首页> 美国卫生研究院文献>Journal of Virology >Gene Transduction and Cell Entry Pathway of Fiber-Modified Adenovirus Type 5 Vectors Carrying Novel Endocytic Peptide Ligands Selected on Human Tracheal Glandular Cells
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Gene Transduction and Cell Entry Pathway of Fiber-Modified Adenovirus Type 5 Vectors Carrying Novel Endocytic Peptide Ligands Selected on Human Tracheal Glandular Cells

机译:携带在人气管腺细胞上选择的新型内吞肽配体的纤维修饰的腺病毒5型载体的基因转导和细胞进入途径

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摘要

Monolayers of cystic fibrosis transmembrane conductance regulator (CFTR)-deficient human tracheal glandular cells (CF-KM4) were subjected to phage biopanning, and cell-internalized phages were isolated and sequenced, in order to identify CF-KM4-specific peptide ligands that would confer upon adenovirus type 5 (Ad5) vector a novel cell target specificity and/or higher efficiency of gene delivery into airway cells of patients with cystic fibrosis (CF). Three different ligands, corresponding to prototypes of the most represented families of phagotopes recovered from intracellular phages, were designed and individually inserted into Ad5-green fluorescent protein (GFP) (AdGFP) vectors at the extremities of short fiber shafts (seven repeats [R7]) terminated by scissile knobs. Only one vector, carrying the decapeptide GHPRQMSHVY (abbreviated as QM10), showed an enhanced gene transduction of CF-KM4 cells compared to control nonliganded vector with fibers of the same length (AdGFP-R7-knob). The enhancement in gene transfer efficiency was not specific to CF-KM4 cells but was observed in other mammalian cell lines tested. The QM10-liganded vector was referred to as AdGFP-QM10-knob in its knobbed version and as AdGFP-QM10 in its proteolytically deknobbed version. AdGFP-QM10 was found to transduce cells with a higher efficiency than its knob-bearing version, AdGFP-QM10-knob. Consistent with this, competition experiments indicated that the presence of knob domains was not an absolute requirement for cell attachment of the QM10-liganded vector and that the knobless AdGFP-QM10 used alternative cell-binding domains on its capsid, including penton base capsomer, via a site(s) different from its RGD motifs. The QM10-mediated effect on gene transduction seemed to take place at the step of endocytosis in both quantitative and qualitative manners. Virions of AdGFP-QM10 were endocytosed in higher numbers than virions of the control vector and were directed to a compartment different from the early endosomes targeted by members of species C Ad. AdGFP-QM10 was found to accumulate in late endosomal and low-pH compartments, suggesting that QM10 acted as an endocytic ligand of the lysosomal pathway. These results validated the concept of detargeting and retargeting Ad vectors via our deknobbing system and redirecting Ad vectors to an alternative endocytic pathway via a peptide ligand inserted in the fiber shaft domain.
机译:对单层囊性纤维化跨膜电导调节剂(CFTR)缺陷的人气管腺细胞(CF-KM4)进行噬菌体生物淘选,并对细胞内在的噬菌体进行分离和测序,以鉴定CF-KM4特异性肽配体赋予5型腺病毒(Ad5)载体以新颖的细胞靶点特异性和/或更高的基因向囊性纤维化(CF)患者气道细胞中传递基因的效率。设计了三种不同的配体,分别对应于从细胞内噬菌体中回收的最具代表性的噬菌体家族的原型,并分别将它们插入短纤维轴末端的Ad5-绿色荧光蛋白(GFP)(AdGFP)载体中(七个重复[R7]) )由可调节旋钮终止。与具有相同长度的纤维的对照非配体载体(AdGFP-R7-旋钮)相比,只有一种携带十肽GHPRQMSHVY(缩写为QM10)的载体显示出增强的CF-KM4细胞基因转导。基因转移效率的提高并非仅针对CF-KM4细胞,而是在其他测试的哺乳动物细胞系中观察到。 QM10配体的载体在其带节的形式中称为AdGFP-QM10-旋钮,在其蛋白水解解配位的形式中称为AdGFP-QM10。发现AdGFP-QM10转导细胞的效率高于带把手的AdGFP-QM10旋钮。与此相符的是,竞争实验表明,旋钮域的存在并不是QM10配体载体细胞附着的绝对要求,无旋钮的AdGFP-QM10通过其衣壳上的替代细胞结合域,包括五通碱基衣壳蛋白,通过与其RGD主题不同的网站。 QM10介导的基因转导作用似乎在内吞作用的阶段以定量和定性的方式发生。与对照载体的病毒颗粒相比,AdGFP-QM10的病毒颗粒被内吞的数量更高,并被定向到不同于C Ad物种所靶向的早期内体的区室。发现AdGFP-QM10积聚在晚期内体和低pH隔室中,表明QM10充当了溶酶体途径的内吞配体。这些结果验证了通过我们的脱钩系统对Ad载体进行脱靶和重新靶向的概念,以及通过插入纤维轴结构域中的肽配体将Ad载体重定向至另一种胞吞途径的概念。

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