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Research Frontiers
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人參達瑪烷皂苷Rh2的藥理作用簡述



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達瑪烷皂苷Rg1的藥理作用簡述



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達瑪烷皂苷Rb1的藥理作用簡述



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達瑪烷苷元原人參三醇PPT的藥理作用簡述



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達瑪烷苷元原人參二醇PPD的藥理作用簡述


 

基因三醇(PPT)合成花旗參被發現

達瑪烷皂苷Rh2的抗過敏作用
人參達瑪烷皂甙Rh2是人參的一個主要活性成分。本研究對Rh2的抗過敏活性進行了研究。 在被動皮膚過敏反應測試中,Rh2抑制了β-氨基己糖苷酶從肥大細胞 RBL-2H3細胞中釋放。 同時,人參皂苷Rh2的抑制活性比色甘酸二鈉(一種商業抗過敏藥物)更為有效的。通過差示掃描量熱法,發現Rh2具有膜穩定作用,能夠抑制抑制一氧化氮(NO )和前列腺素E2 ( PGE2 )從過敏細胞中釋放。但是,人參皂苷Rh2沒有抑制透明質酸酶的激活,也不能清除活性氧。 以上研究結果表明,人參皂苷Rh2可以穩定過敏細...
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Identification of the protopanaxatriol synthase gene CYP6H for ginsenoside biosynthesis in Panax quinquefolius.
Funct Integr Genomics. 2014 Jul 24;
Authors: Wang L, Zhao SJ, Liang YL, Sun Y, Cao HJ, Han Y

Abstract
Panax quinquefolius is one of perennial herbs and well known for its outstanding pharmacological activity. Ginsenosides are thought to be the main active ingredients in P. quinquefolius and exist in many kinds of plant genus Panax (ginseng).

Protopanaxatriol synthase, which is considered cytochrome P450 (CYP450) in ginsenoside biosynthesis pathway can convert protopanaxadiol into protopanaxatriol. However, the protopanaxatriol synthase gene in P. quinquefolius has not been identified.

Here, we cloned and identified a protopanaxatriol synthase gene from P. quinquefolius (CYP6H, GenBank accession no. KC190491) at the first time, reverse transcription-PCR (RT-PCR) analysis showed no obvious transcription change of CYP6H in methyl jasmonate (MeJA)-induced hairy roots.

Ectopic expression of CYP6H in Saccharomyces cerevisiae resulted in the production of protopanaxatriol with added exogenous protopanaxadiol and confirmed by liquid chromatography-atmospheric pressure chemical ionization mass spectrometry (LC/APCIMS).

Moreover, high-performance liquid chromatography (HPLC) analysis shows that RNA interferences of CYP6H in transgenic hairy roots could increase the accumulation of protopanaxadiol-type ginsenosides and decrease the accumulation of protopanaxatriol-type ginsenosides, whereas the effect of overexpression CYP6H in transgenic hairy roots was contrary.

Our study indicated that CYP6H is a gene encoding protopanaxadiol 6-hydroxylase which could convert protopanaxadiol into protopanaxatriol in P. quinquefolius ginsenoside biosynthesis, we also have confirmed the function of CYP6H on effect accumulation of ginsenosides.

PMID: 25056561 [PubMed - as supplied by publisher]

Source: PPT and PPD

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