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无辅助依赖性和第一代 HAdV5 载体具有相似的机械特性和共同的转导机制。

Gutless Helper-Dependent and First-Generation HAdV5 Vectors Have Similar Mechanical Properties and Common Transduction Mechanisms.

机构信息

Department of Molecular Life Sciences, University of Zürich, Zürich, Switzerland.

Department of Biochemistry, University of Zürich, Zürich, Switzerland.

出版信息

Hum Gene Ther. 2024 Mar;35(5-6):163-176. doi: 10.1089/hum.2023.221.

Abstract

Delivering vectorized information into cells with the help of viruses has been of high interest to fundamental and applied science, and bears significant therapeutic promise. Human adenoviruses (HAdVs) have been at the forefront of gene delivery for many years, and the subject of intensive development resulting in several generations of agents, including replication-competent, -defective or retargeted vectors, and recently also helper-dependent (HD), so-called gutless vectors lacking any viral protein coding information. While it is possible to produce HD-AdVs in significant amounts, physical properties of these virus-like particles and their efficiency of transduction have not been addressed. Here, we used single-cell and single virus particle assays to probe the effect of genome length on HAdV-C5 vector transduction. Our results demonstrate that first-generation C5 vectors lacking the E1/E3 regions of the viral genome as well as HD-AdV-C5 particles with a wild type (wt) ∼36 kbp or an undersized double-strand DNA genome are similar to human adenovirus C5 (HAdV-C5) wt regarding attachment to human lung epithelial cells, endocytic uptake, endosome penetration and dependency on the E3 RING ubiquitin ligase Mind Bomb 1 for DNA uncoating at the nuclear pore complex. Atomic force microscopy measurements of single virus particles indicated that small changes in the genome length from 94% to 103% of HAdV-C5 have no major impact on physical and mechanical features of AdV vectors. In contrast, an HD-AdV-C5 with ∼30 kbp genome was slightly stiffer and less heat-resistant than the other particles, despite comparable entry and transduction efficiencies in tissue culture cell lines, including murine alveolar macrophage-like Max-Planck-Institute (MPI)-2 cells. Together, our studies reinforce the use of HD-AdV vectors for effective single round gene delivery. The results illustrate how physical properties and cell entry behavior of single virus particles can provide functional information for anticipated therapeutic vector applications.

摘要

利用病毒将向量信息递送到细胞中一直是基础科学和应用科学的研究热点,并且具有重要的治疗前景。人类腺病毒(HAdV)多年来一直处于基因传递的前沿,经过密集开发,已经产生了几代载体,包括复制型、缺陷型或重定向载体,以及最近的辅助依赖型(HD),即缺乏任何病毒蛋白编码信息的无蛋白载体。虽然可以大量生产 HD-AdV,但这些病毒样颗粒的物理性质及其转导效率尚未得到解决。在这里,我们使用单细胞和单个病毒颗粒分析来探究基因组长度对 HAdV-C5 载体转导的影响。我们的结果表明,第一代缺乏病毒基因组 E1/E3 区的 C5 载体以及具有野生型(wt)约 36 kbp 或小尺寸双链 DNA 基因组的 HD-AdV-C5 颗粒与人类腺病毒 C5(HAdV-C5)wt 类似,在与人类肺上皮细胞的附着、内吞摄取、内体穿透以及对 E3 RING 泛素连接酶 Mind Bomb 1 对核孔复合物中 DNA 脱壳的依赖性方面。对单个病毒颗粒的原子力显微镜测量表明,基因组长度从 HAdV-C5 的 94%到 103%的小变化对 AdV 载体的物理和机械特性没有重大影响。相比之下,尽管在组织培养细胞系中包括鼠肺泡巨噬细胞样 Max-Planck-Institute (MPI)-2 细胞中的进入和转导效率相当,但基因组约 30 kbp 的 HD-AdV-C5 颗粒稍硬且耐热性稍差。总之,我们的研究加强了使用 HD-AdV 载体进行有效单次基因传递的应用。这些结果说明了单个病毒颗粒的物理性质和细胞进入行为如何为预期的治疗性载体应用提供功能信息。

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