Resumen
The addition of phosphate groups into glycogen modulates its branching pattern and solubility which all impact its accessibility to glycogen interacting enzymes. As glycogen architecture modulates its metabolism, it is essential to accurately evaluate and quantify its phosphate content. Simultaneous direct quantitation of glucose and its phosphate esters requires an assay with high sensitivity and a robust dynamic range. Herein, we describe a highly-sensitive method for the accurate detection of both glycogen-derived glucose and glucose-phosphate esters utilizing gas-chromatography coupled mass spectrometry. Using this method, we observed higher glycogen levels in the liver compared to skeletal muscle, but skeletal muscle contained many more phosphate esters. Importantly, this method can detect femtomole levels of glucose and glucose phosphate esters within an extremely robust dynamic range with excellent accuracy and reproducibility. The method can also be easily adapted for the quantification of plant starch, amylopectin or other biopolymers.
| Idioma original | English |
|---|---|
| Número de artículo | 115651 |
| Publicación | Carbohydrate Polymers |
| Volumen | 230 |
| DOI | |
| Estado | Published - feb 15 2020 |
Nota bibliográfica
Publisher Copyright:© 2019 Elsevier Ltd
Financiación
This study was supported by National Institute of Neurological Disorders and Stroke (R01 N070899-06, P01 NS097197-01), National Science Foundation (MCB-1817414), the University of Kentucky Center for Cancer and Metabolism, National Institute of General Medical Sciences COBRE program (P20 GM121327), American Cancer Society institutional research grant#16-182-28, and St. Baldrick's Foundation, St Baldrick's Scholar (Career Development Award) – 634297, funding from the University of Kentucky Markey Cancer Center, and the University of Kentucky Epilepsy & Brain Metabolism Alliance. This research was also supported by funding from the University of Kentucky Markey Cancer Center, NIH National Center for Advancing Translational SciencesUL1TR001998, the Biostatistics and Bioinformatics Shared Resource Facility of the University of Kentucky Markey Cancer CenterP30CA177558. This study was supported by National Institute of Neurological Disorders and Stroke ( R01 N070899-06 , P01 NS097197-01 ), National Science Foundation ( MCB-1817414 ), the University of Kentucky Center for Cancer and Metabolism , National Institute of General Medical Sciences COBRE program ( P20 GM121327 ), American Cancer Society institutional research grant #16-182-28 , and St. Baldrick’s Foundation, St Baldrick’s Scholar (Career Development Award) – 634297, funding from the University of Kentucky Markey Cancer Center , and the University of Kentucky Epilepsy & Brain Metabolism Alliance . This research was also supported by funding from the University of Kentucky Markey Cancer Center, NIH National Center for Advancing Translational Sciences UL1TR001998 , the Biostatistics and Bioinformatics Shared Resource Facility of the University of Kentucky Markey Cancer Center P30CA177558 .
| Financiadores | Número del financiador |
|---|---|
| NIH National Center for Advancing Translational SciencesUL1TR001998 | |
| NIH-funded University of Kentucky Center for Cancer and Metabolism | |
| University of Kentucky Epilepsy & Brain Metabolism Alliance | |
| National Science Foundation Arctic Social Science Program | MCB-1817414 |
| American Cancer Society-Michigan Cancer Research Fund | 16-182-28 |
| National Childhood Cancer Registry – National Cancer Institute | P30CA177558 |
| National Institute of General Medical Sciences DP2GM119177 Sophie Dumont National Institute of General Medical Sciences | P20 GM121327 |
| Institute of Neurological Disorders and Stroke National Advisory Neurological Disorders and Stroke Council | R01 N070899-06, P01 NS097197-01 |
| St. Baldrick's Foundation | 634297 |
| National Center for Advancing Translational Sciences (NCATS) | UL1TR001998 |
| University of Kentucky Markey Comprehensive Cancer Center |
ASJC Scopus subject areas
- Organic Chemistry
- Polymers and Plastics
- Materials Chemistry
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