Target intelligence / Profile preview

Glycogen phosphorylase, muscle isoform (PYGM)

Target
PYGM
Molecular classification
Enzyme
01

Overview

Glycogen phosphorylase, muscle isoform (PYGM), is a key enzyme responsible for catalyzing the rate-limiting step in glycogenolysis: the phosphorolytic cleavage of glycogen to release glucose-1-phosphate. PYGM is predominately expressed in skeletal muscle but can also be found in other tissues, including the brain and lymphoid tissue. Its primary function is to supply energy rapidly during muscle contraction by mobilizing stored glycogen. It is regulated allosterically by AMP, ATP, and reversible phosphorylation at the Ser14 site, which switches the enzyme between active (phosphorylase a) and less active (phosphorylase b) forms. Mutations or deficiencies in PYGM cause McArdle disease (glycogen storage disease type V), characterized by exercise intolerance and muscle weakness. PYGM is implicated in several additional processes, including insulin signaling, immune response, cancer metabolism, and more, making it a potential therapeutic target for metabolic and neoplastic diseases[1][2][5][6].

Other names
Muscle glycogen phosphorylaseMyophosphorylaseGlycogen phosphorylase, muscle form
02

Mechanism of action

Inhibition of PYGM activity reduces glycogenolysis, decreasing the availability of glucose-1-phosphate from glycogen breakdown[2][5]. Inhibitors may block the enzyme's catalytic site or allosteric regulatory sites, impacting glucose release in muscle and potentially modulating metabolic pathways relevant for disease (e.g., cancer, metabolic disorders)[4].

03

Biological functions

Glycogenolysis (breakdown of glycogen)Energy metabolism (specifically, provision of glucose for muscle contraction)Regulation of insulin and glucagon signaling pathwaysParticipation in necroptosis and immune responseInvolvement in phototransduction
04

Disease associations

Glycogen storage disease type V (McArdle disease)Cancer (some evidence of involvement)Schizophrenia (implicated)Insulin resistance (indirect)
05

Safety considerations

Inhibition can cause muscle weakness or induce glycogen storage disease-like symptoms (e.g., reduced energy supply during exercise)Potential impact on wider glucose metabolism and energy homeostasisTargeting PYGM in non-muscle tissues could result in unintended metabolic effects[2].
06

Interacting drugs

CP91149 (experimental inhibitor)

1 more in the full profile.

07

Biomarkers

PYGM mutation or deficiency (for diagnosing McArdle disease)PYGM protein or activity levels (for muscle metabolic status or studying glycogen storage diseases)

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