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Background: Adequate glucose supply is essential for brain function, therefore hypoglycemic states may lead to seizures. Since blood glucose supply for brain is buffered by liver glycogen, an impairment of liver glycogen synthesis by mutations in the liver glycogen synthase gene (GYS2) might result in a substantial neurological involvement. Here, we describe the phenotypes of affected siblings of two families harboring biallelic mutations in GYS2.
Methods: Two suspected families - a multiplex Pakistani family (family A) with three affected siblings and a family of Moroccan origin (family B) with a single affected child who presented with seizures and reduced fasting blood glucose levels were genetically characterized. Whole exome sequencing (WES) was performed on the index patients, followed by Sanger sequencing-based segregation analyses on all available members of both families.
Results: The variant prioritization of WES and later Sanger sequencing confirmed three mutations in the GYS2 gene (12p12.1) consistent with an autosomal recessive pattern of inheritance. A homozygous splice acceptor site variant (NM_021957.3, c. 1646 -2A>G) segregated in family A. Two novel compound heterozygous variants (NM_021957.3: c.343G>A; p.Val115Met and NM_021957.3: c.875A>T; p.Glu292Val) were detected in family B, suggesting glycogen storage disorder. A special diet designed to avoid hypoglycemia, in addition to change of the anti-seizure medication led to reduction in seizure frequency.
Conclusions: This study suggests that the seizures in patients initially diagnosed with epilepsy might be directly caused, or influenced by hypoglycemia due to pathogenic variants in the GYS2 gene.
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http://dx.doi.org/10.1016/j.seizure.2023.07.020 | DOI Listing |
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Department of Cardiovascular Medicine, Jiangxi Provincial People's Hospital/The First Affiliated Hospital of Nanchang Medical College, Nanchang, 330006, China.
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Engineering Research Center of Polyploidy fish Reproduction and Breeding of the State Education Ministry, College of Life Science, Hunan Normal University, Changsha, 410081, People's Republic of China.
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Jiangxi Province Key Laboratory of Traditional Chinese Medicine Etiopathogenisis & Research Center for Differentiation and Development of Traditional Chinese Medicine Basic Theory, Jiangxi University of Chinese Medicine Nanchang 330004, China.
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School of Kinesiology, Faculty of Health Sciences, Western University, ON, CANADA.
Introduction: Limited research has examined the impact of training intensity on substrate utilization during acute exercise. Despite sex differences in the metabolic response to exercise few studies have examined females Purpose: This study compared the utilization of substrate during acute exercise following 8-weeks of low-intensity (LoT) and high-intensity (HiT) aerobic training (AT) in female rats. It was hypothesized that both training programs would result in increased fat oxidation during acute exercise, with HiT demonstrating a higher shift toward fat oxidation.
View Article and Find Full Text PDFJ Biochem Mol Toxicol
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Radiation Biology Department, National Centre for Radiation Research and Technology (NCRRT), Egyptian Atomic Energy Authority, Cairo, Egypt.
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