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ONTOLOGY REPORT - ANNOTATIONS


Term:positive regulation of satellite cell activation involved in skeletal muscle regeneration
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Accession:GO:0014718 term browser browse the term
Definition:Any process that activates, maintains or increases the frequency, rate or extent of activation of satellite cell involved in skeletal muscle regeneration. The activation of satellite cell is the process that initiates satellite cell division by causing it to move from quiescence to the G1 stage of the cell cycle. The cell swells and there are a number of other small changes. The cells then start to divide. Following cell division the cells will differentiate.



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positive regulation of satellite cell activation involved in skeletal muscle regeneration term browser
Symbol Object Name Qualifiers Evidence Notes Source PubMed Reference(s) RGD Reference(s) Position
G Capn3 calpain 3 involved_in IDA (MGI:5306562|PMID:20139084) UniProt PMID:20139084 MGI:5306562 NCBI chr 2:120,294,074...120,335,400
Ensembl chr 2:120,294,053...120,335,399
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G Sox15 SRY (sex determining region Y)-box 15 involved_in IMP (MGI:3714565|PMID:17363903) BHF-UCL PMID:17363903 MGI:3714565 NCBI chr11:69,545,863...69,547,553
Ensembl chr11:69,546,140...69,547,553
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Term paths to the root
Path 1
Term Annotations click to browse term
  biological_process 28573
    cellular process 17546
      positive regulation of cellular process 6256
        positive regulation of cell activation 416
          positive regulation of satellite cell activation involved in skeletal muscle regeneration 2
Path 2
Term Annotations click to browse term
  biological_process 28573
    developmental process 7376
      anatomical structure development 6848
        regeneration 347
          tissue regeneration 110
            skeletal muscle tissue regeneration 62
              regulation of skeletal muscle tissue regeneration 11
                positive regulation of skeletal muscle tissue regeneration 7
                  positive regulation of satellite cell activation involved in skeletal muscle regeneration 2
paths to the root