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Glucocorticoid Signaling Enhances Expression of Glucose-Sensing Molecules in Immature Pancreatic Beta-Like Cells Derived from Murine Embryonic Stem Cells In Vitro.
Ghazalli, Nadiah; Wu, Xiaoxing; Walker, Stephanie; Trieu, Nancy; Hsin, Li-Yu; Choe, Justin; Chen, Chialin; Hsu, Jasper; LeBon, Jeanne; Kozlowski, Mark T; Rawson, Jeffrey; Tirrell, David A; Yip, M L Richard; Ku, Hsun Teresa.
Afiliação
  • Ghazalli N; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Wu X; 2 The Irell and Manella Graduate School of Biological Sciences, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Walker S; 3 Faculty of Medicine and Health Sciences, Genetics and Regenerative Medicine Research Center, Universiti Putra Malaysia , Serdang, Malaysia .
  • Trieu N; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Hsin LY; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Choe J; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Chen C; 4 High Throughput Screening Core, Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Hsu J; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • LeBon J; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Kozlowski MT; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Rawson J; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Tirrell DA; 5 Division of Chemistry and Chemical Engineering, California Institute of Technology , Pasadena, California.
  • Yip MLR; 1 Department of Translational Research and Cellular Therapeutics, and Diabetes and Metabolism Research Institute and Beckman Research Institute of City of Hope , Duarte, California.
  • Ku HT; 5 Division of Chemistry and Chemical Engineering, California Institute of Technology , Pasadena, California.
Stem Cells Dev ; 27(13): 898-909, 2018 07 01.
Article em En | MEDLINE | ID: mdl-29717618
ABSTRACT
Pluripotent stem cells may serve as an alternative source of beta-like cells for replacement therapy of type 1 diabetes; however, the beta-like cells generated in many differentiation protocols are immature. The maturation of endogenous beta cells involves an increase in insulin expression starting in late gestation and a gradual acquisition of the abilities to sense glucose and secrete insulin by week 2 after birth in mice; however, what molecules regulate these maturation processes are incompletely known. In this study, we aim to identify small molecules that affect immature beta cells. A cell-based assay, using pancreatic beta-like cells derived from murine embryonic stem (ES) cells harboring a transgene containing an insulin 1-promoter driven enhanced green fluorescent protein reporter, was used to screen a compound library (NIH Clinical Collection-003). Cortisone, a glucocorticoid, was among five positive hit compounds. Quantitative reverse transcription-polymerase chain reaction analysis revealed that glucocorticoids enhance the gene expression of not only insulin 1 but also glucose transporter-2 (Glut2; Slc2a2) and glucokinase (Gck), two molecules important for glucose sensing. Mifepristone, a pharmacological inhibitor of glucocorticoid receptor (GR) signaling, reduced the effects of glucocorticoids on Glut2 and Gck expression. The effects of glucocorticoids on ES-derived cells were further validated in immature primary islets. Isolated islets from 1-week-old mice had an increased Glut2 and Gck expression in response to a 4-day treatment of exogenous hydrocortisone in vitro. Gene deletion of GR in beta cells using rat insulin 2 promoter-driven Cre crossed with GRflox/flox mice resulted in a reduced gene expression of Glut2, but not Gck, and an abrogation of insulin secretion when islets were incubated in 0.5 mM d-glucose and stimulated by 17 mM d-glucose in vitro. These results demonstrate that glucocorticoids positively regulate glucose sensors in immature murine beta-like cells.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Pâncreas / Transdução de Sinais / Células Secretoras de Insulina / Células-Tronco Embrionárias / Glucocorticoides / Glucose Tipo de estudo: Guideline Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Pâncreas / Transdução de Sinais / Células Secretoras de Insulina / Células-Tronco Embrionárias / Glucocorticoides / Glucose Tipo de estudo: Guideline Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article