Dubovskii Peter V, Vassilevski Alexander A, Kozlov Sergey A, Feofanov Alexey V, Grishin Eugene V, Efremov Roman G
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 16/10 Miklukho-Maklaya, Moscow, 117997, Russia.
Biological Faculty, M.V. Lomonosov Moscow State University, 1 Leninskie Gory, Moscow, 119234, Russia.
Cell Mol Life Sci. 2015 Dec;72(23):4501-22. doi: 10.1007/s00018-015-2016-x. Epub 2015 Aug 19.
Arthropod venoms feature the presence of cytolytic peptides believed to act synergetically with neurotoxins to paralyze prey or deter aggressors. Many of them are linear, i.e., lack disulfide bonds. When isolated from the venom, or obtained by other means, these peptides exhibit common properties. They are cationic; being mostly disordered in aqueous solution, assume amphiphilic α-helical structure in contact with lipid membranes; and exhibit general cytotoxicity, including antifungal, antimicrobial, hemolytic, and anticancer activities. To suit the pharmacological needs, the activity spectrum of these peptides should be modified by rational engineering. As an example, we provide a detailed review on latarcins (Ltc), linear cytolytic peptides from Lachesana tarabaevi spider venom. Diverse experimental and computational techniques were used to investigate the spatial structure of Ltc in membrane-mimicking environments and their effects on model lipid bilayers. The antibacterial activity of Ltc was studied against a panel of Gram-negative and Gram-positive bacteria. In addition, the action of Ltc on erythrocytes and cancer cells was investigated in detail with confocal laser scanning microscopy. In the present review, we give a critical account of the progress in the research of Ltc. We explore the relationship between Ltc structure and their biological activity and derive molecular characteristics, which can be used for optimization of other linear peptides. Current applications of Ltc and prospective use of similar membrane-active peptides are outlined.
节肢动物毒液的特点是存在细胞溶解肽,据信这些肽与神经毒素协同作用,使猎物麻痹或抵御攻击者。其中许多是线性的,即缺乏二硫键。当从毒液中分离或通过其他方式获得时,这些肽表现出共同的特性。它们是阳离子性的;在水溶液中大多无序,与脂质膜接触时呈现两亲性α螺旋结构;并表现出一般的细胞毒性,包括抗真菌、抗菌、溶血和抗癌活性。为了满足药理学需求,应通过合理设计来改变这些肽的活性谱。作为一个例子,我们对来自塔拉比耶夫狼蛛毒液的线性细胞溶解肽——拉塔辛(Ltc)进行了详细综述。我们使用了多种实验和计算技术来研究Ltc在模拟膜环境中的空间结构及其对模型脂质双层的影响。研究了Ltc对一组革兰氏阴性菌和革兰氏阳性菌的抗菌活性。此外,还利用共聚焦激光扫描显微镜详细研究了Ltc对红细胞和癌细胞的作用。在本综述中,我们对Ltc的研究进展进行了批判性总结。我们探讨了Ltc结构与其生物活性之间的关系,并得出了可用于优化其他线性肽的分子特征。概述了Ltc的当前应用以及类似膜活性肽的潜在用途。