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Yvonne G. Weber, Alexander Storch, Thomas V. Wuttke, Knut Brockmann, Judith Kempfle, Snezana Maljevic, Lucia Margari, Christoph Kamm, Susanne A. Schneider, Stephan M. Huber, Arnulf Pekrun, Robert Roebling, Guiscard Seebohm, Saisudha Koka, Camelia Lang, Eduard Kraft, Dragica Blazevic, Alberto Salvo-Vargas, Michael Fauler, Felix M. Mottaghy, Alexander Münchau, Mark J. Edwards, Anna Presicci, Francesco Margari, Thomas Gasser, Florian Lang, Kailash P. Bhatia, Frank Lehmann-Horn, Holger Lerche
Published in Volume 118, Issue 6
J Clin Invest. 2008; 118(6):2157–2168 doi:10.1172/JCI34438
Abstract | Full text | PDF | Supplemental material
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Figure 6
Kinetics, protein stability, and trafficking of all 3 mutants compared with WT GLUT1 transporters.

(A) Kinetic analysis of glucose uptakes in oocytes (as shown in Figure 3A and Figure 5F) according to Lineweaver-Burk. Lines represent linear fits to the data points using the equation 1/V (1/[S]) = 1/Vmax + Km/Vmax × 1/[S], with [S] being the concentration of the substrate OMG and V being the uptake velocity in pmol/oocyte/min. The y-axis intercept equals 1/Vmax and the x-axis intercept represents –1/Km (see Supplemental Methods). Vmax was markedly reduced for all 3 mutations compared with the WT without obvious effects on Km. The following values were obtained: WT, Vmax = 213 ± 35 pmol/oocyte/min and Km = 13.7 ± 2.5 mM; Q282_S285del, Vmax = 37 ± 8 pmol/oocyte/min and Km = 13.0 ± 3.2 mM; G314S, Vmax = 49 ± 11 and Km = 15.5 ± 4.9 mM; A275T, Vmax = 35 ± 4 pmol/oocyte/min and Km = 13.0 ± 2.3 mM. (B) Western blots obtained from oocytes injected with equal amounts of cRNA showed a similar amount of protein for all mutations and the WT, but no respective band for oocytes injected with H2O as a negative control; α-tubulin was used as a loading control. (C) Immunocytochemical analysis of injected oocytes using an anti-GLUT1 antibody revealed similar stainings of the surface membranes for all 4 clones, suggesting a normal trafficking of the mutant proteins to the surface membrane. Scale bars: 100 μm.