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Updated: May 7, 2026

Identification of Skeletal Muscle Satellite Cells by Immunofluorescence with Pax7 and Laminin Antibodies
Published on: April 19, 2018
Chondrolectin regulates the sublaminar localization and regenerative function of muscle satellite cells in mice
Lijie Gu1, Kun Ho Kim1, Xiyue Chen1
1Department of Animal Sciences, Purdue University, West Lafayette, IN 47907, USA.
Abstract:
Skeletal muscle satellite cells (SCs) reside between the myofiber sarcolemma and basal lamina, where extracellular matrix (ECM) interactions maintain stemness and regenerative function. Here, we identify chondrolectin (CHODL), a type I transmembrane protein with a C-type lectin domain, as a critical regulator of SC biology. Single-cell RNA-seq analysis reveals that Chodl is highly enriched in quiescent SCs but downregulated in proliferating myoblasts. The conditional deletion of Chodl in embryonic myoblasts (Chodl MKO ) or adult SCs (Chodl PKO ) leaves muscle development intact yet delays injury-induced regeneration in young and aged mice. Chodl-deficient SCs exhibit reduced self-renewal and diminished proliferation, leading to defective myofiber repair. In silico network perturbation further predicts disrupted ECM-ligand interactions and Notch signaling, consistent with SC mislocalization outside the basal lamina and precocious activation in Chodl PKO muscle. Together, these findings establish CHODL as a determinant of SC niche localization and function, linking ECM interactions to muscle stem cell maintenance and repair.
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