N-acetyltyrosine in tyrosyluria. , 1965, Clinica chimica acta; international journal of clinical chemistry.
[44] D. Harman. Aging: a theory based on free radical and radiation chemistry. , 1956, Journal of gerontology.