Диссертация (1145769), страница 20
Текст из файла (страница 20)
В 3-х томах, Т.3. -М: Мир, 1985. -320 с.6.Маниатис Т, Фрич Э и Сэмбрук Дж. Методы генетической инженерии.Молекулярное клонирование. –М: Мир, 1984. -480 c.7.Неттер Ф. Атлас анатомии человека: Уч. пос. -М: ГЭОТАР-МЕД, 2003. -600с.8.Платонова НА, Гюлиханданова НЕ, Жигулева ЭА, Живулько ТВ, ВоронинаОВ, Евсюкова ИИ, Цымбаленко НВ и Пучкова ЛВ.
Роль церулоплазминамолока как физиологического источника пищевой меди в раннем онтогенеземлекопитающих // Рос физиол журн им ИМ Сеченова. 2005. 91: 666-677.9.Платонова НА, Жигулева ЭА, Цымбаленко НВ, Мищенко БС, Васин АВ,Живулько ТВ и Пучкова ЛВ. Возрастные особенности биосинтеза ираспределения церулоплазмина в организме крыс // Онтогенез. 2004.
35(3):171-182.10. Пучкова ЛВ, Алейникова ТД, Вербина ИА, Захарова ЕТ, Плисс МГ иГайцхоки ВС. Биосинтез двух молекулярных форм церулоплазмина в печени125крысы и их полярная секреция в кровоток и в желчь // Биохимия. 1993.58(12): 1893-1900.11. Пучкова ЛВ, Алейникова ТД, Цымбаленко НВ, Захарова ЕТ, КонопитцеваЛА, Чеботарь НА и Гайцхоки ВС.
Биосинтез и секреция церулоплазминаклетками молочной железы в период лактации // Биохимия. 1994. 59(2): 341348.12. Пучкова ЛВ, Захарова ЕТ, Алейникова ТД, Мокшина СВ, Цымбаленко НВ,Сасина ЛК, Ширманова МР, Рогачева НП и Гайцхоки ВС. Сравнительныйанализмолекулярноймикрогетерогенностицерулоплазминакровиигрудного молока человека // Биохимия. 1997. 62(8): 1082-1085.13. Розен ВБ. Основы эндокринологии. -М: Изд-во МГУ, 1994.
-384 с.14. Airede AI. Zinc levels in the Nigerian full-time newborn from birth to six months// East Afr Med J. 1997. 74(4): 221-223.15. Aldridge GM, Podrebarac DM, Greenough WT and Weiler IJ. The use of totalprotein stains as loading controls: an alternative to high-abundance single-proteincontrols in semi-quantitative immunoblotting // J Neurosci Methods. 2008.
172(2):250-254.16. Allen KJ, Buck NE, Cheah DM, Gazeas S, Bhathal P and Mercer JF.Chronological changes in tissue copper, zinc and iron in the toxic milk mouse andeffects of copper loading // Biometals. 2006. 19(5): 555-564.17. Antonini E, Brunori M, Greenwood C and Malmstrom BG. Catalytic mechanismof cytochrome oxidase // Nature. 1970. 228(5275): 936-937.18. Arguello JM, Eren E and Gonzalez-Guerrero M.
The structure and function ofheavy metal transport P1B-ATPases // Biometals. 2007. 20(3-4): 233-248.19. Armario A, Hidalgo J, Bas J, Restrepo C, Dingman A and Garvey JS. Agedependent effects of acute and chronic intermittent stresses on serummetallothionein // Physiol Behav. 1987. 39(2): 277-279.20. Arnold J. Ein beitrag zu der feineren structur und demchemismus der nebennieren// Virchows Arch Pathol Anat Physiol.
1866. 39: 64-117 (цит по Vinson GP.126Glomerulosa function and aldosterone synthesis in the rat // Mol Cell Endocrinol.2004. 217(1-2): 59-65).21. Babich PS, Skvortsov AN, Rusconi P, Tsymbalenko NV, Mutanen M, PuchkovaLV and Broggini M. Non-hepatic tumors change the activity of genes encodingcopper trafficking proteins in the liver // Cancer Biol Ther. 2013. 14(7): 614-624.22.
Baldwin AS. Control of oncogenesis and cancer therapy resistance by thetranscription factor NF-kappaB // J Clin Invest. 2001. 107(3): 241-246.23. Balsa E, Marco R, Perales-Clemente E, Szklarczyk R, Calvo E, Landazuri MO andEnriquez JA. NDUFA4 is a subunit of complex IV of the mammalian electrontransport chain // Cell Metab. 2012. 16(3): 378-386.24. Bartuzi P, Hofker MH and van de Sluis B. Tuning NF-κB activity: a touch ofCOMMD proteins // Biochim Biophys Acta. 2013. 1832(12): 2315-2321.25.
Bauerly KA, Kelleher SL and Lonnerdal B. Effects of copper supplementation oncopper absorption, tissue distribution, and copper transporter expression in aninfant rat model // Am J Physiol Gastrointest Liver Physiol. 2005. 288(5): G10071014.26. Beato M. Gene regulation by steroid hormones // Cell. 1989. 56(3): 335-344.27. Bertinato J, Swist E, Plouffe LJ, Brooks SP and L'Abbe M R.
Ctr2 is partiallylocalized to the plasma membrane and stimulates copper uptake in COS-7 cells //Biochem J. 2008. 409(3): 731-740.28. Biasio W, Chang T, McIntosh CJ and McDonald FJ. Identification of Murr1 as aregulator of the human delta epithelial sodium channel // J Biol Chem. 2004.279(7): 5429-5434.29. Bingle CD, Epstein O, Srai SK and Gitlin JD. Hepatic caeruloplasmin-geneexpression during development in the guinea-pig. Correlation with changes inhepatic copper metabolism // Biochem J. 1991. 276 ( Pt 3): 771-775.30.
Bizon A and Milnerowicz H. Participation of metallothionein and superoxidedismutase in the blood of smoking smelters // Int J Occup Med Environ Health.2014. 27(2): 326-334.12731. Bleackley MR and Macgillivray RT. Transition metal homeostasis: from yeast tohuman disease // Biometals. 2011. 24(5): 785-809.32. Bradford MM. A rapid and sensitive method for the quantitation of microgramquantities of protein utilizing the principle of protein-dye binding // Anal Biochem.1976. 72: 248-254.33. Brand MD.
The sites and topology of mitochondrial superoxide production // ExpGerontol. 2010. 45(7-8): 466–472.34. Bremner I and Davies NT. The induction of metallothionein in rat liver by zincinjection and restriction of food intake // Biochem J. 1975. 149(3): 733-738.35. Bruckmann G and Zondek SG. Iron, copper and manganese in human organs atvarious ages // Biochem J. 1939. 33(11): 1845-1857.36. Burstein E, Ganesh L, Dick RD, van De Sluis B, Wilkinson JC, Klomp LW,Wijmenga C, Brewer GJ, Nabel GJ and Duckett CS. A novel role for XIAP incopper homeostasis through regulation of MURR1 // EMBO J.
2004. 23(1): 244254.37. Calabrese L, Carbonaro M and Musci G. Presence of coupled trinuclear coppercluster in mammalian ceruloplasmin is essential for efficient electron transfer tooxygen // J Biol Chem. 1989. 264(11): 6183-6187.38. Carroll J, Fearnley IM, Skehel JM, Shannon RJ, Hirst J and Walker JE. Bovinecomplex I is a complex of 45 different subunits // J Biol Chem.
2006. 281(43):32724-32727.39. Carroll MC, Girouard JB, Ulloa JL, Subramaniam JR, Wong PC, Valentine JS andCulotta VC. Mechanisms for activating Cu- and Zn-containing superoxidedismutase in the absence of the CCS Cu chaperone // Proc Natl Acad Sci U S A.2004. 101(16): 5964-5969.40. Cerveza PJ, Mehrbod F, Cotton SJ, Lomeli N, Linder MC, Fonda EG and WicklerSJ. Milk ceruloplasmin and its expression by mammary gland and liver in pigs //Arch Biochem Biophys. 2000. 373(2): 451-461.41.
Chen H, Attieh ZK, Su T, Syed BA, Gao H, Alaeddine RM, Fox TC, Usta J,Naylor CE, Evans RW, McKie AT, Anderson GJ and Vulpe CD. Hephaestin is a128ferroxidase that maintains partial activity in sex-linked anemia mice // Blood.2004. 103(10): 3933-3939.42. Cherian MG and Kang YJ. Metallothionein and liver cell regeneration // Exp BiolMed (Maywood).
2006. 231(2): 138-144.43. Chilov D, Hofer T, Bauer C, Wenger RH and Gassmann M. Hypoxia affectsexpression of circadian genes PER1 and CLOCK in mouse brain // FASEB J.2001. 15(14): 2613-2622.44. Chu YL, Sauble EN, Cabrera A, Roth A, Ackland ML, Mercer JF and Linder MC.Lack of ceruloplasmin expression alters aspects of copper transport to the fetus andnewborn, as determined in mice // Biometals. 2012. 25(2): 373-382.45.
Cobine PA, Pierrel F, Winge DR. Copper trafficking to the mitochondrion andassembly of copper metalloenzymes // Biochim Biophys Acta. 2006. 1763(7):759–772.46. Cousins RJ. Absorption, transport, and hepatic metabolism of copper and zinc:special reference to metallothionein and ceruloplasmin // Physiol Rev. 1985. 65(2):238-309.47. Crapo JD, Oury T, Rabouille C, Slot JW and Chang LY. Copper,zinc superoxidedismutase is primarily a cytosolic protein in human cells // Proc Natl Acad Sci U SA. 1992. 89(21): 10405-10409.48.
Crowe A and Morgan EH. The effects of iron loading and iron deficiency on thetissue uptake of 64Cu during development in the rat // Biochim Biophys Acta.1996. 1291(1): 53-59.49. Culotta VC, Klomp LW, Strain J, Casareno RL, Krems B and Gitlin JD. Thecopper chaperone for superoxide dismutase // J Biol Chem. 1997. 272(38): 2346923472.50. Culotta VC, Yang M and O'Halloran TV.
Activation of superoxide dismutases:putting the metal to the pedal // Biochim Biophys Acta. 2006. 1763(7): 747-758.51. Cursiefen C, Chen L, Borges LP, Jackson D, Cao J, Radziejewski C, D'Amore PA,Dana MR, Wiegand SJ and Streilein JW. VEGF-A stimulates lymphangiogenesis129and hemangiogenesis in inflammatory neovascularization via macrophagerecruitment // J Clin Invest. 2004.
113(7): 1040-1050.52. Dancis A, Yuan DS, Haile D, Askwith C, Eide D, Moehle C, Kaplan J andKlausner RD. Molecular characterization of a copper transport protein in S.cerevisiae: an unexpected role for copper in iron transport // Cell. 1994. 76(2): 393402.53. Das SK and Ray K. Wilson's disease: an update // Nat Clin Pract Neurol. 2006.2(9): 482-493.54. de Bie P, van de Sluis B, Klomp L and Wijmenga C.
The many faces of the coppermetabolism protein MURR1/COMMD1 // J Hered. 2005. 96(7): 803-811.55. De Domenico I, Ward DM, di Patti MC, Jeong SY, David S, Musci G and KaplanJ. Ferroxidase activity is required for the stability of cell surface ferroportin in cellsexpressing GPI-ceruloplasmin // EMBO J. 2007. 26(12): 2823-2831.56. De Feo CJ, Aller SG, Siluvai GS, Blackburn NJ and Unger VM. Threedimensional structure of the human copper transporter hCTR1 // Proc Natl AcadSci U S A. 2009.