Tsai Ju-Ying, Rédei Dóra, Forgo Peter, Li Yu, Vasas Andrea, Hohmann Judit, Wu Chin-Chung
Graduate Institute of Natural Products and ‡Research Center for Natural Products and Drug Development, Kaohsiung Medical University , Kaohsiung 807, Taiwan.
Department of Pharmacognosy and ⊥Interdisciplinary Centre for Natural Products, University of Szeged , Eötvös u. 6, H-6720 Szeged, Hungary.
J Nat Prod. 2016 Oct 28;79(10):2658-2666. doi: 10.1021/acs.jnatprod.6b00603. Epub 2016 Oct 12.
Human platelets contain conventional (α and β) and novel isoforms of PKC (δ and θ), and PKC activation can result in platelet aggregation and secretion reaction that are important for thrombus formation. Several tumor-promoting Euphorbiaceae diterpenes are known to act as direct activators of PKC, but many types of such diterpenes have not been studied as platelet stimulators. In the present study, two new and five known phorbol esters were isolated from Euphorbia grandicornis. Two of the isolated phorbol esters together with compounds representing ingenane, jatrophane, and myrsinane structural types were studied on PKC activation and platelet stimulation. The investigated phorbol esters and ingenane esters induced blood platelet aggregation and ATP secretion. PKC activation was demonstrated by inducing membrane translocation of PKCs, phosphorylation of PKC substrates, and activation of PKC signaling pathways. The PKC-activating effect of the compounds correlated well with their efficacy to cause platelet stimulation. Moreover, by using an isoform-specific PKC inhibitor, it was found that besides conventional PKCs novel PKCs also play a positive role in platelet activation caused by phorbol/ingenane esters, especially in regulating platelet aggregation. The present results suggest that platelets afford a useful model for studying PKC activators of natural origin or their chemical derivatives.
人血小板含有传统的(α和β)蛋白激酶C(PKC)亚型以及新型亚型(δ和θ),PKC激活可导致血小板聚集和分泌反应,这对血栓形成很重要。已知几种具有促肿瘤作用的大戟科二萜类化合物可作为PKC的直接激活剂,但许多此类二萜类化合物尚未作为血小板刺激剂进行研究。在本研究中,从大戟中分离出两种新的和五种已知的佛波酯。研究了其中两种分离出的佛波酯以及代表瑞香烷型、麻风树烷型和铁屎米烷型结构类型的化合物对PKC的激活作用和对血小板的刺激作用。所研究的佛波酯和瑞香烷型酯可诱导血小板聚集和ATP分泌。通过诱导PKC的膜转位、PKC底物的磷酸化以及PKC信号通路的激活来证明PKC的激活。这些化合物的PKC激活作用与其引起血小板刺激的效力密切相关。此外,通过使用亚型特异性PKC抑制剂发现,除了传统的PKC外,新型PKC在佛波酯/瑞香烷型酯引起的血小板激活中也起积极作用,尤其是在调节血小板聚集中。目前的结果表明,血小板为研究天然来源的PKC激活剂或其化学衍生物提供了一个有用的模型。