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IL-7 Promotes Glut1 Trafficking and Glucose Uptake Via STAT5-mediated Activation of Akt to Support T-cell Survival

Overview
Journal Blood
Publisher Elsevier
Specialty Hematology
Date 2007 Nov 29
PMID 18042802
Citations 225
Authors
Affiliations
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Abstract

Lymphocyte homeostasis requires coordination of metabolic processes with cellular energetic and biosynthetic demands but mechanisms that regulate T-cell metabolism are uncertain. We show that interleukin-7 (IL-7) is a key regulator of glucose uptake in T lymphocytes. To determine how IL-7 affects glucose uptake, we analyzed IL-7 signaling mechanisms and regulation of the glucose transporter, Glut1. The IL-7 receptor (IL-7R) stimulated glucose uptake and cell-surface localization of Glut1 in a manner that required IL-7R Y449, which promoted rapid signal transducer and activator of transcription 5 (STAT5) activation and a delayed yet sustained activation of Akt. Each pathway was necessary for IL-7 to promote glucose uptake, as Akt1(-/-) T cells or PI3-kinase inhibition and RNAi of STAT5 led to defective glucose uptake in response to IL-7. STAT5 and Akt acted in a linear pathway, with STAT5-mediated transcription leading to Akt activation, which was necessary for STAT5 and IL-7 to promote glucose uptake and prevent cell death. Importantly, IL-7 required glucose uptake to promote cell survival. These data demonstrate that IL-7 promotes glucose uptake via a novel signaling mechanism in which STAT5 transcriptional activity promotes Akt activation to regulate Glut1 trafficking and glucose uptake that is critical for IL-7 to prevent T-cell death and maintain homeostasis.

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References
1.
Lockyer H, Tran E, Nelson B . STAT5 is essential for Akt/p70S6 kinase activity during IL-2-induced lymphocyte proliferation. J Immunol. 2007; 179(8):5301-8. DOI: 10.4049/jimmunol.179.8.5301. View

2.
Edinger A, Thompson C . Akt maintains cell size and survival by increasing mTOR-dependent nutrient uptake. Mol Biol Cell. 2002; 13(7):2276-88. PMC: 117312. DOI: 10.1091/mbc.01-12-0584. View

3.
Harir N, Pecquet C, Kerenyi M, Sonneck K, Kovacic B, Nyga R . Constitutive activation of Stat5 promotes its cytoplasmic localization and association with PI3-kinase in myeloid leukemias. Blood. 2006; 109(4):1678-86. DOI: 10.1182/blood-2006-01-029918. View

4.
Rathmell J, Fox C, Plas D, Hammerman P, Cinalli R, Thompson C . Akt-directed glucose metabolism can prevent Bax conformation change and promote growth factor-independent survival. Mol Cell Biol. 2003; 23(20):7315-28. PMC: 230333. DOI: 10.1128/MCB.23.20.7315-7328.2003. View

5.
Khaled A, Li W, Huang J, Fry T, Khaled A, Mackall C . Bax deficiency partially corrects interleukin-7 receptor alpha deficiency. Immunity. 2002; 17(5):561-73. DOI: 10.1016/s1074-7613(02)00450-8. View