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七肽重复序列中“a”和“d”位置的异亮氨酸/亮氨酸残基对于一种短抗癌溶细胞肽的溶细胞活性至关重要。

Isoleucine/leucine residues at "a" and "d" positions of a heptad repeat sequence are crucial for the cytolytic activity of a short anticancer lytic peptide.

作者信息

Fan Ruru, Yuan Yanyan, Zhang Qiang, Zhou Xi-Rui, Jia Lili, Liu Zhuqing, Yu Changyuan, Luo Shi-Zhong, Chen Long

机构信息

Beijing Key Laboratory of Bioprocess, College of Life Science and Technology, Beijing University of Chemical Technology, Beijing, 100029, People's Republic of China.

出版信息

Amino Acids. 2017 Jan;49(1):193-202. doi: 10.1007/s00726-016-2350-9. Epub 2016 Oct 24.

DOI:10.1007/s00726-016-2350-9
PMID:27778166
Abstract

Many lytic peptides contain a heptad sequence with leucine or isoleucine residues at "a" and "d" positions. However, their roles in the peptide-induced cytolytic process remain unclear. We have recently reported an anticancer lytic peptide ZXR-2 (FKIGGFIKKLWRSLLA), which contains a shortened zipper-like sequence with Ile/Leu at "a" and "d" positions. To understand the roles of these Ile/Leu residues, a series of analogs were constructed by sequentially replacing the Ile or Leu residue with alanine (Ala). Significant reduction of the cytolytic activity was observed when the Ile (3rd and 7th) and Leu (10th and 14th) residues at the "a" and "d" positions were substituted, while the replacement of the separate Leu (15th) residue had less effect. Based on the quenching of the intrinsic fluorescence of the peptides and their induced surface pressure changes of lipid monolayer, it was conjectured that the peptide ZXR-2 might insert into cell membranes from the C-terminal and to a depth of the W position. Accordingly, I, I, and L residues which mainly exposed in aqueous solution were more responsible for the peptide self-association on cell membranes, while L, together with L, might help peptide insert and anchor to cell membranes. These results are significant to elucidate the crucial roles of such Ile/Leu residues at "a" and "d" positions in peptide-peptide and peptide-membrane interactions to exert the membrane disruption activity of lytic peptides. With further understanding about the structure-activity relationship of lytic peptides, it would be helpful for designing novel anticancer lytic peptides.

摘要

许多溶细胞肽含有一个七肽序列,在“a”和“d”位置有亮氨酸或异亮氨酸残基。然而,它们在肽诱导的细胞溶解过程中的作用仍不清楚。我们最近报道了一种抗癌溶细胞肽ZXR-2(FKIGGFIKKLWRSLLA),它含有一个缩短的拉链样序列,在“a”和“d”位置有异亮氨酸/亮氨酸。为了了解这些异亮氨酸/亮氨酸残基的作用,通过将异亮氨酸或亮氨酸残基依次替换为丙氨酸(Ala)构建了一系列类似物。当“a”和“d”位置的异亮氨酸(第3和第7位)和亮氨酸(第10和第14位)残基被取代时,观察到细胞溶解活性显著降低,而单独替换亮氨酸(第15位)残基的影响较小。基于肽的内在荧光猝灭及其诱导的脂质单层表面压力变化,推测肽ZXR-2可能从C端插入细胞膜,深度为W位置。因此,主要暴露在水溶液中的I、I和L残基对肽在细胞膜上的自缔合更负责,而L与L一起可能有助于肽插入并锚定到细胞膜上。这些结果对于阐明“a”和“d”位置的异亮氨酸/亮氨酸残基在肽-肽和肽-膜相互作用中发挥溶细胞肽膜破坏活性的关键作用具有重要意义。随着对溶细胞肽结构-活性关系的进一步了解,将有助于设计新型抗癌溶细胞肽。

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