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微量元素硒调节细胞信号传导的研究进展 被引量:1

Progresses in Selenium-Modulating Cellular Signal Transduction
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摘要 概述了硒调节细胞信号传导的功能,认为其调节信号通路有:促分裂原激活蛋白激酶信号通路、蛋白激酶C信号通路、核糖体S6蛋白激酶信号通路、转录因子NF-κB和AP-1等。同时认为氧化还原修饰信号分子是硒调节信号传导的主要机制。硒通过作用于信号传导通路而调节细胞的分化、生长、增殖和凋亡,使硒具有生物多样性。 Functions of Selenium modulating cellular signal transduction have been interpreted systematically. The signal transduction pathways modulated by selenium are associated with the following signal molecules: mitogen activated protein kinase( MAPK), protein kinase C(PKC), ribosomal S6 protein kinase, nuclear factor NF-κB and AP-1. Selenium regulates the signals through their redox reactions. Selenium affects cellular differ-entiation, growth, proliferation and apoptosis by modulating signal transduction.
出处 《化学与生物工程》 CAS 2004年第4期10-12,共3页 Chemistry & Bioengineering
关键词 信号传导 氧化还原 selenium signal transduction redox reaction
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  • 1徐辉碧,杨祥良,刘琼,王海涛,甘璐.硒化合物诱导细胞凋亡的信号转导机制[J].化学进展,2002,14(4):305-310. 被引量:9
  • 2Ghose A, Fleming J, El-Bayoumy K, et al. Enhanced sensitivity of human oral carcinomas to induction of apoptosis by selenium compounds: involvement of mitogen-activated protein kinase and Fas pathways[J]. Cancer Res , 2001, 61:7479-7487.
  • 3Sinha R, Kiley S C, Lu J X, et al. Effects of methylselenocystein on PKC activity, Cdk2 phosphorylation and gadd gene expression in synchronized mouse mammary epithelial tutor cells[J].Cancer Letters, 1999,146: 135-145.
  • 4Gopalakrishna R, Gundimeda U, Chen Z H. Cancer-preventive seleocompounds induce a specific redox modification of cystein-rich regions in Ca(2+)-dependent isoenzymes of protein kinase C[J]. Arch Biochem Biophys ,1997, 348(1): 25-36.
  • 5Gopalakrishna R, Chen Z H, Gundimeda U. Selenocompounds induce a redox modulation of protein kianse C in the cell, compartmentally independent from cytosolic glutathione: its role in inhibition of tumor promotion[J]. Arch Biochem Biophys ,1997, 348(1): 37
  • 6Seko Y, Saito Y, Kitahara J, et al. Active oxygen generation by the reaction of selenite with reduced glutathione in vitro[C]. The Fourth International Symposium of Selenium in Biology and Medicine , Tubingen, Berlin, Germany, 1988, 4: 70-73.
  • 7Chen C, Chen B, Yang X L, et al. Study on the relationship of reactive oxygen species and biological dose-response curve of selenium[J]. Trace Elements and Electrolytes, 1997, 14(4): 197-201.
  • 8Gopalakrishna R , Jaken S. Protein kinase C signal and oxidative stress[J]. Free Radic Biol Med, 2002, 28(9):1349-1361.
  • 9Foilcs P G, Fujiki H, Sugaruma M, et al. Inhibition of PKC and PKA by chemopreventive organoselenium compounds[J].Int J Oncol, 1995,7: 685-690.
  • 10Kim I Y, Stadtman T C. Inhibition of NF-kappaB DNA binding and nitric oxide induction in human T cells and lung adenocarcinomacells by selenite treatment[J]. Proc Natl Acad Sci USA, 1997,94(24): 12904-12907.

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同被引文献26

  • 1高建忠,黄克和.动物硒蛋白研究进展[J].畜牧与兽医,2004,36(7):39-42. 被引量:33
  • 2[3]Margaret P R.The importance of selenium to human health(review).The Lancet,2000,356 (9225):233-241.
  • 3[4]Brigelius-Floh6 R.Tissue specific functions of individual glutathione peroxidases.Free Radical Biology Medicine,1999,27:951-965.
  • 4[6]Lei X G,Evenson J K,Thompson K M,Sunde R A.Glutathione peroxidases and phospholipids hydroperoxide glutathione peroxidases are differentially regulated in rats by ditary selenium.Journal of Nutrition,1995,125:1438-1446.
  • 5[7]Weiss S L,Sunde R A.Selenium regulation of glutathione peroxidases expression requires the 3'untranslated region in Chinese hamster ovary cells.Journal of Nutrition,1997,127:1304-1310.
  • 6[8]Sunde R A.Intracellular glutathione peroxidasesstructure,regulation and function.In:Burk R F,ed.Selenium in biology and human health.(5th ed).New York:Springer-Vertag,1994.45-77.
  • 7[9]Moriarty P M,Reddy C C,Maquat L E.Selenium deficiency reduces the abundance of mRNA for Se-dependent glutathione peroxidasesl by a UGA-dependent mechanism likely to be nonsense codon-mediated decay of cytoplasmicm RNA.Molecular and Cellular Biology,1998,18 (5):2932-2939.
  • 8[10]Kvicala J.Selenium and organism.Casopis Lekaru Ceskych,1999,138(4):99-106.
  • 9[11]Berry M J,Banu L,Chen Y Y,Mandel S J,Kieffer J D,Harney J W,Larsen P R.Recognition of UGA as a selenocysteine codon in typeI deiodinase requires sequences in the 3' untranslated region.Nature,1991,353:273-276.
  • 10[12]Berry M J,Banu L,Harney J W,Larsen P R.Functional characterization of the eukaryotic SECIS elements which direct selenocysteine insertion at UGA codons.The European Molecular Biology Organization Journal,1993,12 (8):3315-3322.

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