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C端与N端连接的蜂毒肽-聚乙烯亚胺缀合物:连接位点对DNA多聚体的活性有强烈影响。

C- versus N-terminally linked melittin-polyethylenimine conjugates: the site of linkage strongly influences activity of DNA polyplexes.

作者信息

Boeckle Sabine, Wagner Ernst, Ogris Manfred

机构信息

Pharmaceutical Biology-Biotechnology, Department of Pharmacy, Ludwig-Maximilians-Universität, Butenandtstr. 5-13, D-81377 Munich, Germany.

出版信息

J Gene Med. 2005 Oct;7(10):1335-47. doi: 10.1002/jgm.783.

Abstract

BACKGROUND

One major barrier limiting the transfection efficiency of polyplexes is poor endosomal release, especially when small particles are applied. In an approach to overcome this barrier, covalent attachment of the membrane-active peptide all-(L)-melittin to polyethylenimine (PEI) polyplexes was found to enhance gene transfer efficiency.

METHODS

The N-terminus of natural all-(L)- or non-immunogenic all-(D)-melittin was covalently coupled to PEI. In addition, two different all-(D)-melittin conjugates were synthesized, with PEI covalently attached to either the C-terminus (C-mel-PEI) or the N-terminus of melittin (N-mel-PEI). Melittin-PEI polyplexes with particle sizes < 150 nm were generated in HEPES-buffered glucose and tested in transfection experiments. The membrane lytic activities of conjugates and polyplexes were analyzed at neutral and endosomal pH.

RESULTS

All-(D)-melittin conjugates mediated enhanced gene expression similar to the natural all-(L)-stereoisomer, with up to 160-fold higher luciferase activity than unmodified PEI. The site of melittin linkage strongly influenced the membrane-destabilizing activities of both conjugates and polyplexes. C-mel-PEI was highly lytic at neutral pH and therefore elevated doses of C-mel-PEI polyplexes induced high toxicity. In contrast, N-mel-PEI was less lytic at neutral pH but retained higher lytic activity than C-mel-PEI at endosomal pH. This apparently promoted better endosomal release of N-mel-PEI polyplexes resulting in efficient gene delivery in different cell lines.

CONCLUSIONS

The high potency of C-mel-PEI to destabilize membranes at neutral pH is presumably due to a reported destabilization mechanism proceeding through membrane insertion of the peptide. In contrast, N-mel-PEI is supposed to induce lysis by insertion-independent pore formation according to the toroidal pore model.

摘要

背景

限制多聚体转染效率的一个主要障碍是内体释放不佳,尤其是当使用小颗粒时。为了克服这一障碍,人们发现将膜活性肽全(L)蜂毒素共价连接到聚乙烯亚胺(PEI)多聚体上可提高基因转移效率。

方法

将天然全(L)或非免疫原性全(D)蜂毒素的N端共价偶联到PEI上。此外,还合成了两种不同的全(D)蜂毒素偶联物,PEI分别共价连接到蜂毒素的C端(C-mel-PEI)或N端(N-mel-PEI)。在HEPES缓冲的葡萄糖中制备粒径<150nm的蜂毒素-PEI多聚体,并在转染实验中进行测试。在中性和内体pH值下分析偶联物和多聚体的膜溶解活性。

结果

全(D)蜂毒素偶联物介导的基因表达增强,类似于天然全(L)立体异构体,荧光素酶活性比未修饰的PEI高160倍。蜂毒素连接位点强烈影响偶联物和多聚体的膜去稳定活性。C-mel-PEI在中性pH值下具有高度溶解性,因此高剂量的C-mel-PEI多聚体诱导高毒性。相比之下,N-mel-PEI在中性pH值下溶解性较低,但在内体pH值下比C-mel-PEI保留更高的溶解活性。这显然促进了N-mel-PEI多聚体更好的内体释放,从而在不同细胞系中实现高效的基因传递。

结论

C-mel-PEI在中性pH值下使膜去稳定的高效力可能是由于报道的通过肽插入膜的去稳定机制。相比之下,根据环形孔模型,N-mel-PEI应该通过非插入依赖的孔形成来诱导裂解。

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