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A high concentration of genistein down-regulates activin A, Smad3 and other TGF-${eta}$ pathway genes in human uterine leiomyoma cells
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  • A high concentration of genistein down-regulates activin A, Smad3 and other TGF-${eta}$ pathway genes in human uterine leiomyoma cells
  • A high concentration of genistein down-regulates activin A, Smad3 and other TGF-${eta}$ pathway genes in human uterine leiomyoma cells
저자명
Di. Xudong,Andrews. Danica M.K.,Tucker. Charles J.,Yu. Linda,Moore. Alicia B.,Zheng. Xiaolin,Castro. Lysandra,Hermon. Tonia,Xiao
간행물명
Experimental & molecular medicine : EMM
권/호정보
2012년|44권 4호|pp.281-292 (12 pages)
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생화학분자생물학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Previously, we found that high doses of genistein show an inhibitory effect on uterine leiomyoma (UtLM) cell proliferation. In this study, using microarray analysis and Ingenuity Pathways Analysis$^{TM}$, we identified genes (up- or down-regulated, ${geq}1.5$ fold, $P{leq}0.001$), functions and signaling pathways that were altered following treatment with an inhibitory concentration of genistein (50 ${mu}g/ml$) in UtLM cells. Downregulation of TGF-${eta}$ signaling pathway genes, activin A, activin B, Smad3, TGF-${eta}2$ and genes related to cell cycle regulation, with the exception of the upregulation of the CDK inhibitor P15, were identified and validated by real-time RT-PCR studies. Western blot analysis further demonstrated decreased protein expression of activin A and Smad3 in genistein-treated UtLM cells. Moreover, we found that activin A stimulated the growth of UtLM cells, and the inhibitory effect of genistein was partially abrogated in the presence of activin A. Overexpression of activin A and Smad3 were found in tissue samples of leiomyoma compared to matched myometrium, supporting the contribution of activin A and Smad3 in promoting the growth of UtLM cells. Taken together, these results suggest that downregulation of activin A and Smad3, both members of the TGF-${eta}$ pathway, may offer a mechanistic explanation for the inhibitory effect of a high-dose of genistein on UtLM cells, and might be potential therapeutic targets for treatment of clinical cases of uterine leiomyomas.