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主营:分子类,蛋白类,抗体类,生化类试剂
℡ 4000-520-616
℡ 4000-520-616
scarabgenomics/MDS™42 Chemically Competent Cell Kit/CurrencyDecimalSeparator:.,CurrencyGroupSeparator:,,CurrencyGroupSizes:[3],CurrencyNegativePattern:14,CurrencyPositivePattern:2,CurrencySymbol:$,NumberDecimalDigits:2,NumberDecimalSe
产品编号:C-0742-05
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场      地:美国(厂家直采)
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品      牌: scarabgenomics
公      司:scarabgenomics
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scarabgenomics/MDS™42 Chemically Competent Cell Kit/CurrencyDecimalSeparator:.,CurrencyGroupSeparator:,,CurrencyGroupSizes:[3],CurrencyNegativePattern:14,CurrencyPositivePattern:2,CurrencySymbol:$,NumberDecimalDigits:2,NumberDecimalSe
商品介绍

Background

Using synthetic biology methods, the Escherichia coli K-12 genome was reduced by making a series of planned, precise deletions. The multiple-deletion series (MDS™) strains (1), with genome reduction of up to 15%, were designed by identifying non-essential genes and sequences for elimination, including recombinogenic or mobile DNA and cryptic virulence genes, while preserving robust growth and protein production. Genome reduction also led to unanticipated beneficial properties, including high electroporation efficiency and accurate propagation of recombinant genes and plasmids that are unstable in other strains. Subsequent deletions and introduction of useful alleles produce strains suitable for many molecular biology applications.

Figures

Figure 1: Multiple Deletion Strains tolerate "deleterious” genes. A chimeric gene composed of VP60 of rabbit hemorrhagic disease virus fused to the B subunit of cholera toxin (CTX) was very unstable in E. coli. Individually, both genes were stable in E. coli HB101, C600 and DH10B, but pCTXVP60 carrying the fusion gene in the same hosts did not produce fusion protein and was recovered in low yields. All recovered plasmids contained mutations in the CTXVP60 open reading frame, virtually all resulting from IS insertions. In contrast, the recombinant plasmid was completely stable in MDS™; normal yields of plasmid DNA were obtained. Representative restriction patterns of pCTXVP60. (A) Plasmid DNA from MDS™42 was transformed and propagated in the indicated host, then digested with NcoI and EcoRI. A representative of each restriction pattern was purified and sequenced. M, molecular weight marker, 1 kbp ladder; 1, MDS™41, no insertion; 2, MDS™42, no insertion; 3, DH10B, IS10 insertion; 4, DH10B, IS10 insertion/deletion; 5, C600, IS5 insertion; 6, C600, IS1 insertion; 7, C600, IS1 insertion. (B) Relative position of the IS element insertion sites in the CTXVP60 reading frame determined for the five examples presented. Figure 2: Plasmid stability in different host strains. Left: during four subcultures of pT-ITR, a plasmid with viral LTR segments; Lane 0, isolated plasmid DNA before subculture, lanes 1-4, successive subcultures. Plasmid DNA was digested with restriction enzymes and analyzed by agarose gel electrophoresis. KpnI cuts the plasmid at a single site, but in MG1655 two bands indicate a deletion in the plasmid. MscI cuts at two locations, but in MG1655 a third intermediate band confirms that the plasmid is deleted. Right: Stability of four variants of a Lentiviral expression plasmid in MDS™42 ΔrecA and Stbl3™ (Life Technologies), showing the proportion of transformants containing intact plasmids (Table 2 BioTechniques 43:466-470 (October 2007))(2).

Specifications

Kit Components MDS™42 Chemically Competent Cells pUC19 Control DNA (10 pg/µl) SOC Medium Genotypes MG1655 multiple-deletion strain (1) The recA 1819 mutation is a complete deletion of ΔrecA. The lacZ M15 deletion has been created in the genome to allow blue/white screening of inserts in plasmids using the α-complementing fragment of β-galactosidase. Quality Control Transformation efficiency is tested using pUC19 control DNA, performed in duplicate. Transformed cells are plated on LB plates containing 50 μg/ml carbenicillin. Transformation efficiency is =1x108 cfu/μg DNA. Storage Conditions Store components at –80°C. Do not store cells in liquid nitrogen.

Related Products

White Glove IS Detection Kit

Support

Product Manuals MDS™42 Chemically Competent Cell Kit Papers

  1. Pósfai G, et al., (2006) Emergent properties of reduced-genome Escherichia coli. Science 312:1044-6.
  2. Chacko S. Chakiath, CS & Esposito, D (2007): Improved recombinational stability of lentiviral expression vectors using reduced-genome Escherichia coli. BioTechniques 43:466-470.

Patents & Disclaimers

Products are sold for non-commercial use only, under Scarab Genomics limited use label license: Limited Label Use.Scarab is providing you with this Material subject to the non-transferable right to use the subject amount of the Material for your research at your academic institution. The Recipient agrees not to sell or otherwise transfer this Material, or anything derived or produced from the Material to a third party. NO RIGHTS ARE PROVIDED TO USE THE MATERIAL OR ANYTHING DERIVED OR PRODUCED FROM THE MATERIAL FOR COMMERCIAL PURPOSES. If the Recipient makes any changes to the chromosome of the Material that results in an invention in breach of this limited license, then Scarab will have a worldwide, exclusive, royalty-free license to such invention whether patentable or not. If the Recipient is not willing to accept the terms of this limited license, Scarab is willing to accept return of this product with a full refund, minus shipping and handling costs. For information on obtaining a license to this Material for purposes other than research, please contact Scarab’s Licensing Department. Scarab Genomics’ technology is covered by U.S. Pat. No. 6,989,265 and related foreign applications. Clean Genome® is a registered trademark of Scarab Genomics, LLC.

品牌介绍

Scarab Genomics,LLC成立于2002年,目的是将清洁基因组 ®多重缺失系列(MDS)大肠杆菌商业化,这是由麦迪逊威斯康星大学的Fred Blattner博士的研究产生的。金龟子基因组学已在威斯康星州校友研究基金会获得了专利授权的全球范围内的简化基因组技术。

通过删除超过20%的K-12基因组,对CleanGenome®E.colí进行了生物工程改造。使用合成生物学方法,进行了一系列精确的删除,包括消除了非必需基因,重组基因和移动DNA以及隐性有毒基因。减少基因组可以优化这些大肠杆菌菌株的生产,从而提高遗传稳定性和代谢效率。从常规克隆到大规模生产生物制药,CleanGenome®E.colí是广泛应用的首选菌株。

清洁Genome® 大肠杆菌菌株的 好处

  • 减少的宿主介导的重组可克隆出“不可克隆的”

  • 缺少IS元素可维持克隆完整性

  • 富媒体和最少媒体的强劲增长可带来高产量

  • 去除腐皮防止过早溶解

  • 发酵罐高密度生长

  • 经过验证的基因组减少

与传统的常用大肠杆菌宿主相比,CleanGenome®菌株在实验室克隆,质粒DNA产生和重组蛋白表达方面具有许多独特的优势圣甲虫的MDS菌株的特殊优势对于生物治疗药物的生产尤其重要。带有附加基因组缺失的MDS菌株已经制成,目前正在测试中。



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