首页> 美国卫生研究院文献>Molecules >The Triterpenes 3β-Lup-20(29)-en-3-ol and 3β-Lup-20(29)-en-3-yl Acetate and the Carbohydrate 123456-Hexa-O-acetyl-dulcitol as Photosynthesis Light Reactions Inhibitors
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The Triterpenes 3β-Lup-20(29)-en-3-ol and 3β-Lup-20(29)-en-3-yl Acetate and the Carbohydrate 123456-Hexa-O-acetyl-dulcitol as Photosynthesis Light Reactions Inhibitors

机译:三萜类化合物3β-Lup-20(29)-en-3-ol和3β-Lup-20(29)-en-3-yl乙酸盐和碳水化合物123456-Hexa-O -乙酰基-杜糖醇作为光合作用的光反应抑制剂

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摘要

Three compounds were isolated from Maytenus acanthophylla Reissek (Celastraceae): the pentacyclic triterpenes lup-20(29)-en-3β-ol (lupeol, >1) and 3β-lup-20(29)-en-3-yl acetate (>2) and the carbohydrate 1,2,3,4,5,6-hexa-O-acetyldulcitol (>3);lupeol was also isolated from Xylosma flexuosa. The compounds’ structures were elucidated by spectroscopic and spectrometric analysis. Compound >1 acts as an energy transfer inhibitor, interacting with isolated CF1 bound to thylakoid membrane, and dulcitol hexaacetate >3 behaves as a Hill reaction inhibitor and as an uncoupler, as determined by polarography. Chlorophyll a (Chl a) fluorescence induction kinetics from the minimum yield F0 to the maximum yield FM provides information of the filling up from electrons coming from water to plastoquinone pool with reducing equivalents. In this paper we have examined the effects of compounds >1 and >3 on spinach leaf discs. Compound >1 induces the appearance of a K-band, which indicates that it inhibits the water splitting enzyme. In vivo assays measuring the fluorescence of chl a in P. ixocarpa leaves sprayed with compound >1, showed the appearance of the K-band and the PSII reaction centers was transformed to “heat sinks” or silent reaction centers unable to reduce QA. However, >3 also induced the appearance of a K band and a new band I appears in P. ixocarpa plants, therefore it inhibits at the water splitting enzyme complex and at the PQH2 site on b6f complex. Compounds >1 and >3 did not affect chlorophyll a fluorescence of L. perenne plants.
机译:从Maytenus acanthophylla Reissek(Celastraceae)中分离出三种化合物:五环三萜lup-20(29)-en-3β-ol(lupeol,> 1 )和3β-lup-20(29)-en还分离了乙酸-3-基乙酸酯(> 2 )和碳水化合物1,2,3,4,5,6-六-O-乙酰基二糖醇(> 3 );来自弯曲木霉。通过光谱和光谱分析阐明了化合物的结构。化合物> 1 用作能量转移抑制剂,与键合到类囊体膜上的分离的CF1相互作用,而十二烷醇六乙酸酯> 3 充当Hill反应抑制剂和解偶联剂,具体取决于极谱法。从最小产量F0到最大产量FM的叶绿素a(Chl a)荧光诱导动力学提供了从水到质体醌库的电子减少的等效填充信息。在本文中,我们研究了化合物> 1 和> 3 对菠菜叶圆盘的影响。化合物> 1 诱导出现K带,表明它抑制了水分解酶。体内实验测量了喷洒有化合物> 1 的果毕生叶中chla的荧光,显示出K带的出现,PSII反应中心转变为“散热器”或无声反应中心无法减少质量检查。然而,> 3 也诱导了P. ixocarpa植物出现K条带,并出现了一条新条带I,因此它抑制了水分解酶复合物和b6f复合物的PQH2位点。化合物> 1 和> 3 不影响紫苏植物叶绿素a的荧光。

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