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Term:millewanin H
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Accession:CHEBI:66392 term browser browse the term
Definition:A hydroxyisoflavone that is isoflavone substituted by hydroxy groups at positions 5, 7, 3' and 4', a prenyl group at position 6 and a 2-hydroxy-3-methylbut-3-enyl moiety at position 8. Isolated from the leaves of Millettia pachycarpa, it exhibits antiestrogenic activity.
Synonyms:exact_synonym: 3-(3,4-dihydroxyphenyl)-5,7-dihydroxy-8-(2-hydroxy-3-methylbut-3-en-1-yl)-6-(3-methylbut-2-en-1-yl)-4H-chromen-4-one
 related_synonym: Formula=C25H26O7;   InChI=1S/C25H26O7/c1-12(2)5-7-15-22(29)16(10-19(27)13(3)4)25-21(23(15)30)24(31)17(11-32-25)14-6-8-18(26)20(28)9-14/h5-6,8-9,11,19,26-30H,3,7,10H2,1-2,4H3;   InChIKey=RZHIZFURFGRHHQ-UHFFFAOYSA-N;   SMILES=CC(C)=CCc1c(O)c(CC(O)C(C)=C)c2occ(-c3ccc(O)c(O)c3)c(=O)c2c1O
 xref: PMID:16441086 "Europe PMC";   Reaxys:18586901 "Reaxys"

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  CHEBI ontology 19734
    role 19680
      biological role 19678
        biochemical role 19177
          metabolite 19147
            millewanin H 0
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  CHEBI ontology 19734
    subatomic particle 19730
      composite particle 19730
        hadron 19730
          baryon 19730
            nucleon 19730
              atomic nucleus 19730
                atom 19730
                  main group element atom 19614
                    p-block element atom 19614
                      carbon group element atom 19506
                        carbon atom 19500
                          organic molecular entity 19500
                            organic group 18414
                              organic divalent group 18406
                                organodiyl group 18406
                                  carbonyl group 18295
                                    carbonyl compound 18295
                                      ketone 15917
                                        cyclic ketone 13352
                                          isoflavones 2624
                                            hydroxyisoflavone 2551
                                              millewanin H 0
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RGD is funded by grant HL64541 from the National Heart, Lung, and Blood Institute on behalf of the NIH.