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Citations to this article

Impaired neutrophil activity and increased susceptibility to bacterial infection in mice lacking glucose-6-phosphatase–β
Yuk Yin Cheung, … , Brian C. Mansfield, Janice Y. Chou
Yuk Yin Cheung, … , Brian C. Mansfield, Janice Y. Chou
Published March 1, 2007
Citation Information: J Clin Invest. 2007;117(3):784-793. https://doi.org/10.1172/JCI30443.
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Research Article Immunology Article has an altmetric score of 6

Impaired neutrophil activity and increased susceptibility to bacterial infection in mice lacking glucose-6-phosphatase–β

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Abstract

Neutropenia and neutrophil dysfunction are common in many diseases, although their etiology is often unclear. Previous views held that there was a single ER enzyme, glucose-6-phosphatase–α (G6Pase-α), whose activity — limited to the liver, kidney, and intestine — was solely responsible for the final stages of gluconeogenesis and glycogenolysis, in which glucose-6-phosphate (G6P) is hydrolyzed to glucose for release to the blood. Recently, we characterized a second G6Pase activity, that of G6Pase-β (also known as G6PC), which is also capable of hydrolyzing G6P to glucose but is ubiquitously expressed and not implicated in interprandial blood glucose homeostasis. We now report that the absence of G6Pase-β led to neutropenia; defects in neutrophil respiratory burst, chemotaxis, and calcium flux; and increased susceptibility to bacterial infection. Consistent with this, G6Pase-β–deficient (G6pc3–/–) mice with experimental peritonitis exhibited increased expression of the glucose-regulated proteins upregulated during ER stress in their neutrophils and bone marrow, and the G6pc3–/– neutrophils exhibited an enhanced rate of apoptosis. Our results define a molecular pathway to neutropenia and neutrophil dysfunction of previously unknown etiology, providing a potential model for the treatment of these conditions.

Authors

Yuk Yin Cheung, So Youn Kim, Wai Han Yiu, Chi-Jiunn Pan, Hyun-Sik Jun, Robert A. Ruef, Eric J. Lee, Heiner Westphal, Brian C. Mansfield, Janice Y. Chou

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 Total
Citations: 5 4 4 1 5 3 2 1 1 1 5 3 3 9 5 8 3 2 65
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Citations to this article (65)

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Carbohydrate metabolism in supporting and regulating neutrophil effector functions
Lika J, Fan J
Current opinion in immunology 2024
Biochemical characterization of the human ubiquitous glucose‐6‐phosphatase in neutrophil granulocytes
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