Target intelligence / Profile preview

Dystrophin-associated protein complex (DAPC) (DAPC)

Target
DAPC
Molecular classification
Protein complex, Cytoskeletal-extracellular matrix linker, Structural protein complex, Other
01

Overview

The Dystrophin-associated protein complex (DAPC) is a large, multi-component assembly that spans the sarcolemma of skeletal and cardiac muscle fibers, serving as a vital mechanical link between the intracellular F-actin cytoskeleton and the extracellular matrix (laminin) (UniProt P11532). The core of the complex consists of dystrophin, the dystroglycan complex (alpha and beta subunits), sarcoglycans, and dystrobrevins, while also serving as a scaffold for signaling molecules such as neuronal nitric oxide synthase (nNOS) and Par1b (MARK2) (PubMed: 21135508, 20154571). By stabilizing the plasma membrane during the repetitive cycles of muscle contraction and relaxation, the DAPC prevents mechanical rupture and regulates localized signaling pathways essential for muscle health and vascular control. Mutations in the genes encoding DAPC components, particularly the DMD gene, result in the loss of the entire complex from the sarcolemma, leading to progressive muscle degeneration, fibrosis, and the clinical manifestations of Duchenne and Becker muscular dystrophies (NIH: GeneReviews). Therapeutic strategies targeting the DAPC focus on restoring the expression of functional dystrophin or stabilizing the complex through antisense oligonucleotide-mediated exon skipping, gene replacement therapy using micro-dystrophin, or small molecule read-through of nonsense mutations (FDA: Elevidys, Exondys 51). Additionally, stabilizing the DAPC is a key goal in treating various forms of limb-girdle muscular dystrophy where sarcoglycan or dystroglycan subunits are deficient (PubMed: 26897140).

Other names
Dystrophin-glycoprotein complexDGCDystrophin-associated glycoprotein complexDAGC
02

Mechanism of action

Restoration of dystrophin protein expression via antisense oligonucleotide-mediated exon skipping, gene replacement therapy using micro-dystrophin, or small molecule read-through of nonsense mutations to stabilize the DAPC at the sarcolemma.

03

Biological functions

Signal transductionMuscle membrane stabilizationForce transmissionNitric oxide signalingCell polarityOther
04

Disease associations

Cardiovascular diseaseMuscular dystrophyNeurodegenerative diseaseOther
05

Safety considerations

Immunogenicity against viral vectors (AAV)Renal toxicity associated with antisense oligonucleotidesHepatotoxicityImmune-mediated myocarditis or myositisOff-target effects of gene editing
06

Interacting drugs

Eteplirsen

5 more in the full profile.

07

Biomarkers

Dystrophin protein expression (Western blot/Immunofluorescence)Serum creatine kinase (CK)North Star Ambulatory Assessment (NSAA)Muscle MRI (fatty replacement)

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