首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Mitoparan and target-selective chimeric analogues: Membrane translocation and intracellular redistribution induces mitochondrial apoptosis.
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Mitoparan and target-selective chimeric analogues: Membrane translocation and intracellular redistribution induces mitochondrial apoptosis.

机译:线粒体和靶标选择性嵌合类似物:膜易位和细胞内重新分布诱导线粒体凋亡。

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摘要

Mastoparan, and structurally-related amphipathic peptides, may induce cell death by augmentation of necrotic and/or apoptotic pathways. To more precisely delineate cytotoxic mechanisms, we determined that [Lys(5,8)Aib(10)]mastoparan (mitoparan) specifically induces apoptosis of U373MG and ECV304 cells, as demonstrated by endonuclease and caspase-3 activation and phosphatidylserine translocation. Live cell imaging confirmed that, following translocation of the plasma membrane, mitoparan specifically co-localizes with mitochondria. Complementary studies indicated that mitoparan induces swelling and permeabilization of isolated mitochondria, through cooperation with a protein of the permeability transition pore complex VDAC, leading to the release of the apoptogenic factor, cytochrome c. N-terminal acylation of mitoparan facilitated the synthesis of chimeric peptides that incorporated target-specific address motifs including an integrin-specific RGD sequence and a Fas ligand mimetic. Significantly, these sychnologically-organised peptides demonstrated further enhanced cytotoxic potencies. We conclude that the cell penetrant, mitochondriotoxic and apoptogenic properties of mitoparan, and its chimeric analogues, offer new insights to the study and therapeutic induction of apoptosis.
机译:Mastoparan和与结构相关的两亲性肽可能通过增加坏死和/或凋亡途径来诱导细胞死亡。为了更精确地描述细胞毒性机制,我们确定[Lys(5,8)Aib(10)]乳香素(米托帕兰)可特异性诱导U373MG和ECV304细胞凋亡,这由内切核酸酶和caspase-3激活以及磷脂酰丝氨酸易位证明。活细胞成像证实,质膜易位后,米托普兰与线粒体共定位。补充研究表明,米托帕兰通过与通透性过渡孔复合物VDAC的蛋白协同作用,诱导分离的线粒体肿胀和通透,从而导致凋亡因子C的释放。米多巴兰的N末端酰化促进了嵌合肽的合成,该肽结合了靶标特异性的地址基序,包括整联蛋白特异性的RGD序列和Fas配体模拟物。显着地,这些在系统上组织的肽证明进一步增强了细胞毒性。我们得出结论,米多巴兰及其嵌合类似物的细胞渗透性,线粒体毒性和细胞凋亡特性,为细胞凋亡的研究和治疗诱导提供了新的见识。

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