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基于噬菌体 N15 的载体在细菌和哺乳动物细胞中的基因克隆和表达。

Phage N15-Based Vectors for Gene Cloning and Expression in Bacteria and Mammalian Cells.

机构信息

School of Science, Monash University Malaysia, Bandar Sunway, 47500 Subang Jaya, Selangor Darul Ehsan, Malaysia.

School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, 21 Nanyang Link, Singapore 637371.

出版信息

ACS Synth Biol. 2023 Apr 21;12(4):909-921. doi: 10.1021/acssynbio.2c00580. Epub 2023 Apr 6.

DOI:10.1021/acssynbio.2c00580
PMID:37026178
Abstract

Bacteriophage N15 is the first virus known to deliver linear prophage into During its lysogenic cycle, N15 protelomerase (TelN) resolves its telomerase occupancy site () into hairpin telomeres. This protects the N15 prophage from bacterial exonuclease degradation, enabling it to stably replicate as a linear plasmid in . Interestingly, purely proteinaceous TelN can retain phage DNA linearization and hairpin formation without involving host- or phage-derived intermediates or cofactors in the heterologous environment. This unique feature has led to the advent of synthetic linear DNA vector systems derived from the TelN- module for the genetic engineering of bacterial and mammalian cells. This review will focus on the development and advantages of N15-based novel cloning and expression vectors in the bacterial and mammalian environments. To date, N15 is the most widely exploited molecular tool for the development of linear vector systems, especially the production of therapeutically useful miniDNA vectors without a bacterial backbone. Compared to typical circular plasmids, linear N15-based plasmids display remarkable cloning fidelity in propagating unstable repetitive DNA sequences and large genomic fragments. Additionally, TelN-linearized vectors with the relevant origin of replication can replicate extrachromosomally and retain transgenes functionality in bacterial and mammalian cells without compromising host cell viability. Currently, this DNA linearization system has shown robust results in the development of gene delivery vehicles, DNA vaccines and engineering mammalian cells against infectious diseases or cancers, highlighting its multifaceted importance in genetic studies and gene medicine.

摘要

噬菌 N15 是已知的首个将线性前噬菌体递送入宿主细胞的病毒。在其溶原周期内,N15 端粒酶(TelN)将其端粒酶占据位点()解析成发夹状端粒。这保护了 N15 前噬菌体免受细菌核酸外切酶的降解,使其能够作为线性质粒在宿主细胞中稳定复制。有趣的是,纯粹的蛋白质 TelN 可以在异源环境中保留噬菌体 DNA 的线性化和发夹形成,而不涉及宿主或噬菌体衍生的中间产物或辅助因子。这种独特的特性导致了基于 TelN-模块的合成线性 DNA 载体系统的出现,用于细菌和哺乳动物细胞的基因工程。本综述将重点介绍基于 N15 的新型克隆和表达载体在细菌和哺乳动物环境中的发展和优势。迄今为止,N15 是开发线性载体系统最广泛应用的分子工具,特别是用于生产无细菌骨架的治疗性有用 miniDNA 载体。与典型的环状质粒相比,基于线性 N15 的质粒在复制不稳定的重复 DNA 序列和大片段基因组方面表现出出色的克隆保真度。此外,带有相关复制起点的 TelN 线性化载体可以在细菌和哺乳动物细胞中进行染色体外复制,并保留转基因的功能,而不会影响宿主细胞的活力。目前,该 DNA 线性化系统在基因传递载体、DNA 疫苗和针对传染病或癌症的工程化哺乳动物细胞的开发中显示出强大的效果,突出了其在遗传研究和基因医学中的多方面重要性。

相似文献

1
Phage N15-Based Vectors for Gene Cloning and Expression in Bacteria and Mammalian Cells.基于噬菌体 N15 的载体在细菌和哺乳动物细胞中的基因克隆和表达。
ACS Synth Biol. 2023 Apr 21;12(4):909-921. doi: 10.1021/acssynbio.2c00580. Epub 2023 Apr 6.
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Phage N15 protelomerase resolves its tos recognition site into hairpin telomeres within mammalian cells.噬菌体N15端粒酶在哺乳动物细胞内将其tos识别位点解析为发夹状端粒。
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A Self-Replicating Linear DNA.一种自我复制的线性DNA。
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The protelomerase of the phage-plasmid N15 is responsible for its maintenance in linear form.噬菌体质粒N15的端粒酶负责将其维持在线性形式。
J Mol Biol. 2001 Oct 5;312(5):899-906. doi: 10.1006/jmbi.2001.5019.
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Phage N15 telomere resolution. Target requirements for recognition and processing by the protelomerase.噬菌体N15端粒解析。原端粒酶识别和加工的靶标要求。
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Conversion of linear DNA with hairpin telomeres into a circular molecule in the course of phage N15 lytic replication.在噬菌体N15裂解复制过程中,带有发夹端粒的线性DNA转化为环状分子。
J Mol Biol. 2009 Aug 14;391(2):261-8. doi: 10.1016/j.jmb.2009.06.021. Epub 2009 Jun 10.
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The protelomerase of temperate Escherichia coli phage N15 has cleaving-joining activity.温和型大肠杆菌噬菌体N15的原端粒酶具有切割连接活性。
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Bidirectional replication from an internal ori site of the linear N15 plasmid prophage.来自线性N15质粒原噬菌体内部ori位点的双向复制。
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[Expression regulation of the protelomerase gene of the bacteriophage N15].[噬菌体N15原端粒酶基因的表达调控]
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Recombineering linear DNA that replicate stably in E. coli.在大肠杆菌中稳定复制的重组线性DNA。
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引用本文的文献

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Bacteriophages and their unique components provide limitless resources for exploitation.噬菌体及其独特的组成部分提供了无限的可利用资源。
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