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脂质与DNA相互作用的表征。I. 结合脂质的去稳定作用及DNA解离

Characterization of lipid DNA interactions. I. Destabilization of bound lipids and DNA dissociation.

作者信息

Harvie P, Wong F M, Bally M B

机构信息

Division of Medical Oncology, Department of Advanced Therapeutics, British Columbia Cancer Agency, Vancouver, British Columbia V5Z 4E6, Canada.

出版信息

Biophys J. 1998 Aug;75(2):1040-51. doi: 10.1016/S0006-3495(98)77593-9.

Abstract

We have recently described a method for preparing lipid-based DNA particles (LDPs) that form spontaneously when detergent-solubilized cationic lipids are mixed with DNA. LDPs have the potential to be developed as carriers for use in gene therapy. More importantly, the lipid-DNA interactions that give rise to particle formation can be studied to gain a better understanding of factors that govern lipid binding and lipid dissociation. In this study the stability of lipid-DNA interactions was evaluated by measurement of DNA protection (binding of the DNA intercalating dye TO-PRO-1 and sensitivity to DNase I) and membrane destabilization (lipid mixing reactions measured by fluorescence resonance energy transfer techniques) after the addition of anionic liposomes. Lipid-based DNA transfer systems were prepared with pInexCAT v.2.0, a 4.49-kb plasmid expression vector that contains the marker gene for chloramphenicol acetyltransferase (CAT). LDPs were prepared using N-N-dioleoyl-N,N-dimethylammonium chloride (DODAC) and either 1, 2-dioleoyl-sn-glycero-3-phosphocholine (DOPC) or 1, 2-dioleoyl-sn-glycero-3-phosphoethanolamine (DOPE). For comparison, liposome/DNA aggregates (LDAs) were also prepared by using preformed DODAC/DOPE (1:1 mole ratio) and DODAC/DOPC (1:1 mole ratio) liposomes. The addition of anionic liposomes to the lipid-based DNA formulations initiated rapid membrane destabilization as measured by the resonance energy transfer lipid-mixing assay. It is suggested that lipid mixing is a reflection of processes (contact, dehydration, packing defects) that lead to formulation disassembly and DNA release. This destabilization reaction was associated with an increase in DNA sensitivity to DNase I, and anionic membrane-mediated destabilization was not dependent on the incorporation of DOPE. These results are interpreted in terms of factors that regulate the disassembly of lipid-based DNA formulations.

摘要

我们最近描述了一种制备脂质基DNA颗粒(LDPs)的方法,当去污剂溶解的阳离子脂质与DNA混合时,LDPs会自发形成。LDPs有潜力被开发为基因治疗的载体。更重要的是,可以研究导致颗粒形成的脂质-DNA相互作用,以更好地理解控制脂质结合和脂质解离的因素。在本研究中,通过测量添加阴离子脂质体后DNA的保护作用(DNA嵌入染料TO-PRO-1的结合和对DNase I的敏感性)和膜去稳定化(通过荧光共振能量转移技术测量的脂质混合反应)来评估脂质-DNA相互作用的稳定性。脂质基DNA转移系统是用pInexCAT v.2.0制备的,pInexCAT v.2.0是一种4.49 kb的质粒表达载体,含有氯霉素乙酰转移酶(CAT)的标记基因。使用N-N-二油酰-N,N-二甲基氯化铵(DODAC)和1,2-二油酰-sn-甘油-3-磷酸胆碱(DOPC)或1,2-二油酰-sn-甘油-3-磷酸乙醇胺(DOPE)制备LDPs。为了进行比较,还使用预先形成的DODAC/DOPE(1:1摩尔比)和DODAC/DOPC(1:1摩尔比)脂质体制备了脂质体/DNA聚集体(LDAs)。通过共振能量转移脂质混合测定法测量,向脂质基DNA制剂中添加阴离子脂质体引发了快速的膜去稳定化。有人认为脂质混合反映了导致制剂解体和DNA释放的过程(接触、脱水、堆积缺陷)。这种去稳定化反应与DNA对DNase I的敏感性增加有关,并且阴离子膜介导的去稳定化不依赖于DOPE的掺入。这些结果根据调节脂质基DNA制剂解体的因素进行了解释。

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