Glycogen storage disease type 1a (GSD–1a) is caused by a deficiency in microsomal glucose–6–phosphatase (G6Pase), the key enzyme in glucose homeostasis. A G6Pase knockout mouse which mimics the pathophysiology of human GSD–1 a patients was created to understand the pathogenesis of this disorder, to delineate the mechanisms of G6Pase catalysis, and to develop future therapeutic approaches. By examining G6Pase in the liver and kidney, the primary gluconeogenic tissues, we demonstrate that glucose–6–P transport and hydrolysis are performed by separate proteins which are tightly coupled. We propose a modified translocase catalytic unit model for G6Pase catalysi
In liver endoplasmic reticulum the intralumenal glucose-6-phosphatase activity requires the operatio...
In liver endoplasmic reticulum the intralumenal glucose-6-phosphatase activity requires the operatio...
Glycogen storage disease type 1a (GSD-1a) is a rare genetic disease caused by mutations in the catal...
Glycogen storage disease type 1a (GSD 1a) is caused by a deficiency in microsomal glucose-6-phosphat...
International audiencePatients with glycogen storage diseases type 1 (GSD1) suffer from life-threate...
Glucose-6-phosphatase (G6Pase), an enzyme found mainly in the liver and the kidneys, plays the impor...
It is a long-standing enigma how glycogen storage disease (GSD) type I patients retain a limited cap...
International audienceIt is a long-standing enigma how glycogen storage disease (GSD) type I patient...
La glycogénose de type 1a (GSD1a) est une maladie métabolique rare liée à une absence d’activité glu...
[[sponsorship]]生物化學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Ga...
Glucose-6 phosphatase (G6Pase), a key enzyme of glucose homeostasis, catalyses the hydrolysis of glu...
Glycogen Storage Disease type 1 is caused by a deficient function of glucose-6-phosphatase. In the m...
Glycogen storage disease type 1a (GSD-1a) is caused by a deficiency in glucose-6-phosphatase-α (G6Pa...
Glycogen storage disease (GSD) type 1a is caused by the deficiency of D-glucose-6-phosphatase (G6Pas...
Glycogen storage disease type Ia (GSD-Ia), characterized by impaired glucose homeostasis and chronic...
In liver endoplasmic reticulum the intralumenal glucose-6-phosphatase activity requires the operatio...
In liver endoplasmic reticulum the intralumenal glucose-6-phosphatase activity requires the operatio...
Glycogen storage disease type 1a (GSD-1a) is a rare genetic disease caused by mutations in the catal...
Glycogen storage disease type 1a (GSD 1a) is caused by a deficiency in microsomal glucose-6-phosphat...
International audiencePatients with glycogen storage diseases type 1 (GSD1) suffer from life-threate...
Glucose-6-phosphatase (G6Pase), an enzyme found mainly in the liver and the kidneys, plays the impor...
It is a long-standing enigma how glycogen storage disease (GSD) type I patients retain a limited cap...
International audienceIt is a long-standing enigma how glycogen storage disease (GSD) type I patient...
La glycogénose de type 1a (GSD1a) est une maladie métabolique rare liée à une absence d’activité glu...
[[sponsorship]]生物化學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Ga...
Glucose-6 phosphatase (G6Pase), a key enzyme of glucose homeostasis, catalyses the hydrolysis of glu...
Glycogen Storage Disease type 1 is caused by a deficient function of glucose-6-phosphatase. In the m...
Glycogen storage disease type 1a (GSD-1a) is caused by a deficiency in glucose-6-phosphatase-α (G6Pa...
Glycogen storage disease (GSD) type 1a is caused by the deficiency of D-glucose-6-phosphatase (G6Pas...
Glycogen storage disease type Ia (GSD-Ia), characterized by impaired glucose homeostasis and chronic...
In liver endoplasmic reticulum the intralumenal glucose-6-phosphatase activity requires the operatio...
In liver endoplasmic reticulum the intralumenal glucose-6-phosphatase activity requires the operatio...
Glycogen storage disease type 1a (GSD-1a) is a rare genetic disease caused by mutations in the catal...