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Updated: Feb 10, 2026

The Extraction of Liver Glycogen Molecules for Glycogen Structure Determination
Published on: February 8, 2022
Inhibition of Glycogen Synthase II with RNAi Prevents Liver Injury in Mouse Models of Glycogen Storage Diseases
Natalie Pursell1, Jessica Gierut1, Wei Zhou1
1Dicerna Pharmaceuticals, Cambridge, MA 02140, USA.
Abstract:
Glycogen storage diseases (GSDs) of the liver are devastating disorders presenting with fasting hypoglycemia as well as hepatic glycogen and lipid accumulation, which could lead to long-term liver damage. Diet control is frequently utilized to manage the potentially dangerous hypoglycemia, but there is currently no effective pharmacological treatment for preventing hepatomegaly and concurrent liver metabolic abnormalities, which could lead to fibrosis, cirrhosis, and hepatocellular adenoma or carcinoma. In this study, we demonstrate that inhibition of glycogen synthesis using an RNAi approach to silence hepatic Gys2 expression effectively prevents glycogen synthesis, glycogen accumulation, hepatomegaly, fibrosis, and nodule development in a mouse model of GSD III. Mechanistically, reduction of accumulated abnormally structured glycogen prevents proliferation of hepatocytes and activation of myofibroblasts as well as infiltration of mononuclear cells. Additionally, we show that silencing Gys2 expression reduces hepatic steatosis in a mouse model of GSD type Ia, where we hypothesize that the reduction of glycogen also reduces the production of excess glucose-6-phosphate and its subsequent diversion to lipid synthesis. Our results support therapeutic silencing of GYS2 expression to prevent glycogen and lipid accumulation, which mediate initial signals that subsequently trigger cascades of long-term liver injury in GSDs.
Insights
Silencing Gys2 expression in mice prevents liver glycogen and lipid accumulation, key drivers of liver damage in Glycogen Storage Diseases (GSDs). This approach offers a potential therapeutic strategy for GSDs.
Area of Science:
- Biochemistry
- Genetics
- Hepatology
Background:
- Glycogen storage diseases (GSDs) cause liver damage via glycogen and lipid accumulation.
- Current treatments manage hypoglycemia but not liver pathology.
- Hepatomegaly, fibrosis, and cancer are long-term risks in GSDs.
Purpose of the Study:
- To investigate the therapeutic potential of inhibiting glycogen synthesis in GSDs.
- To evaluate the effect of silencing Gys2 expression on liver pathology in GSD mouse models.
Main Methods:
- RNA interference (RNAi) to silence hepatic Gys2 expression in mouse models.
- Assessment of glycogen and lipid accumulation, hepatomegaly, and liver fibrosis.
- Analysis of hepatocyte proliferation, myofibroblast activation, and immune cell infiltration.
Main Results:
- Silencing Gys2 prevented glycogen synthesis, accumulation, and hepatomegaly in GSD III mice.
- Reduced glycogen normalized liver structure, inhibiting fibrosis and nodule formation.
- Gys2 silencing decreased hepatic steatosis in GSD Ia mice, suggesting reduced lipid synthesis.
Conclusions:
- Therapeutic silencing of GYS2 expression is a promising strategy for GSDs.
- Inhibiting glycogen synthesis mitigates liver injury by preventing glycogen and lipid accumulation.
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