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1.
Roduit A 'бета'-cell transplantation method to study the regulated expression of GLUT2 in diabetic animals // Diabetes, 1994. Vol. 43, Suppl. N1.-С.268

2.
Blocking VLDL secretion causes hepatic steatosis but does not affect peripheral lipid stores or insulin sensitivity in mice // J. Lipid Res., 2008. Vol. 49, N 9.-С.2038-2044

3.
Blocking VLDL secretion causes hepatic steatosis but does not affect peripheral lipid stores or insulin sensitivity in mice // J. Lipid Res., 2008. Vol. 49, N 9.-С.2038-2044

4.
Cloning and functional expression of the human islet GLP-1 receptor: Demonstration that exendin-4 is an agonist and exendin-(9-39) an antagonist of the receptor // Diabetes, 1993. Vol. 42, N 11.-С.1678-1682

5.
Gremlich Dexamethasone induces posttranslational degradation of GLUT2 and inhibition of insulin secretion in isolated pancreatic 'бета' cells. Comparison with the effects of fatty acids // J. Biol. Chem., 1997. Vol. 272, N 6.-С.3216-3222

6.
Thorens Differential localization of two glucose transporter isoforms in rat kidney // Amer. J. Physiol., 1990. Vol. 259, N 6.-С.286-С294

7.
Thorens Differential localization of two glucose transporter isoforms in rat kidney // Amer. J. Physiol., 1990. Vol. 259, N 2.-С.С286-С294

8.
Exendin-(9-39) is an inverse agonist of the murine glucagon-like peptide-1 receptor: Implications for basal intracellular cyclic adenosine 3',5'-monophosphate levels and 'бета'-cell glucose competence // Endocrinology, 1998. Vol. 139, N 11.-С.4448-4454

9.
Exendin-4 protects 'бета'-cells from interleukin-1'бета'-induced apoptosis by interfering with the c-Jun NH[2]-terminal kinase pathway // Diabetes, 2008. Vol. 57, N 5.-С.1205-1215

10.
Expression and functional activity of glucagon, glucagon-like peptide I, and glucose-dependent insulinotropic peptide receptors in rat pancreatic islet cells // Diabetes, 1996. Vol. 45, N 2.-С.257-261

11.
Expression and functional activity of glucagon, glucagon-like peptide I, and glucose-dependent insulinotropic peptide receptors in rat pancreatic islet cells // Diabetes, 1996. Vol. 45, N 2.-С.257-261

12.
Expression of the NH[2]-terminal fragment of RasGAP in pancreatic 'бета'-cells increases their resistance to stresses and protects mice from diabetes // Diabetes, 2009. Vol. 58, N 11.-С.2596-2606

13.
Thorens Facilitated glucose transporters in epithelial cells // Annu. Rev. Physiol. Vol. 55. -Palo Alto (Calif.), 1993.-С.591-608

14.
Thorens Glucagon-like peptide-1 and the control of insulin secretion in the normal state and in NIDDM // Diabetes, 1993. Vol. 42, N 9.-С.1219-1225

15.
Glucagon-like peptide-1 increases 'бета'-cell glucose competence and proliferation by translational induction of insulin-like growth factor-1 receptor expression // J. Biol. Chem., 2010. Vol. 285, N 14.-С.10538-10545

16.
Glucagon-like peptide-1 protects 'бета'-cells against apoptosis by increasing the activity of an Igf-2/Igf-1 receptor autocrine loop // Diabetes, 2009. Vol. 58, N 8.-С.1816-1825

17.
Hosokawa Glucose release from GLUT2-null hepatocytes: Characterization of major and a minor pathway // Amer. J. Physiol., 2002. Vol. 282, N 4.-С.E794-E801

18.
Ibberson GLUTX1, a novel mammalian glucose transporter expressed in the central nervous system and insulin-sensitive tissues // J. Biol. Chem., 2000. Vol. 275, N 7.-С.4607-4612

19.
Heterogeneous metabolic adaptation of C57BL/6J mice to high-fat diet // Amer. J. Physiol., 2002. Vol. 282, N 4.-С.E834-E842

20.
Heterogeneous metabolic adaptation of C57BL/6J mice to high-fat diet // Amer. J. Physiol., 2002. Vol. 282, N 4.-С.E834-E842

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