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1.
Васянин С.И. Исследование действия ингибиторов транспорта сахаров флорицина, флоретина и цитохалазина В в модельных системах // Цитология, 1989. Т. 31, N 1.-С.57-65

2.
Nehlin Yeast galactose permease is related to yeast and mammalian glucose transporters // Gene, 1989. Vol. 85, N 2.-С.313-319

3.
Translocation of the glucose transporter (GLUT4) to the cell surface in permeabilized 3Т3-L1 adipocytes: Effects of ATP, insulin, and GTP'гамма'S and localization of GLUT4 to clathrin lattices // J. Cell Biol., 1992. Vol. 117, N 6.-С.1181-1196

4.
Widdas W.F. The work of conformational changes in the human erythrocyte glucose transporters // J. Physiol., 1993. Vol. 459.-С.170Р

5.
The Taenia solium glucose transporters TGTP1 and TGTP2 are not immunologically recognized by cysticercotic humans and swine // Parasitol. Res., 2002. Vol. 88, N 3.-С.280-282

6.
The insulin-dependent biosynthesis of GLUT1 and GLUT3 glucose transporters in L6 muscle cells is mediated by distinct pathways. Roles of p21{ras} and pp70 S6 kinase // J. Biol. Chem., 1995. Vol. 270, N 42.-С.24678-24681

7.
Fabres-Machado U. The effect of adipose cell size on the measurement of GLUT 4 in white adipose tissue of obese mice // Braz. J. Med. and Biol. Res., 1995. Vol. 28, N 3.-С.369-376

8.
Yu The 45 kDa form of glucose transporter 1 (GLUT1) is localized in oligodendrocyte and astrocyte but not in microglia in the rat brain // Brain Res., 1998. Vol. 797, N 1.-С.65-72

9.
Studies of relationships between the GLUT10 Ala206Thr polymorphism and impaired insulin secretion // Diabet. Med., 2005. Vol. 22, N 7.-С.946-949

10.
Stimulation of muscle cell glucose uptake by resveratrol through sirtuins and AMPK // Biochem. and Biophys. Res. Commun., 2008. Vol. 374, N 1.-С.117-122

11.
Skeletal muscle triglycerides lowering is associated with net improvement of insulin sensitivity, TNF-'альфа' reduction and GLUT4 expression enhancement // Int. J. Obesity, 2002. Vol. 26, N 9.-С.1165-1172

12.
Skeletal muscle triglycerides lowering is associated with net improvement of insulin sensitivity, TNF-'альфа' reduction and GLUT4 expression enhancement // Int. J. Obesity, 2002. Vol. 26, N 9.-С.1165-1172

13.
Regulation of glucose transport as well as glucose transporter and immediate early gene expression in 3Т3-L1 preadipocytes by 8-bromo-cAMP // J. Cell. Physiol., 1991. Vol. 146, N 2.-С.298-308

14.
Pentylenetetrazol-induced status epilepticus up-regulates the expression of glucose transporter mRNAs but not proteins in the immature rat brain // Brain Res., 2006. Vol. 1082, N 1.-С.32-42

15.
Pessler D. Oxidative stress impairs nuclear proteins binding to the insulin responsive element in the GLUT4 promoter // Diabetologia, 2001. Vol. 44, N 12.-С.2156-2164

16.
Tai Monoclonal antibody to the human glucose transporter that differentiates between the glucose and nucleoside transporters // Biochemistry., 1988. Vol. 27, N 16.-С.6062-6071

17.
Planas Josep V. Molecular identification of a glucose transporter from fish muscle // FEBS Lett., 2000. Vol. 481, N 3.-С.266-270

18.
Planas Josep V. Molecular identification of a glucose transporter from fish muscle // FEBS Lett., 2000. Vol. 481, N 3.-С.266-270

19.
Planas Josep V. Molecular identification of a glucose transporter from fish muscle // FEBS Lett., 2000. Vol. 481, N 3.-С.266-270

20.
Long term regulation of glucose transporters by insulin in mature 3Т3-F442A adipose cells. Differential effects on two glucose transporter subtypes // J. Biol. Chem, 1990. Vol. 265, N 14.-С.7982-7986

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