Target intelligence / Profile preview

Actin, alpha skeletal muscle (ACTA1)

Target
ACTA1
Molecular classification
Actin protein family, Structural protein, Cytoskeletal protein, Other (not a receptor, enzyme, transporter, ion channel, or transcription factor)
01

Overview

Actin, alpha skeletal muscle (ACTA1) is a highly conserved structural protein encoded by the ACTA1 gene, essential for muscle contraction and integrity in skeletal muscle fibers. It forms the core of the sarcomeric thin filaments within muscle cells and enables interactions with myosin, tropomyosin, and other proteins to create the contractile apparatus. ACTA1 is crucial for muscle formation, contributes to cell movement, and maintains cytoskeletal architecture. Mutations in ACTA1 cause several neuromuscular disorders, most notably nemaline myopathy, with over 400 reported pathogenic variants, characterized by muscle weakness, structural abnormalities, and impaired contraction. Although experimental therapies such as L-tyrosine supplementation and calcium sensitizers have shown promise in preclinical models, there are currently no approved drugs specifically targeting ACTA1. Diagnosis frequently relies on genetic testing and muscle biopsy, noting distinct structural myopathic features such as nemaline rods.

Other names
Actin alpha 1, skeletal muscleActin, alpha skeletal muscleAlpha-actin-1Skeletal muscle alpha-actinNemaline myopathy type 3 proteinNEM3ASMACFTDCFTD1CFTDMCMYO2ACMYO2BCMYO2CCMYP2ACMYP2BCMYP2CMPFDNEM1NEM2SHPM
02

Mechanism of action

L-tyrosine: proposed to improve muscle fiber function via metabolic or microstructural effects in certain myopathies. Calcium modulators: sensitize contractile machinery to Ca²⁺, improving muscle contraction in ACTA1-related disease models. Latrunculin B: disrupts actin filament polymerization (research use only).

03

Biological functions

Muscle contractionFormation and maintenance of the cytoskeletonCell shape determinationCell motilitySarcomere structureOther (interacts with other muscle proteins for fiber formation and integrity)
04

Disease associations

Neuromuscular diseaseNemaline myopathy (type 3 and other forms)Actin-accumulation myopathyCap myopathyIntranuclear rod myopathyCongenital myopathy with excess of thin myofilamentsCongenital fiber type disproportion (CFTD)
05

Safety considerations

Immune response risk with actin replacement therapies (experimental)Lack of genotype–phenotype correlation complicates clinical managementProgressive, often severe muscle weaknessCardiac involvement in some mutation-bearing individualsNo approved targeted therapies
06

Interacting drugs

L-tyrosine (experimental supplement with reported improvement in muscle fiber function; not a conventional approved drug for ACTA1 diseases)

2 more in the full profile.

07

Biomarkers

Presence of nemaline rods in muscle biopsy (diagnostic marker for nemaline myopathy)ACTA1 gene variants (genetic marker for patient selection and subtyping)Muscle fiber type disproportion (CFTD) and abnormal sarcomeric structures

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