Related Experiment Video
Updated: Feb 10, 2026

Examining Muscle Regeneration in Zebrafish Models of Muscle Disease
Published on: January 18, 2021
Group I Paks support muscle regeneration and counteract cancer-associated muscle atrophy
Andrea Cerquone Perpetuini1, Andrea David Re Cecconi2, Michela Chiappa2
1Department of Biology, University of Rome Tor Vergata, Via della ricerca scientifica, 00133, Rome, Italy.
Background:
Skeletal muscle is characterized by an efficient regeneration potential that is often impaired during myopathies. Understanding the molecular players involved in muscle homeostasis and regeneration could help to find new therapies against muscle degenerative disorders. Previous studies revealed that the Ser/Thr kinase p21 protein-activated kinase 1 (Pak1) was specifically down-regulated in the atrophying gastrocnemius of Yoshida hepatoma-bearing rats. In this study, we evaluated the role of group I Paks during cancer-related atrophy and muscle regeneration.
Methods:
We examined Pak1 expression levels in the mouse Tibialis Anterior muscles during cancer cachexia induced by grafting colon adenocarcinoma C26 cells and in vitro by dexamethasone treatment. We investigated whether the overexpression of Pak1 counteracts muscle wasting in C26-bearing mice and in vitro also during interleukin-6 (IL6)-induced or dexamethasone-induced C2C12 atrophy. Moreover, we analysed the involvement of group I Paks on myogenic differentiation in vivo and in vitro using the group I chemical inhibitor IPA-3.
Results:
We found that Pak1 expression levels are reduced during cancer-induced cachexia in the Tibialis Anterior muscles of colon adenocarcinoma C26-bearing mice and in vitro during dexamethasone-induced myotube atrophy. Electroporation of muscles of C26-bearing mice with plasmids directing the synthesis of PAK1 preserves fiber size in cachectic muscles by restraining the expression of atrogin-1 and MuRF1 and possibly by inducing myogenin expression. Consistently, the overexpression of PAK1 reduces the dexamethasone-induced expression of MuRF1 in myotubes and increases the phospho-FOXO3/FOXO3 ratio. Interestingly, the ectopic expression of PAK1 counteracts atrophy in vitro by restraining the IL6-Stat3 signalling pathway measured in luciferase-based assays and by reducing rates of protein degradation in atrophying myotubes exposed to IL6. On the other hand, we observed that the inhibition of group I Paks has no effect on myotube atrophy in vitro and is associated with impaired muscle regeneration in vivo and in vitro. In fact, we found that mice treated with the group I inhibitor IPA-3 display a delayed recovery from cardiotoxin-induced muscle injury. This is consistent with in vitro experiments showing that IPA-3 impairs myogenin expression and myotube formation in vessel-associated myogenic progenitors, C2C12 myoblasts, and satellite cells. Finally, we observed that IPA-3 reduces p38α/β phosphorylation that is required to proceed through various stages of satellite cells differentiation: activation, asymmetric division, and ultimately myotube formation.
Conclusions:
Our data provide novel evidence that is consistent with group I Paks playing a central role in the regulation of muscle homeostasis, atrophy and myogenesis.
Insights
Group I Paks, including p21 protein-activated kinase 1 (Pak1), are crucial for muscle health. Restoring Pak1 levels combats cancer-related muscle atrophy, while inhibiting these kinases impairs muscle regeneration.
Area of Science:
- Muscle physiology and molecular biology
- Cellular signaling pathways
- Biochemistry of muscle atrophy and regeneration
Background:
- Skeletal muscle regeneration is vital but impaired in myopathies.
- p21 protein-activated kinase 1 (Pak1) is downregulated in muscle atrophy.
- Understanding molecular regulators of muscle homeostasis is key for therapeutic development.
Purpose of the Study:
- To investigate the role of group I Paks in cancer-related muscle atrophy and regeneration.
- To determine if Pak1 overexpression can counteract muscle wasting.
- To analyze the impact of group I Pak inhibition on myogenesis.
Main Methods:
- Pak1 expression was analyzed in mouse models of cancer cachexia and dexamethasone-induced atrophy.
- Pak1 overexpression was tested in vitro and in vivo to assess its effect on muscle wasting.
- The chemical inhibitor IPA-3 was used to study group I Pak involvement in myogenesis and regeneration.
Main Results:
- Pak1 levels decreased in cancer cachexia and dexamethasone-induced atrophy.
- Pak1 overexpression preserved muscle fiber size by modulating atrophy-related gene expression and promoting myogenin.
- Pak1 inhibited IL6-Stat3 signaling and reduced protein degradation in atrophying myotubes.
- Group I Pak inhibition with IPA-3 impaired muscle regeneration and satellite cell differentiation by affecting p38 phosphorylation.
Conclusions:
- Group I Paks are central regulators of muscle homeostasis, atrophy, and myogenesis.
- Pak1 plays a protective role against muscle wasting.
- Inhibition of group I Paks negatively impacts muscle regeneration processes.
Related Concept Videos
Classification of Skeletal Muscle Fibers
Slow-Twitch Muscle Fibers
Slow oxidative, muscle fibers appear red due to large numbers of capillaries and high levels of...
Muscles of the Eye
Extraocular Muscles
The six extraocular muscles surround the eyeball and control its movements. They are responsible for a wide range of eye motions, including looking up, down, left, right, and...
Muscles that Move the Head
The bilateral sternocleidomastoid, or SCM, and the suprahyoid and infrahyoid muscles are significant head flexors. The SCM muscles originate at the sternum and clavicle and attach to the mastoid process of the temporal bone. The SCM contracts bilaterally to bend the head forward, whereas...
Muscles of the Abdomen
Anterolateral Region
The anterolateral region comprises five paired muscles classified into the lateral and...
Muscles that Move the Arm
The pectoralis major has two origins. Its clavicular head originates on the medial half of the clavicle. In contrast, the sternocostal head originates on the costal cartilages of ribs 1-6, the sternum, and the aponeurosis of the external oblique of the...
Muscles that Move the Forearm
Forearm Flexors
The biceps brachii, brachialis, and brachioradialis are forearm flexors. The biceps brachii is made up of two heads. Its long head originates at the supraglenoid tubercle of the scapula, whereas that of the short head is...

