首页> 外文期刊>Journal of molecular medicine: Official organ of the "Gesellschaft Deutscher Naturforscher und Arzte." >Mammalian cell transduction and internalization properties of lambda phages displaying the full-length adenoviral penton base or its central domain.
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Mammalian cell transduction and internalization properties of lambda phages displaying the full-length adenoviral penton base or its central domain.

机译:展示全长腺病毒五聚体碱基或其中心结构域的λ噬菌体的哺乳动物细胞转导和内在化特性。

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In recent years a strong effort has been devoted to the search for new, safe and efficient gene therapy vectors. Phage lambda is a promising backbone for the development of new vectors: its genome can host large inserts, DNA is protected from degradation by the capsid and the ligand-exposed D and V proteins can be extensively modified. Current phage-based vectors are inefficient and/or receptor-independent transducers. To produce new, receptor-selective and transduction-efficient vectors for mammalian cells we engineered lambda by inserting into its genome a GFP expression cassette, and by displaying the penton base (Pb) of adenovirus or its central region (amino acids 286-393). The Pb mediates attachment, entry and endosomal escape of adenovirus in mammalian cells, and its central region (amino acids 286-393) includes the principal receptor-binding motif ((340)RGD(342)). Both the phage chimerae lambda Pb and lambda Pb (286-393) were able to transduce cell lines and primary cultures of human fibroblasts. Competition experiments showed that the transduction pathway was receptor-dependent. We also describe the different trafficking properties of lambda Pb and lambda Pb (286-393). Bafilomycin, which blocks endosome maturation, influenced the intracellular distribution of lambda Pb (286-393), but not that of lambda Pb. The proteasome inhibitor MG-132 improved the efficiency of lambda Pb (286-393)-mediated transduction, but not that of lambda Pb. In summary, this work shows the feasibility of using lambda phage as an efficient vector for gene transfer into mammalian cells. We show that lambda Pb and lambda Pb (286-393) can both mediate receptor-dependent transduction; while only lambda Pb is able to promote endosomal escape and proteasome resistance of phage particles.
机译:近年来,致力于寻找新的,安全的和有效的基因治疗载体。噬菌体λ是开发新载体的有前途的骨架:其基因组可容纳大量插入片段,衣壳可保护DNA免受降解,并可广泛修饰配体暴露的D和V蛋白。当前的基于噬菌体的载体是低效率的和/或受体独立的换能器。为了生产用于哺乳动物细胞的新的,具有受体选择性和转导效率的载体,我们通过将lambda插入GFP表达盒并显示腺病毒的戊烯碱基(Pb)或其中心区域(氨基酸286-393)来工程化lambda 。 Pb介导腺病毒在哺乳动物细胞中的附着,进入和内体逸出,其中心区域(氨基酸286-393)包括主要的受体结合基序((340)RGD(342))。嵌合噬菌体λPb和λPb(286-393)都能够转导人成纤维细胞的细胞系和原代培养物。竞争实验表明,该转导途径是受体依赖性的。我们还描述了Lambda Pb和Lambda Pb(286-393)的不同贩运性质。阻断内体成熟的巴氟霉素影响λPb(286-393)的细胞内分布,但不影响λPb的细胞内分布。蛋白酶体抑制剂MG-132提高了Lambda Pb(286-393)介导的转导效率,但没有提高Lambda Pb的转导效率。总而言之,这项工作表明了使用λ噬菌体作为将基因转移到哺乳动物细胞中的有效载体的可行性。我们显示lambda Pb和lambda Pb(286-393)都可以介导受体依赖性转导。而只有λPb能够促进内体逃逸和噬菌体颗粒的蛋白酶体抗性。

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