Proteomics

Dataset Information

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Characterization of RNAseT2 interactome in C2C12 cells


ABSTRACT: Muscle stem cells (MuSCs) fuse to form multinucleated cells to repair skeletal muscle after injury. While adult MuSCs express a cell autonomous myogenesis program, in vivo investigations demonstrated that the MuSC environment is required for efficient adult myogenesis and muscle regeneration. Particularly, anti-inflammatory/restorative macrophages stimulate MuSC differentiation and fusion, although the molecular mechanisms involved are still largely unknown. Here, we show that restorative macrophages secrete ribonuclease T2 (RNAseT2) which specifically stimulates MuSC fusion. Co-immuprecipitation coupled to mass spectrometry-based proteomics identified Ste20-like kinase (SLK) as binding partner of RNAseT2. SLK triggered the phosphorylation-mediated activation of N-WASP, allowing actin remodeling at the time of MuSC fusion.

INSTRUMENT(S):

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Myoblast

SUBMITTER: Yohann Couté  

LAB HEAD: Yohann Couté

PROVIDER: PXD045581 | Pride | 2026-06-15

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
Result.mzid.gz Mzid
checksum.txt Txt
eGFP-RNAseT2_R1.mgf Mgf
eGFP-RNAseT2_R1.raw Raw
eGFP-RNAseT2_R2.mgf Mgf
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Publications


Muscle stem cells (MuSCs) fuse to form myofibers to repair skeletal muscle after injury. Within the regenerative MuSC niche, restorative macrophages stimulate MuSC fusion, although the molecular mechanisms involved are largely unknown. Here, we show that restorative macrophages secrete ribonuclease T2 (RNAseT2) to stimulate MuSC fusion. RNAseT2 enters MuSCs via the mannose receptor and induces the formation of actin bundles in MuSCs, enabling cell/cell fusion. Mechanistically, RNAseT2 binds to S  ...[more]

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