Essential Role of Pten in Body Size Determination and Pancreatic {beta}-Cell Homeostasis In Vivo

PTEN (phosphatase with tensin homology) is a potent negative regulator of phosphoinositide 3-kinase (PI3K)/Akt signaling, an evolutionarily conserved pathway that signals downstream of growth factors, including insulin and insulin-like growth factor 1. In lower organisms, this pathway participates i...

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Veröffentlicht in:Molecular and cellular biology 2006-06, Vol.26 (12), p.4511-4518
Hauptverfasser: Nguyen, Kinh-Tung T, Tajmir, Panteha, Lin, Chia Hung, Liadis, Nicole, Zhu, Xu-Dong, Eweida, Mohammed, Tolasa-Karaman, Gunce, Cai, Fang, Wang, Rennian, Kitamura, Tadahiro, Belsham, Denise D, Wheeler, Michael B, Suzuki, Akira, Mak, Tak W, Woo, Minna
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container_end_page 4518
container_issue 12
container_start_page 4511
container_title Molecular and cellular biology
container_volume 26
creator Nguyen, Kinh-Tung T
Tajmir, Panteha
Lin, Chia Hung
Liadis, Nicole
Zhu, Xu-Dong
Eweida, Mohammed
Tolasa-Karaman, Gunce
Cai, Fang
Wang, Rennian
Kitamura, Tadahiro
Belsham, Denise D
Wheeler, Michael B
Suzuki, Akira
Mak, Tak W
Woo, Minna
description PTEN (phosphatase with tensin homology) is a potent negative regulator of phosphoinositide 3-kinase (PI3K)/Akt signaling, an evolutionarily conserved pathway that signals downstream of growth factors, including insulin and insulin-like growth factor 1. In lower organisms, this pathway participates in fuel metabolism and body size regulation and insulin-like proteins are produced primarily by neuronal structures, whereas in mammals, the major source of insulin is the pancreatic {beta} cells. Recently, rodent insulin transcription was also shown in the brain, particularly the hypothalamus. The specific regulatory elements of the PI3K pathway in these insulin-expressing tissues that contribute to growth and metabolism in higher organisms are unknown. Here, we report PTEN as a critical determinant of body size and glucose metabolism when targeting is driven by the rat insulin promoter in mice. The partial deletion of PTEN in the hypothalamus resulted in significant whole-body growth restriction and increased insulin sensitivity. Efficient PTEN deletion in {beta} cells led to increased islet mass without compromise of {beta}-cell function. Parallel enhancement in PI3K signaling was found in PTEN-deficient hypothalamus and {beta} cells. Together, we have shown that PTEN in insulin-transcribing cells may play an integrative role in regulating growth and metabolism in vivo.
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title Essential Role of Pten in Body Size Determination and Pancreatic {beta}-Cell Homeostasis In Vivo
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