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Samira Alliouachene, Robyn L. Tuttle, Stephanie Boumard, Thomas Lapointe, Sophie Berissi, Stephane Germain, Francis Jaubert, David Tosh, Morris J. Birnbaum, Mario Pende
Published in Volume 118, Issue 11
J Clin Invest. 2008; 118(11):3629–3638 doi:10.1172/JCI35237
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Figure 2
β cell growth control by MyrAkt1, nutrients, and the mTOR/S6K1 pathway.

(A) MyrAkt1-induced β cell growth is not decreased in the absence of S6K1 activity. Representative sections of pancreas coimmunostained with antibodies against Glut2 (green) and HA to visualize MyrAkt1-expressing cells (red). Data represent mean ± SEM for at least 3 mice per genotype. In MyrAkt1, MyrAkt1;S6K1–/–, and MyrAkt1;S6K1–/–;S6K2–/– mice, the HA-positive cells were measured; in wild-type S6K1–/– and S6K1–/–;S6K2–/– mice, the Glut2-positive cells were measured. At least 200 cells were analyzed per mouse. (B) β cell size of S6K1–/– mice is not reduced by rapamycin and starvation. Mice were either starved (starv) for 2 days or treated i.p. daily with 4.5 mg/kg of the rapamycin derivative CCI-779 for 5 days. Cell size was measured by Glut2 immunostaining. Data represent mean ± SEM for at least 3 mice per genotype. *P < 0.05, wild-type versus MyrAkt1 and MyrAkt1;S6K1–/– mice; P < 0.05 wild-type versus S6K1–/– and S6K1–/–;S6K2–/– mice; P < 0.05 MyrAkt1;S6K1–/–;S6K2–/– versus MyrAkt1 and MyrAkt1;S6K1–/–;S6K2–/– mice. Ctr, control.