β-arrestin-2 is an essential regulator of pancreatic β-cell function under physiological and pathophysiological conditions

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作者
Lu Zhu
Joana Almaça
Prasanna K. Dadi
Hao Hong
Wataru Sakamoto
Mario Rossi
Regina J. Lee
Nicholas C. Vierra
Huiyan Lu
Yinghong Cui
Sara M. McMillin
Nicole A. Perry
Vsevolod V. Gurevich
Amy Lee
Bryan Kuo
Richard D. Leapman
Franz M. Matschinsky
Nicolai M. Doliba
Nikhil M. Urs
Marc G. Caron
David A. Jacobson
Alejandro Caicedo
Jürgen Wess
机构
[1] Molecular Signaling Section,Division of Endocrinology, Department of Medicine
[2] Laboratory of Bioorganic Chemistry,Department of Molecular Physiology and Biophysics
[3] National Institute of Diabetes and Digestive and Kidney Diseases,Department of Pharmacology
[4] Diabetes and Metabolism,Department of Molecular Physiology and Biophysics
[5] University of Miami Miller School of Medicine,Department of Biochemistry and Biophysics
[6] Vanderbilt University,Department of Cell Biology
[7] Key Laboratory of Acupuncture and Medicine Research of Ministry of Education,undefined
[8] Nanjing University of Chinese Medicine,undefined
[9] Mouse Transgenic Core Facility,undefined
[10] National Institute of Diabetes and Digestive and Kidney Diseases,undefined
[11] Vanderbilt University,undefined
[12] University of Iowa,undefined
[13] Laboratory of Bioengineering and Physical Science,undefined
[14] National Institute of Biomedical Imaging and Bioengineering,undefined
[15] University of Pennsylvania School of Medicine,undefined
[16] Duke University Medical Center,undefined
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摘要
β-arrestins are critical signalling molecules that regulate many fundamental physiological functions including the maintenance of euglycemia and peripheral insulin sensitivity. Here we show that inactivation of the β-arrestin-2 gene, barr2, in β-cells of adult mice greatly impairs insulin release and glucose tolerance in mice fed with a calorie-rich diet. Both glucose and KCl-induced insulin secretion and calcium responses were profoundly reduced in β-arrestin-2 (barr2) deficient β-cells. In human β-cells, barr2 knockdown abolished glucose-induced insulin secretion. We also show that the presence of barr2 is essential for proper CAMKII function in β-cells. Importantly, overexpression of barr2 in β-cells greatly ameliorates the metabolic deficits displayed by mice consuming a high-fat diet. Thus, our data identify barr2 as an important regulator of β-cell function, which may serve as a new target to improve β-cell function.
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