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- 详细信息
- 文献和实验
- 技术资料
- 服务名称:
大肠杆菌系统重组蛋白表达
- 提供商:
普健生物(武汉)科技有限公司
Uniprot号:P25058
基因名:Capsid protein p24
蛋白名:Capsid protein p24
蛋白别名:
CA, Capsid protein p24, Gag polyprotein, MA, Matrix protein p15, Nucleocapsid protein p12-gag, gag
服务内容:
| 服务项目 | 客户提供 | 服务内容 | 服务周期 | 交付内容 |
|---|---|---|---|---|
| 大肠杆菌系统 蛋白表达 | 基因序列 | 方案沟通 | 1天 | 方案报告 |
| 密码子优化和基因合成 | 5天 | 基因合成报告 | ||
| 表达纯化测试 | 3天 | 表达纯化测试报告 | ||
| 1L表达及纯化 | 3天 | 蛋白样品(3-5mg)及报告 | ||
| 放大发酵及纯化 | 7天 | 纯化的蛋白及报告 |
案例展示:

Capsid protein p24相关研究文献:
1. Molecular cloning and sequencing of an Australian isolate of proviral bovine leukaemia virus DNA: comparison with other isolates. [2167927]
2. Identification of a potential protease-coding gene in the genomes of bovine leukemia and human T-cell leukemia viruses. [6094258]
3. Analysis of bovine leukemia virus gag membrane targeting and late domain function. [12134053]
4. Bovine leukemia virus nucleocapsid protein is an efficient nucleic acid chaperone. [25686502]
5. The solution structure of the bovine leukaemia virus matrix protein and similarity with lentiviral matrix proteins. [8670827]
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文献和实验2. Identification of a potential protease-coding gene in the genomes of bovine leukemia and human T-cell leukemia viruses. [6094258]
3. Analysis of bovine leukemia virus gag membrane targeting and late domain function. [12134053]
4. Bovine leukemia virus nucleocapsid protein is an efficient nucleic acid chaperone. [25686502]
5. The solution structure of the bovine leukaemia virus matrix protein and similarity with lentiviral matrix proteins. [8670827]
Bovine Leukemia Virus Ribozymes
Bovine leukemia virus (BLV) is a retrovirus structurally related to human T-cell leukemia virus-I and -II and simian T-cell leukemia virus. It infects principally B-lymphocytes (1 ), causing a persistent expansion of B-cells, termed
Construction of Capsid-Modified Recombinant Bovine Adenovirus Type 3
Adenoviruses have become a popular vehicle for gene transfer into animal and human cells. However, wide prevalence of preexisting immunity to human adenovirus (HAdV) and the promiscuous nature of the virus have made the use of nonhuman
Tobacco Mosaic Virus Capsid Protein as Targets for the Self-Assembly of Gold Nanoparticles
of naturally evolved systems to produce highly organized assemblies of small molecules and nanoparticles. Here we describe a method whereby arginine residues on a viral coat protein (Tobacco Mosaic Virus) are targeted by bis(p -sulfonatophenyl)phenylphosphine
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