Structural-functional organization of cellular signal transduction systems
Krutetskaia, Z.I.; Lebedev, O.E.
Tsitologiia 42(9): 844-874
2000
ISSN/ISBN: 0041-3771 PMID: 11077675 Document Number: 523676
The review summarizes recent data and current opinions of the structural and functional organization of the known signalling systems and their functional elements. A possible role of adenylate cyclase, phosphoinositide, guanylate cyclase, tyrosine kinase systems and also of arachidonic acid, its oxygenated derivatives and of other fatty acids in intracellular signalling processes is discussed.
Document emailed within 1 workday
Related Documents
Nakamura, M.; Sugamura, K. 1992: Structural similarity and signal transduction of cytokine receptors Nihon Rinsho. Japanese Journal of Clinical Medicine 50(8): 1756-1762Sumioka, A.; Yamamoto, T.; Suzuki, T. 2006: Novel mechanisms in signal transduction and cellular response through neural adaptor proteins Seikagaku. Journal of Japanese Biochemical Society 78(10): 949-956
Lewartowski, B.; Mackiewicz, U. 2006: Cellular signal transduction pathways in cardiac hypertrophy and heart failure Kardiologia Polska 64(10 Suppl 6: S591-S600
Araki, N.; Saya, H. 1999: Cellular signal transduction via the neurofibromatosis type 2 tumor suppressor gene product; merlin Seikagaku. Journal of Japanese Biochemical Society 71(2): 128-134
Khorana, H.G. 1993: Signal transduction in two light-transducing systems: bacteriorhodopsin and mammalian rhodopsin Nucleic Acids Symposium Series 29: 219
Mattson, M.P. 1999: Impairment of membrane transport and signal transduction systems by amyloidogenic proteins Methods in Enzymology 309: 733-746
Nishikawa, M.; Komada, F.; Uemura, Y.; Hidaka, H.; Shirakawa, S. 1989: The signal transduction systems and intracellular Ca2+ dynamics in arachidonate-induced platelet activation Nihon Ketsueki Gakkai Zasshi: Journal of Japan Haematological Society 52(8): 1489-1497
Zheng, Y.; Du, S.; Xu, H.; Xu, Y.; Zhao, H.; Chi, T.; Lu, X.; Sang, X.; Mao, Y. 2014: Cellular adhesion signal transduction network of tumor necrosis factor-alpha induced hepatocellular carcinoma cells Zhonghua Yi Xue Za Zhi 94(42): 3345-3348
Yang, C.; Frenkel, K. 2002: Arsenic-mediated cellular signal transduction, transcription factor activation, and aberrant gene expression: implications in carcinogenesis Journal of Environmental Pathology Toxicology and Oncology: Official Organ of the International Society for Environmental Toxicology and Cancer 21(4): 331-342
Glazkov, M.V. 1988: Structural-functional organization of DNA in the interphase nucleus. Structural aspects Molekuliarnaia Biologiia 22(1): 16-30
Rasenick, M.M.; Chaney, K.A.; Chen, J. 1996: G protein-mediated signal transduction as a target of antidepressant and antibipolar drug action: evidence from model systems Journal of Clinical Psychiatry 57(Suppl): 49-55; Discussion 56-58
Razorenova, O.V.; Agapova, L.S.; Budanov, A.V.; Ivanov, A.V.; Strunina, S.M.; Chumakov, P.M. 2005: Retroviral reporter systems for the assessment of activity of stress-induced signal transduction pathways controlled by p53, HIF-1 and HSF-1 transcription factors Molekuliarnaia Biologiia 39(2): 286-293
Glazkov, M.V. 1988: Structural-functional organization of DNA in the interphase nucleus. Functional aspects Molekuliarnaia Biologiia 22(2): 303-322
Zeitz, M. 1991: Molecular mechanisms of signal transduction. Significance of signal transmission for immune regulation in the intestines with special reference to various differentiation stages of T-lymphocytes Zeitschrift für Gastroenterologie. Verhandlungsband 26: 310
Snigirevskaia, E.S.; Sokolova, I.I.; Komissarchik, I.I. 2006: Structural-functional organization of Golgi apparatus Tsitologiia 48(1): 57-81
Loh, J.E.; Chang, C.H.; Fodor, W.L.; Flavell, R.A. 1992: Dissection of the interferon gamma-MHC class II signal transduction pathway reveals that type I and type II interferon systems share common signalling component(s) EMBO Journal 11(4): 1351-1363
Silkova, O.G.; Loginova, D.B. 2014: Structural and functional organization of centromeres in plant chromosomes Genetika 50(12): 1405-1417
Iarovaia, O.V.; Razin, S.V. 1998: New approaches to studying the structural-functional organization of eukaryotic genome Molekuliarnaia Biologiia 32(1): 43-53
Akhrem, A.A.; Lapko, V.N.; Lapko, A.G.; Shkumatov, V.M.; Chashchin, V.L. 1979: Isolation, structural organization and mechanism of action of mitochondrial steroid hydroxylating systems Acta Biologica et Medica Germanica 38(2-3): 257-273
Sesorova, I.S.; Beznusenko, G.V.; Banin, V.V.; Dolgikh, V.V. 2006: Evolutionary approach to the understanding of structural and functional organization of Golgi apparatus Morfologiia 129(1): 91-94