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- 文献和实验
- 技术资料
- 保存条件:
常温,避光
- 克隆性:
单克隆
- 抗体名:
M13抗体
免疫原 :
M13 phage
抗体类型:
HRP conjugated Mouse Monoclonal Antibody
抗体宿主 :
Mouse IgG
缓冲液 :
0.2 μm filtered solution in PBS with 50% Glycerol
制备方法 :
This antibody was produced from a hybridoma resulting from the fusion of a mouse myeloma with B cells obtained from a mouse immunized with M13 phage. The IgG fraction of the cell culture supernatant was purified by Protein A affinity chromatography and then conjugated with Horseradish-peroxidase ( HRP ).
M13抗体Background
M13 is a filamentous bacteriophage composed of circular single stranded DNA (ssDNA) which is 6407 nucleotides long encapsulated in approximately 2700 copies of the major coat protein P8, and capped with 5 copies of two different minor coat proteins (P9, P6, P3) on the ends. Infection with filamentous phages is not lethal, however the infection causes turbid plaques in E. coli. It is a non-lytic virus. However a decrease in the rate of cell growth is seen in the infected cells. M13 plasmids are used for many recombinant DNA processes, and the virus has also been studied for its uses in nanostructures and nanotechnology. The phage coat is primarily assembled from a 50 amino acid protein called pVIII (or p8), which is encoded by gene VIII (or g8) in the phage genome. For a wild type M13 particle, it takes about approximately 2700 copies of p8 to make the coat about 900 nm long. The coat's dimensions are flexible though and the number of p8 copies adjusts to accommodate the size of the single stranded genome it packages. The general stages to a viral life cycle are: infection, replication of the viral genome, assembly of new viral particles and then release of the progeny particles from the host. Filamentous phage use a bacterial structure known as the F pilus to infect E. coli, with the M13 p3 tip contacting the TolA protein on the bacterial pilus. The phage genome is then transferred to the cytoplasm of the bacterial cell where resident proteins convert the single stranded DNA genome to a double stranded replicative form.
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文献和实验抗体的结构决定了其对应的功能,同一抗体的V区和C区的氨基酸组成和顺序不同,决定了其功能上的差异。V区和C区的组成和结构,决定了抗体的生物学功能。 图1:抗体的主要功能(图片来源:Abbas et al: Cellular and Molecular Immunology, 7e.) 1、特异性识别功能 抗体可以通过其结构上的可变区域与抗原结合,同时,具有极高的特异性。这种特异性识别功能可以使抗体识别和结合到感染的病原体,肿瘤细胞等不同种类的分子,帮助免疫系统识别并定位到这些分子,进而启动
The sequencing of DNA has undergone rapid improvement since the introduction of the chain-termination DNA sequencing method (1 ) and the construction of convenient single-stranded DNA cloning vectors, such as the bacteriophage M13 cloning
The bacteriophage M13 has been developed into a cloning vector system for obtaining single-stranded DNA template required for the dideoxy chain termination method of sequencing DNA (1 ,2 ). General aspects of bacteriophage M13 as a cloning
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