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抗癌α-螺旋肽及其与肿瘤细胞膜相互作用的结构/功能关系。

Anticancer alpha-helical peptides and structure/function relationships underpinning their interactions with tumour cell membranes.

作者信息

Dennison Sarah R, Whittaker Michelle, Harris Frederick, Phoenix David A

机构信息

Faculty of Science, Department of Forensic and Investigative Science, University of Central Lancashire, Preston, PR1 2HE, UK.

出版信息

Curr Protein Pept Sci. 2006 Dec;7(6):487-99. doi: 10.2174/138920306779025611.

Abstract

Cancer is a major cause of premature death and there is an urgent need for new anticancer agents with novel mechanisms of action. Here we review recent studies on a group of peptides that show much promise in this regard, exemplified by arthropod cecropins and amphibian magainins and aureins. These molecules are alpha-helical defence peptides, which show potent anticancer activity (alpha-ACPs) in addition to their established roles as antimicrobial factors and modulators of innate immune systems. Generally, alpha-ACPs exhibit selectivity for cancer and microbial cells primarily due to their elevated levels of negative membrane surface charge as compared to non-cancerous eukaryotic cells. The anticancer activity of alpha-ACPs normally occurs at micromolar levels but is not accompanied by significant levels of haemolysis or toxicity to other mammalian cells. Structure/function studies have established that architectural features of alpha-ACPs such as amphiphilicty levels and hydrophobic arc size are of major importance to the ability of these peptides to invade cancer cell membranes. In the vast majority of cases the mechanisms underlying such killing involves disruption of mitochondrial membrane integrity and/or that of the plasma membrane of the target tumour cells. Moreover, these mechanisms do not appear to proceed via receptor-mediated routes but are thought to be effected in most cases by the carpet/toroidal pore model and variants. Usually, these membrane interactions lead to loss of membrane integrity and cell death utilising apoptic and necrotic pathways. It is concluded that that alpha-ACPs are major contenders in the search for new anticancer drugs, underlined by the fact that a number of these peptides have been patented in this capacity.

摘要

癌症是导致过早死亡的主要原因,因此迫切需要具有新型作用机制的新型抗癌药物。在此,我们综述了近期对一组在这方面颇具潜力的肽的研究,以节肢动物杀菌肽、两栖动物蛙皮素和 aureins 为例。这些分子是α-螺旋防御肽,除了作为抗菌因子和先天免疫系统调节剂的既定作用外,还表现出强大的抗癌活性(α-ACP)。一般来说,α-ACP 对癌细胞和微生物细胞具有选择性,主要是因为与非癌真核细胞相比,它们的膜表面负电荷水平较高。α-ACP 的抗癌活性通常在微摩尔水平出现,但不会对其他哺乳动物细胞造成显著水平的溶血或毒性。结构/功能研究表明,α-ACP 的结构特征,如两亲性水平和疏水弧大小,对于这些肽侵入癌细胞膜的能力至关重要。在绝大多数情况下,这种杀伤的潜在机制涉及线粒体膜完整性和/或靶肿瘤细胞质膜完整性的破坏。此外,这些机制似乎不是通过受体介导的途径进行的,而是在大多数情况下被认为是通过地毯/环形孔模型及其变体实现的。通常,这些膜相互作用会导致膜完整性丧失,并利用凋亡和坏死途径导致细胞死亡。得出的结论是,α-ACP 是寻找新型抗癌药物的主要竞争者,许多此类肽已以此身份获得专利这一事实突出了这一点。

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