Galangin 3-benzyl-5-methylether derivatives function as an adiponectin synthesis-promoting peroxisome proliferator-activated receptor γ partial agonist

  • Ko, Hyejin
  • Jang, Hongjun
  • An, Seungchan
  • Park, In Guk
  • Ahn, Sungjin
  • ... Choi, Won Jun
  • 외 6명
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초록

The upregulation of adiponectin production has been suggested as a novel strategy for the treatment of metabolic diseases. Galangin, a natural flavonoid, exhibited adiponectin synthesis-promoting activity during adipogenesis in human bone marrow mesenchymal stem cells. In target identification, galangin bound both peroxisome proliferator-activated receptor (PPAR) gamma and estrogen receptor (ER) beta. Novel galangin derivatives were synthesized to improve adiponectin synthesis-promoting compounds by increasing the PPAR gamma activity of galangin and reducing its ER beta activity, because PPAR gamma functions can be inhibited by ER beta. Three galangin 3-benzyl-5-methylether derivatives significantly promoted adiponectin production by 2.88-, 4.47-, and 2.76-fold, respectively, compared to the effect of galangin. The most potent compound, galangin 3-benzyl-5,7-dimethylether, selectively bound to PPAR gamma (Ki, 1.7 mu M), whereas it did not bind to ER beta. Galangin 3-benzyl-5,7-dimethylether was identified as a PPAR gamma partial agonist in docking and pharmacological competition studies, suggesting that it may have diverse therapeutic potential in a variety of metabolic diseases.

키워드

Galangin derivativesPeroxisome proliferator-activated receptorgammaEstrogen receptor betaAdiponectinHuman bone marrow mesenchymal stem cellsPPAR-GAMMALIGAND-BINDINGCOACTIVATORFLAVONOIDSCOMPLEXPROTEINPRIP
제목
Galangin 3-benzyl-5-methylether derivatives function as an adiponectin synthesis-promoting peroxisome proliferator-activated receptor γ partial agonist
저자
Ko, HyejinJang, HongjunAn, SeungchanPark, In GukAhn, SungjinGong, JunpyoHwang, Seok YoungOh, SoyeonKwak, Soo YeonChoi, Won JunKim, HyoungsuNoh, Minsoo
DOI
10.1016/j.bmc.2021.116564
발행일
2022-01
유형
Article
저널명
Bioorganic and Medicinal Chemistry
54
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1 ~ 8