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James Cantley, Colin Selman, Deepa Shukla, Andrey Y. Abramov, Frauke Forstreuter, Miguel A. Esteban, Marc Claret, Steven J. Lingard, Melanie Clements, Sarah K. Harten, Henry Asare-Anane, Rachel L. Batterham, Pedro L. Herrera, Shanta J. Persaud, Michael R. Duchen, Patrick H. Maxwell, Dominic J. Withers
Published in Volume 119, Issue 1
J Clin Invest. 2009; 119(1):125–135 doi:10.1172/JCI26934
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Figure 5
Glucose uptake and metabolism is impaired in β cells lacking Vhl, but mitochondrial function is preserved.

(A) Continuous monitoring of 2-NBDG uptake (18 nmol/l added at the time points indicated by vertical arrows) into control and βVhlKO β cells incubated in 2.5 mmol/l D-glucose. (B and C) Rate of uptake of 2-NBDG into β cells from control, βVhlKO, and PVhlKO mice. n = 8 groups of β cells from 3 animals of each genotype. *P < 0.05, **P < 0.01 compared with control. (DG) NADH and FAD++ autofluorescence was monitored by confocal microscopy for control (D and F), βVhlKO (E), and PVhlKO (G) β cells at the indicated glucose concentrations. Results are expressed as a percentage of basal values ± SEM for 8 groups of β cells from 3 animals of each genotype. (H and I) Ca2+ signals in response to indicated glucose concentrations and tolbutamide (200 μmol/l) in control, βVhlKO, and PVhlKO β cells. Recordings were made from 50 cells of each genotype from 2 animals of each genotype. (J and K) Ca2+ signals in response to methyl succinate (10 mmol/l) in control, βVhlKO, and PVhlKO β cells. Recordings were made from 50 cells of each genotype from 2 animals of each genotype.