Surprises of genetic engineering
- 26 June 2001
- journal article
- Published by Wolters Kluwer Health in Neurology
- Vol. 56 (12), 1739-1745
- https://doi.org/10.1212/wnl.56.12.1739
Abstract
Background: The authors previously reported the generation of a knockout mouse model of Pompe disease caused by the inherited deficiency of lysosomal acid alpha-glucosidase (GAA). The disorder in the knockout mice (GAA−/−) resembles the human disease closely, except that the clinical symptoms develop late relative to the lifespan of the animals. In an attempt to accelerate the course of the disease in the knockouts, the authors increased the level of cytoplasmic glycogen by overexpressing glycogen synthase (GSase) or GlutI glucose transporter. Methods: GAA−/− mice were crossed to transgenic mice overexpressing GSase or GlutI in skeletal muscle. Results: Both transgenics on a GAA knockout background (GS/GAA−/− and GlutI/GAA−/−) developed a severe muscle wasting disorder with an early age at onset. This finding, however, is not the major focus of the study. Unexpectedly, the mice bearing the GSase transgene, but not those bearing the GlutI transgene, accumulated structurally abnormal polysaccharide (polyglucosan) similar to that observed in patients with Lafora disease, glycogenosis type IV, and glycogenosis type VII. Ultrastructurally, the periodic acid-Schiff (PAS)-positive polysaccharide inclusions were composed of short, amorphous, irregular branching filaments indistinguishable from classic polyglucosan bodies. The authors show here that increased level of GSase in the presence of normal glycogen branching enzyme (GBE) activity leads to polyglucosan accumulation. The authors have further shown that inactivation of lysosomal acid alpha-glucosidase in the knockout mice does not contribute to the process of polyglucosan formation. Conclusions: An imbalance between GSase and GBE activities is proposed as the mechanism involved in the production of polyglucosan bodies. The authors may have inadvertently created a “muscle polyglucosan disease” by simulating the mechanism for polyglucosan formation.Keywords
This publication has 27 references indexed in Scilit:
- Modulation of disease severity in mice with targeted disruption of the acid α-glucosidase geneNeuromuscular Disorders, 2000
- A novel protein tyrosine phosphatase gene is mutated in progressive myoclonus epilepsy of the Lafora type (EPM2)Human Molecular Genetics, 1999
- Clinical and metabolic correction of pompe disease by enzyme therapy in acid maltase-deficient quail.Journal of Clinical Investigation, 1998
- Hepatic and neuromuscular forms of glycogen storage disease type IV caused by mutations in the same glycogen-branching enzyme gene.Journal of Clinical Investigation, 1996
- Glycogen branching enzyme deficiency in adult polyglucosan body diseaseAnnals of Neurology, 1993
- Hereditary branching enzyme dysfunction in adult polyglucosan body disease: A possible metabolic cause in two patientsAnnals of Neurology, 1991
- Polyglucosan body diseaseMuscle & Nerve, 1991
- Progressive Myoclonus Epilepsies: Specific Causes and DiagnosisNew England Journal of Medicine, 1986
- Glycogen branching enzyme in Lafora myoclonus epilepsyBiochemical Medicine, 1982
- Muscle phosphofructokinase deficiency: Two cases with unusual polysaccharide accumulation and immunologically active enzyme proteinMuscle & Nerve, 1980