首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Interactions of pentacyclic triterpene acids with cardiolipins and related phosphatidylglycerols in model systems
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Interactions of pentacyclic triterpene acids with cardiolipins and related phosphatidylglycerols in model systems

机译:五环三萜酸与心磷脂和相关磷脂酰甘油在模型系统中的相互作用

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摘要

Pentacyclic triterpene acids (PTAs): betulinic (BAc), oleanolic (Ola) and ursolic (Urs) are potent pharmaceuticals applied in the therapy of cancer and bacterial infections. The mechanism of PTA action is multifactor, but the important step is their interaction with the lipids of mitochondrial and bacterial membranes. In our studies we applied the Langmuir monolayer technique to investigate the interactions between PTAs and cardiolipins (CLs) and phosphatidylglycerols (PGs). We applied two different mammalian mitochondrial CLs and one species extracted from the membrane of Escherichia coli. For comparison we performed the same experiments on the systems containing PTAs and 3 PGs strictly correlated structurally to the applied CLs. Our studies proved that PTAs can disturb the organization of CL-rich domains and affect the bacterial membrane fluidity by the interactions with phosphatidylglycerols, so anionic phospholipids are the targets of their membrane action. The thermodynamic interpretation of the results indicated that Urs has the highest membrane disorganizing potential among the 3 studied PTAs. The studies performed on model systems proved also that BAc can discriminate over structurally similar animal cardiolipin species, interacts specifically with BHCL - the main mammalian CL and can disturb its organization in the membrane. In contrast, Ola and Urs are much active as far as the interaction with bacterial CLs and PGs is concerned.
机译:五环三萜酸(PTA):桦木酸(BAc),齐墩果酸(Ola)和熊果酸(Urs)是用于治疗癌症和细菌感染的有效药物。 PTA作用的机制是多因素的,但重要的一步是它们与线粒体和细菌膜脂质的相互作用。在我们的研究中,我们应用Langmuir单层技术研究了PTA与心磷脂(CL)和磷脂酰甘油(PG)之间的相互作用。我们应用了两种不同的哺乳动物线粒体CL和一种从大肠杆菌膜中提取的物种。为了进行比较,我们对包含PTA和3种PG的系统进行了相同的实验,这些PG在结构上与所应用的CL严格相关。我们的研究证明,PTA可以通过与磷脂酰甘油的相互作用来干扰富含CL的域的组织并影响细菌膜的流动性,因此阴离子磷脂是其膜作用的目标。结果的热力学解释表明,在3个研究的PTA中,Urs具有最高的膜分解能力。在模型系统上进行的研究还证明,BAc可以区分结构相似的动物心磷脂,与主要的哺乳动物CL BHCL特异性相互作用,并且可以干扰其在膜中的组织。相比之下,就与细菌CL和PG的相互作用而言,Ola和Urs活性很高。

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