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首页> 外文期刊>American journal of molecular biology >Nanobody cDNA Mock-Up in pHEN6c Plasmid Vector: Live Out
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Nanobody cDNA Mock-Up in pHEN6c Plasmid Vector: Live Out

机译:在phen6c质粒载体中的纳米谱cDNA模拟:活出来

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摘要

Whenever there is no adequate DNA replication in vitro , there are alternatives strategies to insert a piece of DNA into a convenient replicon such as small plasmids and bacteriophages. These are called vectors or cloning vehicles. These days, there is a high demand to manufacture recombinant and nanobodies which are required in biomedical research and for therapeutic and diagnostic purposes. In order to do so, E. coli , insect cells, or mammalian cells have been used to express and purify protein for nanobody production. This paper explains the experimental trials on the cloning of the Nanobody cDNA mock-up in pHEN6c plasmid vector from the subcultured E. coli sample taken from the lab. The concentration and purity of DNA plasmid were evaluated by UV spectrophotometer and agarose gel electrophoresis following plasmid DNA Purification from E. coli by alkaline lysis. Based on this, the concentration of the isolated pHEN6c plasmid DNA was found 44.7 ng/μl or 0.0447 μg/μl. Whereas, the purity at absorbance (A260/A280) was 0.893/0.501 = 1.78. Moreover, its yield was 2.235 μg. In addition, its transformation efficiency was 21.68 μg/μl. On the other hand, the molecular weight of the Nanobody and vector were 569 and 2717 respectively. Generally, most of the protocols used to clone a fragment of DNA, might not work very well with PCR products.
机译:每当体外没有足够的DNA复制,就有替代品策略将一块DNA插入一种方便的复制子,例如小质粒和噬菌体。这些称为载体或克隆车辆。如今,需要制造生物医学研究和治疗和诊断目的所需的重组和纳米级的高要求。为此,已使用大肠杆菌,昆虫细胞或哺乳动物细胞来表达和纯化蛋白质以进行纳米抗体产生。本文解释了从实验室中取代的大肠杆菌样品克隆纳米体质粒载体中纳米谱cDNA模拟的实验试验。通过UV分光光度计和琼脂糖凝胶电泳评估DNA质粒的浓度和纯度在通过碱性裂解的质粒DNA纯化。基于此,发现分离的Phen6C质粒DNA的浓度44.7ng /μl或0.0447μg/μl。鉴于吸光度(A260 / A280)的纯度为0.893 / 0.501 = 1.78。此外,其产率为2.235μg。此外,其转化效率为21.68μg/μL。另一方面,纳米体和载体的分子量分别为569和2717。通常,用于克隆DNA片段的大多数方案可能与PCR产物非常合作。

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