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ONTOLOGY REPORT - ANNOTATIONS


Term:meiotic joint molecule formation
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Accession:GO:0000709 term browser browse the term
Definition:The conversion of the paired broken DNA and homologous duplex DNA into a four-stranded branched intermediate, known as a joint molecule, formed during meiotic recombination. These joint molecules contain Holliday junctions on either side of heteroduplex DNA.



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meiotic joint molecule formation term browser
Symbol Object Name Qualifiers Evidence Notes Source PubMed Reference(s) RGD Reference(s) Position
G Psmc3ip PSMC3 interacting protein involved_in IEA
IBA
GO_REF:0000118
GO_REF:0000033
TreeGrafter
GO_Central
GO_REF:0000033 GO_REF:0000118 NCBI chr10:86,024,281...86,027,928
Ensembl chr10:86,023,950...86,027,423
JBrowse link
G Swi5 SWI5 homologous recombination repair protein involved_in IEA GO_REF:0000118 TreeGrafter GO_REF:0000118 NCBI chr 3:15,574,687...15,583,760
Ensembl chr 3:15,564,715...15,583,805
JBrowse link

Term paths to the root
Path 1
Term Annotations click to browse term
  biological_process 20328
    reproductive process 1831
      meiotic cell cycle process 256
        meiotic joint molecule formation 2
          negative regulation of meiotic joint molecule formation 0
          regulation of meiotic joint molecule formation + 0
Path 2
Term Annotations click to browse term
  biological_process 20328
    metabolic process 11732
      organic substance metabolic process 11224
        organic cyclic compound metabolic process 6240
          nucleobase-containing compound metabolic process 5720
            nucleic acid metabolic process 5123
              DNA metabolic process 985
                DNA recombination 356
                  homologous recombination 70
                    reciprocal homologous recombination 69
                      reciprocal meiotic recombination 69
                        meiotic joint molecule formation 2
                          negative regulation of meiotic joint molecule formation 0
                          regulation of meiotic joint molecule formation + 0
paths to the root