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Identification of a novel RBCK1 splice site donor variant in Basset Hounds with glycogen storage disease myopathy.

Glycogen storage diseases (GSDs) are rare, typically inherited, disorders caused by various defects in glycogen metabolism enzymes, generally resulting in the accumulation of glycogen in several tissues. Recently, two young adult Basset Hound (BH) littermates were diagnosed with GSD via postmortem histopathology, with excess glycogen manifesting in both cardiac and smooth muscle. Using whole genome sequencing, a homozygous splice site donor variant was identified in exon 8 of RBCK1, a gene which encodes an E3 ubiquitin ligase, in both littermates, suggesting an autosomal recessive mode of inheritance. The presumptive loss of the splice site donor is predicted to result in premature termination in the mid-domain of the protein. Screening for the variant in related (n = 21) and unrelated (n = 124) BHs identified one additional affected littermate and nine familial heterozygous carriers. No variant alleles were present in the unrelated BH population, establishing the novelty of the identified mutation. RBCK1 variants have previously been associated with polyglucosan body myopathy type 1 (PGBM1), a type of GSD characterized by skeletal muscle myopathy, cardiomyopathy, and polyglucosan accumulation in humans. To date, no reported variants in RBCK1 have been identified in dogs or other large animals associated with GSD, making this the first naturally occurring large animal model of PGBM1 due to an RBCK1 defect.

Animals

Radiography of glycogen storage diseases.

Sixty-three patients with glycogen storage disease were evaluated. Findings on plain film examinations, excretory urography, barium gastrointestinal studies, ultrasonography, and angiography were categorized by type of glycogen storage disease. In type I findings include hepatomegaly with hepatic dysfunction, renomegaly with an increased incidence of renal calculi, and osteopenia with various associated osseous abnormalities. These changes were less pronounced in types III, IV, and VI. Type II displayed either cardiac or skeletal muscle glycogen deposition. Correlation with postmortem examination in 14 individuals is given.

Adolescent

Genome Editing for Glycogen Storage Diseases.

Gene therapy has been developed for several glycogen storage diseases and has advanced into clinical trials. However, the limitations of these gene therapies with regard to stability following treatment early in life have led to the development of genome editing. Early results for genome editing in both glycogen storage disease type Ia and Pompe disease have demonstrated promising efficacy, and proof-of-concept studies as well as a clinical trial are underway. These studies will determine whether genome editing fulfills its promise with regard to stably treating glycogen storage diseases early in life.

Humans

Glucose-containing oligosaccharides in the urine of patients with glycogen storage disease type II and type III.

Patients with glycogen storage disease type II and type III were recently found to excrete increased amounts of a glucose-containing tetrasaccharide DGlcp(alpha1 leads to 6)DGlcp(alpha1 leads to 4)DGlcp(alpha1 leads to 4)DGlc [Lennartson, G., Lundblad, A., Sjöblad, S., Svensson, S. and Ockerman, P.A. (1976) Biomed. Mass Spectrom. 3, 51--54]. In addition to this tetrasaccharide, urine from these patients also contains larger oligosaccharides containing only glucose. From urine of patients with glycogen storage disease type II and type III, three and four oligosaccharides respectively have been isolated. Structural studies including sugar analyses, methylation analyses, partial acid hydrolysis and optical rotation revealed that three compounds were present in the urine of both patients. Their proposed structures or partial structures are as follows: DGlcp(alpha1--6)DGlcp(alpha1--6)DGlcp(alpha1--4)DGlcp(alpha1--4)DGlcp(alpha1--4)DGlc, DGlcp(alpha1--4)DGlcp(alpha1--6)DGlcp(alpha1--6)DGlcp(alpha1--4)DGlcp(alpha1--4)DGlc, and DGlcp(alpha1--6)DGlcp(alpha1--4)DGlcp(alpha1--4)DGlcp(alpha1--4)DGlcp(alpha1--6)DGlcp(alpha1--4)DGlcp(alpha1--4)DGlc. A fourth compound has been partially characterized as a branched heptasaccharide with four (1 leads to 4) linkages and two (1 lead to 6) linkages. Glycogen is possibly the origin of these compounds. However, the number of (1 leads to 6) linkages is higher than expected and may indicate a shorter distance between branches in glycogen than has been generally assumed.

Child

Disordered intestinal function in glycogen storage disease.

The classical features of Type I glycogen storage disease (McKusick 23220) (GSD) are hepatomegaly, hypoglycaemia, and acidosis, enlargement of the kidneys and short stature. Glucose-6-phosphatase (EC 3.1.3.9) activity is defective not only in liver and kidney but also in small intestine (Field et al., 1965). In addition to the classical features, many patients suffer from episodes of diarrhoea (Fine et al., 1969). At the Hospital for Sick Children, Great Ormond Street, patients with the commoner forms of hepatic glycogen storage disease have episodes of diarrhoea or loose stools more commonly than was suspected. We have investigated small intestinal function in three patients with Type I GSD by both in vitro and in vivo techniques.

Diarrhea

Scintigraphic abnormalities in glycogen storage disease.

Fifteen patients with glycogen-storage disease type 1 (von Gierke's disease) were evaluated by serial scintigraphy, with a clearly recognizable pattern of an enlarged liver with diminished radionuclide accumulation, splenomegaly with considerably increased uptake and renomegaly. In seven of these patients with GSD-1 scintigraphy demonstrated focal defects of varying size. Small or stable defects suggest benign hepatic adenomata, whereas malignant change occurred in growing large lesions. The potential malignant end-point of hepatic-cell carcinoma in GSD-1 warrants careful serial liver scintigraphy with scintiangiography on a routine basis.

Adenoma

Hypercalcemia and co-occurring TBX1 mutation in Glycogen Storage Disease Type Ib: case report.

Glycogen Storage Disease Type Ib (GSD-Ib) is a rare autosomal recessive metabolic disorder caused by mutations in SLC37A4, leading to a deficiency in glucose-6-phosphate translocase. This disorder is characterized by impaired glycogenolysis and gluconeogenesis, resulting in clinical and metabolic manifestations. We report a three-month-old Moroccan female patient presenting with doll-like facies, hepatomegaly, dysmorphic features, and developmental delays. Laboratory analysis revealed hypoglycemia, elevated triglyceride levels, hypercalcemia, and neutropenia. Genetic testing confirmed a homozygous pathogenic variant in SLC37A4 and a heterozygous variant of uncertain significance in TBX1. Initial management included a lactose-free and galactose-free diet, multivitamin supplementation, and granulocyte colony-stimulating factor (G-CSF) therapy to address neutropenia. A novel aspect of this case involves hypercalcemia as an unusual finding in GSD-Ib and the co-occurrence of a variant in the TBX1 gene, which is not typically associated with the disease but may contribute to the patient's clinical presentation. These findings add a new dimension to our understanding of GSD-Ib and suggest potential avenues for future research to elucidate these genetic interactions and their impact on clinical outcomes.

Humans

Portacaval shunt for glycogen storage disease and hyperlipidaemia.

Complete portacaval shunt was used to treat 10 patients with glycogen storage disease. A favourable effect was noted on body growth and a number of metabolic abnormalities. More recently, continous night feedings with an intermittently placed gastric tube or through a gastrostomy has been shown to be helpful either before or after portacaval shunts. Such alimentation techniques may eliminate the need for shunts in some patients and be of adjuvant benefit in others. Portacaval shunt was also used for three children who had homozygous Type II hyperlipidaemia. Substantial reductions in serum cholesterol concentration were observed, as well as resorption of xanthomas. Reversal of some cardiovascular lesions has been documented. The benefits of portacaval shunt in these disorders is probably due to the change in the hormone climate of the liver and the whole organism brought about by diversion of the hormone-rich splanchnic venous blood around the liver.

Adolescent

RNA sequencing resolves a novel noncanonical splice-region variant in PHKA2 causing glycogen storage disease type IX α2: a case report.

BACKGROUND: Glycogen storage disease type IX α2 (GSD IX α2) is an X-linked hepatic glycogenosis caused by pathogenic variants in PHKA2. Noncanonical splice-region variants located outside the invariant GT/AG dinucleotides pose significant interpretive challenges, as in silico predictions alone are often insufficient for definitive classification. CASE DESCRIPTION: We report a 2.9-year-old boy presenting with short stature, hepatomegaly, markedly elevated aminotransferases, fasting hypoglycemia with ketonuria, hypercholesterolemia, coagulation parameter abnormalities (decreased fibrinogen and prolonged thrombin time), and histological evidence of early hepatic fibrosis as demonstrated by Masson's trichrome staining (portal fibrosis and perisinusoidal fibrosis). Whole-exome sequencing (WES) identified a hemizygous, previously unreported PHKA2 variant [NM_000292.3:c.2517+5G>T, genomic location (GRCh38): NC_000023.11: g.18907895G>T], initially classified as a variant of uncertain significance (VUS) under American College of Medical Genetics and Genomics (ACMG) criteria. RNA sequencing of peripheral blood leukocytes demonstrated predominant exon 22 skipping in 94.2% of informative junction reads, predicting a frameshift and premature termination codon [p.(Gly788Profs*74)] with predicted loss of the C-terminal CBL 2 subdomain. Incorporating this transcript-level evidence, the variant was reclassified as pathogenic (PVS1 + PM2_Supporting + PP4). Following dietary management with uncooked cornstarch supplementation, the patient showed progressive biochemical improvement over a 2.2-year follow-up. CONCLUSIONS: This case expands the mutational spectrum of PHKA2 and demonstrates that RNA sequencing of accessible tissues is a practical and diagnostically informative strategy for resolving noncanonical splice-region variants in pediatric hepatic GSD. Early hepatic fibrosis detected by histological examination before age 3 years underscores the importance of longitudinal hepatic surveillance in GSD IX α2.

Glycogen storage disease type IX α2 (GSD IX

End-to-side anastomosis of the mesenteric vein to the inferior vena cava in the treatment of glycogen storage disease: case report.

A 2-year-old boy with Type I glycogen storage disease received an end-to-side anastomosis of the mesenteric vein to the inferior vena cava with marked improvement in his biochemical factors and nutritional status and with shrinkage of the liver. The efficacy and simplicity of this technique and its lack of complications, as evidenced by follow-up studies over a 4 year period, suggest that its further use is warranted.

Ammonia

[Glycogen storage disease (Pompe's disease) presenting as myopathy in the adult (author's transl)].

In a 46-year-old woman with progressive atypical limb-girdle dystrophy for eight years the electromyogram revealed a myopathic pattern with signs of denervation activity. Enzymehistochemical and biochemical investigations of muscle and liver biopsies indicated type II glycogen storage disease (Pompe's disease). This type, with its prolonged course and the almost exclusive clinical involvement of proximal muscles mimics a "degenerative" neuromuscular disease, particularly muscle dystrophy, in the adult. Caused by acid maltase deficiency it is not a rare disease.

Age Factors

Uric acid metabolism in therapy of glycogen storage disease type I.

Factors which may explain lower serum uric in a new therapy of patients with glycogen storage disease (GSD) type I have been studied. [1-14C]Glycine incorporation into urine uric acid was 0.68% of the injected dose during a 6-day period of frequent high carbohydrate feedings, 0.40% with the same diet and nocturnal nasogastric feeding by Vivonex, and 0.18% in a control patient with GSD type III. Fractional renal uric acid excretion in the patient with GSD type I increased from 11.3% to 26.3% after beginning nocturnal nasogastric feeding of Vivonex. Red cell phosphoribosylpyrophosphate leve,ls were not changed by the therapy. Addition of Vivonex nocturnal feedings to frequent high carbohydrate feedings (1) decreased the accelerated de novo purine synthesis to a level still higher than control and (2) increased fractional renal uric acid excretion.

Child

Glucose-6-phosphatase activity in liver and blood platelets of two patients with glycogen storage disease type I.

Glucose-6-phosphatase (G-6-Pase) activity in liver and blood platelets of two patients with glycogen storage disease (GSD) type I is described. Both patients had a reduced activity of G-6-Pase in liver. The km value for glucose 6-phosphate (G-6-P) of residual activity in liver of both patients was similar to that of control liver. We could not demonstrate any reduced activity of platelet G-6-Pase in the patients. Platelet G-6-Pase with our assay method seems to represent a nonspecific phosphatase activity. Our observation suggests that it is necessary to examine platelet G-6-Pase of many other patients with GSD type I to confirm that G-6-Pase deficiency can be diagnosed by enzyme assay performed on blood platelets.

Alanine

Echocardiographic evidence of outflow tract obstruction in Pompe's disease (glycogen storage disease of the heart).

A 7 month old black female infant with the clinical findings of Pompe's disease is presented. The diagnosis of an infiltrative myocardiopathy with left ventricular outflow tract obstruction presenting with a pronounced systolic anterior motion of the anterior mitral valve leaflet was made by echocardiography. This diagnosis was confirmed by cardiac catheterization and angiocardiography. Pathologic findings were consistent with Pompe's disease (type II glycogen storage disease). The presence of systolic anterior motion of the mitral valve in this patient suggests that this finding is not pathognomonic of idiopathic hypertrophic subaortic stenosis.

Angiocardiography

Nocturnal intragastric therapy in type I glycogen storage disease: effect on hormonal and amino acid metabolism.

The acute hormonal and amino acid responses to differing food substrates were examined in type 1 glycogen storage disease. Ingestion of a glucose load or a glucose-plus-beef meal caused an acute fall in the initially elevated plasma glucagon, alanine, proline, and lactate. Ingestion of beef alone caused a sharp rise in these parameters. Long term nocturnal intragastric therapy of a high carbohydrate and moderate amino acid content resulted in a similar fall in these parameters as well as a fall in the elevated plasma glutamate, uric acid, triglycerides, and RBC-reduced glutathione. A remarkable clinical improvement and growth spurt accompanied the improvement in these biochemical values. The possible relation between the disturbed plasma hormonal and amino acid findings and growth failure and hyperuricemia is discussed.

Adolescent

The pathogenesis of hyperuricemia in glycogen storage disease, type I.

After the infusion of fructose, 0.25 g/kg body weight, blood uric acid levels were significantly increased above the mean basal value in five patients with glycogen storage disease (GSD), type I (P less than 0.02-P less than 0.05). The mean fasting blood inorganic phosphate (Pi) level in the patients was 3.9 +/- 0.3 mg/100 ml and was significantly lower than the mean Pi value of 4.8 +/- 0.3 mg/100 ml of the control subjects (P less than 0.05). Blood Pi levels were significantly lower in the patients than in the control subjects at varying times after the administration of fructose (P less than 0.005-P less than 0.05). Uric acid excretion did not increase significantly in the patients after fructose was given. In contrast to normal children, the mean peak blood uric level in the patients increased significantly after the administration of glucagon (P less than 0.001). In both patients (P less than 0.005) and control subjects (P less than 0.05), mean blood Pi concentrations decreased significantly after the administration of glucagon; however, the blood Pi concentrations in the patients were significantly lower than in the control subjects. Uric acid excretion increased after glucagon administration in both patients and control subjects, but the differences in uric acid excretion between the two groups were not significant. The data in our patients after fructose and glucagon administration suggest that hyperuricemia in GSD results from enhanced nucleotide catabolism. The concentrations of hepatic Pi and ATP may be low in patients with GSD; hepatic Pi and ATP content would therefore be further diminished by the administration of fructose and glucagon. By a mechanism similar to that of fructose-induced hyperuricemia, diminished hepatic Pi and ATP content might increase the breakdown of adenine nucleotides with resultant hyperuricemia.

Adolescent

[Clinically undiagnosed glycogen storage disease type I as cause of postoperative death (author's transl)].

A 30-year-old patient was admitted to hospital for cholecystectomy with a diagnosis of complete obstruction of the cystic duct. The preoperative clinical and chemical findings were normal. Following cholecystectomy the patient recovered normally from the anaesthetic. Three hours later sudden cardiac arrest occurred. Necropsy revealed glycogen storage disease type I. Hypoglycaemia and metabolic acidosis had probably led to hypokalaemia which is considered as the cause of cardiac failure.

Adult