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  • Integrated In Vivo Quantitative Proteomics and Nutrient Tracing Reveals Age-Related Metabolic Rewiring of Pancreatic β Cell Function.

Integrated In Vivo Quantitative Proteomics and Nutrient Tracing Reveals Age-Related Metabolic Rewiring of Pancreatic β Cell Function.

Cell reports (2018-12-06)
Matthew Wortham, Jacqueline R Benthuysen, Martina Wallace, Jeffrey N Savas, Francesca Mulas, Ajit S Divakaruni, Fenfen Liu, Verena Albert, Brandon L Taylor, Yinghui Sui, Enrique Saez, Anne N Murphy, John R Yates, Christian M Metallo, Maike Sander
摘要

Pancreatic β cell physiology changes substantially throughout life, yet the mechanisms that drive these changes are poorly understood. Here, we performed comprehensive in vivo quantitative proteomic profiling of pancreatic islets from juvenile and 1-year-old mice. The analysis revealed striking differences in abundance of enzymes controlling glucose metabolism. We show that these changes in protein abundance are associated with higher activities of glucose metabolic enzymes involved in coupling factor generation as well as increased activity of the coupling factor-dependent amplifying pathway of insulin secretion. Nutrient tracing and targeted metabolomics demonstrated accelerated accumulation of glucose-derived metabolites and coupling factors in islets from 1-year-old mice, indicating that age-related changes in glucose metabolism contribute to improved glucose-stimulated insulin secretion with age. Together, our study provides an in-depth characterization of age-related changes in the islet proteome and establishes metabolic rewiring as an important mechanism for age-associated changes in β cell function.

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Roche
不含EDTA的cOmplete Mini蛋白酶抑制剂混合物, Protease Inhibitor Cocktail Tablets provided in a glass vial, Tablets provided in a glass vial
Sigma-Aldrich
还原型 β-烟酰胺腺嘌呤二核苷酸 二钠盐 水合物, ≥97% (HPLC)
Sigma-Aldrich
腺苷 5′-三磷酸 二钠盐 水合物, BioXtra, ≥99% (HPLC), from microbial
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L-苹果酸, ≥95% (titration)