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当前位置: 首页 > 产品中心 > vector > Oxford Genetics/pSF-OXB17 (OG560) Strong Bacterial Promoter Vector/OG560/1 Ea
商品详细Oxford Genetics/pSF-OXB17 (OG560) Strong Bacterial Promoter Vector/OG560/1 Ea
Oxford Genetics/pSF-OXB17 (OG560) Strong Bacterial Promoter Vector/OG560/1 Ea
Oxford Genetics/pSF-OXB17 (OG560) Strong Bacterial Promoter Vector/OG560/1 Ea
商品编号: OG560
品牌: oxgene
市场价: ¥5033.80
美元价: 3020.28
产地: 美国(厂家直采)
公司:
产品分类: 载体
公司分类: vector
联系Q Q: 3392242852
电话号码: 4000-520-616
电子邮箱: info@ebiomall.com
商品介绍

Plasmid Info:

Plasmid Information

Product Name: pSF-OXB17

Product Code: OG560

Size (bp): 3858 bp

Bacterial Antibiotic Selection: KanR

Origin and Compatibility: pUC high copy derived from pBR322

Bacterial Copy Number: 500-700 per cell

Promoter: OXB17 bacterial promoter

Plasmid Purpose:

This is a strong prokaryotic promoter for the production of proteins in E.coli. It was created by modifiying the RecA E.coli promoter to remove the LexA repressor site followed by random mutagensis to reduce expression. In our range of non-inducible promoters this is one of the strongest. Only OXB18 OXB19 and OXB20 are stronger whilst OXB1-OXB16 are weaker.

Promoter Expression Level:

This plasmid contains a very strong constitutive E.coli promoter that was derived from the RecA promoter by random mutagenesis. It is part of our constitutive bacterial promoter range. This promoter (OXB17) shows the very high levels of expression in the range with OXB1 showing the lowest level and OXB20 showing the highest level of expression. They require no inducing agent for expression.

Sequence and Map:

Other Info:

Transcription Termination:

This plasmid contains three alternative transcription terminators for mammalian bacterial and bacteriophage (T7) expression. This means that only the promoter needs to be changed to alter the expression system you are using. We sell multiple promoters that can be used in each of these systems. The presence of each terminator does not reduce expression in the alternative systems.

Cloning:

Cloning in a Gene:

This plasmid has been designed to be compatible with a range of cloning techniques. The multiple cloning site contains a range of standard commonly used restriction sites for cloning. Using these sites genes can be inserted using standard cloning methods with DNA ligase. Other methods such as ligase independent cloning (LIC) Gibson Assembly InFusionHD or Seamless GeneArt can also be used and because all of our plasmids are based on the same backbone the same method can be used for cloning into all of our catalogue vectors.

Multiple cloning site notes:

There are a few important sites within the MCS. These include the NcoI site the XbaI site and the BsgI and BseRI sites. The NcoI site contains a start codon that is immediately downstream of both a Kozak and Shine-Dalgarno ribosomal binding site. These allow for optimal positioning of genes when the start codon is placed in this location. If this is not required and you wish to use a downstream site for gene cloning you can remove the NcoI site by cleaving the plasmid with KpnI.

The XbaI site contains a stop codon. This stop codon is positioned in a specific position in relation to the BsgI and BseRI sites that are immediately downstream. When either BseRI or BsgI cleave the plasmid they produce a TA overhang from the stop codon in the XbaI site that is compatible with all of our peptide tag plasmids cut with the same sites. BseRI and BsgI sites are non-palindromic and cleave a defined number of bases away from their binding site.

Whenever we clone a gene into our multiple cloning site we always position the start and stop codon in the same positions in the MCS. If the start and ends of the genes are not compatible with NcoI and XbaI we extend the sequence to the nearest external sites but keep the start and stop codons locations consistent.

IP Status:

Intellectual Property Status

This product is part of our SnapFast plasmid range, for more information on the Intellectual property status of this plasmid please click here

品牌介绍
OXGENE的技术平台和专家解决方案加速了细胞和基因疗法的发现,开发和制造。我们解决了现代生物学中基因治疗,抗体治疗和基因编辑方面最重要和最具挑战性的问题。我们的技术可以实现精确而强大的哺乳动物细胞工程。我们以自动化和信息学为导向的方法意味着我们解决了其他人无法推进新疗法交付的问题。