ONTOLOGY REPORT - ANNOTATIONS


Term:negative regulation of skeletal muscle satellite cell proliferation
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Accession:GO:1902723 term browser browse the term
Definition:Any process that stops, prevents or reduces the frequency, rate or extent of satellite cell proliferation.
Synonyms:exact_synonym: down regulation of satellite cell proliferation;   downregulation of satellite cell proliferation
 narrow_synonym: inhibition of satellite cell proliferation


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negative regulation of skeletal muscle satellite cell proliferation term browser
Symbol Object Name JBrowse Chr Start Stop Reference
G Akirin1 akirin 1 JBrowse link 5 141,415,226 141,430,627 RGD:1600115
RGD:1624291
G Ephb1 Eph receptor B1 JBrowse link 8 110,376,954 110,813,193 RGD:1624291
RGD:1600115
G Mstn myostatin JBrowse link 9 53,310,977 53,315,804 RGD:1600115
G Six5 SIX homeobox 5 JBrowse link 1 80,000,106 80,005,303 RGD:1624291
RGD:1600115

Term paths to the root
Path 1
Term Annotations click to browse term
  biological_process 17926
    cell population proliferation 2071
      negative regulation of cell population proliferation 705
        negative regulation of skeletal muscle cell proliferation 4
          negative regulation of skeletal muscle satellite cell proliferation 4
            negative regulation of growth factor dependent skeletal muscle satellite cell proliferation 0
Path 2
Term Annotations click to browse term
  biological_process 17926
    biological regulation 12622
      regulation of biological process 11964
        negative regulation of biological process 5362
          negative regulation of cellular process 4787
            negative regulation of cell population proliferation 705
              negative regulation of skeletal muscle cell proliferation 4
                negative regulation of skeletal muscle satellite cell proliferation 4
                  negative regulation of growth factor dependent skeletal muscle satellite cell proliferation 0
paths to the root

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RGD is funded by grant HL64541 from the National Heart, Lung, and Blood Institute on behalf of the NIH.