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当前位置: 首页 > 产品中心 > ligase > scarabgenomics/White Glove是检测试剂盒/目标DNA,或者克隆在转化为任何干净的基因组®之前是免费的。大肠杆菌宿主菌株
商品详细scarabgenomics/White Glove是检测试剂盒/目标DNA,或者克隆在转化为任何干净的基因组®之前是免费的。大肠杆菌宿主菌株
scarabgenomics/White Glove是检测试剂盒/目标DNA,或者克隆在转化为任何干净的基因组®之前是免费的。大肠杆菌宿主菌株
scarabgenomics/White Glove是检测试剂盒/目标DNA,或者克隆在转化为任何干净的基因组®之前是免费的。大肠杆菌宿主菌株
商品编号: IS-1109-10
品牌: scarabgenomics
市场价: ¥0.00
美元价: 0.00
产地: 美国(厂家直采)
公司:
产品分类: 连接酶
公司分类: ligase
联系Q Q: 3392242852
电话号码: 4000-520-616
电子邮箱: info@ebiomall.com
商品介绍

Background

The IS Detection kit is designed to test for the presence of transposable Insertion Sequences (IS) in a DNA of interest. IS elements are naturally present in the genomes of E. coli strains commonly used for protein and plasmid production. IS element transposition is known to be stimulated by the cell stress response and can lead to IS element “hopping” into plasmid DNA and or into other regions of the chromosome. Factors such the production of foreign proteins or the burden of carrying a high copy plasmid can induce the cell stress response. To alleviate these undesired transposition events, Scarab Genomics produced the Clean Genome® E. coli strains. These strains are devoid of all known IS elements (1-3) thereby creating the ideal hosts for the production of foreign proteins or plasmid DNA. This kit can be used to detect for the presence of all the specific known IS elements in the genomes of commonly used E. coli strains (Figure 1). It can also be used to determine which elements may have transposed into a plasmid grown in these strains. The kit also detects the presence or absence of known recombination hot spots (Rhs) in the E. coli genome.

Figures

Figure 1: IS Elements in popular E. coli strains. Each box shows the number of copies of the element in the genome. Note: these counts represent a snapshot in time. Strains that have been sub-cultured multiple times may differ in their IS count or contain different complements of IS elements. *Subsequent to the commercialization of the Clean Genome® E. coli strains, 2 copies of an atypical IS element named IS609 were recognized in the E. coli O157:H7 genome sequence (4). This IS element has not been shown to transpose, although other members of this IS family have been shown to transpose. The ability to transpose requires an intact orfA. The single IS609 element found in E. coli K-12 and B strains, however, carries a defective orfA with a stop codon mutation located near the middle of the ORF. IS609 has been removed in derivatives of the original MDS™ strains, indicated as “MDS™42 ΔMD64”. Figure 2. Detection of IS Elements in Plasmid Obtained from Commercial Sources. Detection of IS contamination in a commercial plasmid preparation of pBR322. Inward primers (panels a-d) or outward primers (panels e-h) specific for IS1, IS2, IS3, IS5, IS10, and IS186 were used (lanes 1-6, respectively; M is 1 kb+ size standard). Panels a and e show negative controls (no DNA), while positive controls in panels b and f are the individual IS elements cloned into pBR322. Panels c and g show purchased pBR322 and panels d and h show pBR322 isolated from MDS™42. PCR amplimers generated with outward primers specific for IS1, IS2, IS3, IS5, IS10 and IS186 were ligated, cloned with selection for tetracycline or ampicillin resistance, and sequenced (data not shown). Sequencing confirmed transposition of IS1, IS2, IS5, and IS10 to pBR322 in the commercial preparation. Figure 3. Workflow for pDNA production in Clean Genome® and unreduced E. coli strains. Extra care in the first steps will ensure trouble-free production. A) B) Figure 4: IS Primer Validation Using Water in Place of Sample DNA and Positive and Negative Control Genomic DNA. White Glove Kit protocol was followed using water in place of sample DNA. Panel (A) - Six microliters (6 μl) of the PCR amplification product was analyzed on 1.0% 1X TAE agarose gel. No products are visible when water is added in place of template DNA or when using the negative control genomic DNA. Positive control genomic DNA amplify as expected. Panel (B) - Lists the expected size of PCR product to be obtained using the positive and negative control genomic DNA.

Specifications

Kit Components

  • Positive Control Genomic DNA: 170 μl, sufficient for the analysis of 10 samples.
  • Negative Control Genomic DNA: 170 μl, sufficient for the analysis of 10 samples.
  • IS-specific Forward (F) and Reverse (R) Primers: 80 μl of each primer at a concentration of 5μM, sufficient for the analysis of 10 samples.
  • Forward PrimersReverse Primer
    IS1 Forward PrimerIS1 Reverse Primer
    IS2 Forward Primer IS2 Reverse Primer
    IS3/ISEc17 Forward PrimerIS3/ISEc17 Reverse Primer
    IS4 Forward PrimerIS4 Reverse Primer
    IS5 Forward PrimerIS5 Reverse Primer
    IS10 Forward PrimerIS10 Reverse Primer
    IS30D Forward PrimerIS30D Reverse Primer
    IS150 Forward PrimerIS150 Reverse Primer
    IS186 Forward PrimerIS186 Reverse Primer
    IS600/ISsd1 Forward PrimerIS600/ISsd1 Reverse Primer
    IS609 Forward PrimerIS609 Reverse Primer
    IS911 Forward PrimerIS911 Reverse Primer
    ISEc1/3/5 Forward PrimerISEc1/3/5 Reverse Primer
    ISEc4 Forward PrimerISEc4 Reverse Primer
    RhsA/B/C Forward PrimerRhsA/B/C Reverse Primer
    RhsD/E Forward PrimerRhsD/E Reverse Primer
  • Positive Control dnaE Forward Primer and Positive Control dnaE Reverse Primers: 60 μl of each primer at a concentration of 5 μM, sufficient for the analysis of 10 samples.
Quality Control IS Detection primers sets are functionally tested using the Positive and Negative Control Genomic DNA and by following the procedure described in this User Protocol. Primers for DNA polymerase III, dnaE, are also included to serve as a positive control for the quality of the sample genomic DNA. dnaE is an essential gene and is found in all E. coli. The kit and reaction conditions have been validated with Phusion™ High-Fidelity DNA Polymerase from New England Biolabs. The use of other thermostable DNA polymerases may be possible provided that the proper optimization of reaction conditions is performed. Six microliters (6 μl) of the PCR amplification product is analyzed on 1.0% 1X TAE agarose gel. No products are visible when water is added in place of template DNA. The following table lists the expected size of PCR product to be obtained using the Positive and Negative Control Genomic DNA. The associated gel represents the expected electrophoresis pattern. Storage Conditions Store components at –20°C. Do not store in a frost-free freezer.

Related Products

MDS™42 Chemically Competent Cell Kit MDS™42 ΔrecA Chemically Competent Cell Kit MDS™42 ΔrecA Blue Chemically Competent Cell Kit MDS™42 Combination Package Chemically Competent Cell Kit ScarabXpress® T7 lac Chemically Competent Cell Kit MDS™42 Electrocompetent Cell Kit MDS™42 ΔrecA Electrocompetent Cell Kit MDS™42 ΔrecA Blue Electrocompetent Cell Kit MDS™42 ΔrecA trfA Electrocompetent Cell Kit MDS™42 ΔrecA trfA Blue Electrocompetent Cell Kit MDS™42 Combination Package Electrocompetent Cell Kit

Support

Product Manuals White Glove IS Detection Kit Reports Production of DNA Vaccines Free from Mobile DNA Papers

  1. Pósfai G, et al., (2006) Emergent properties of reduced-genome Escherichia coli. Science 312:1044-6.
  2. Kolisnychenko, V., Plunkett III, G., Herring, C.D., Fehér, T., Pósfai, J., Blattner, F.R., and Pósfai, G. Engineering a reduced Escherichia coli genome. Genome Research 12, 640-647 (2002).
  3. Sharma, S.S., Blattner, F.R., and Harcum, S.W. Recombinant protein production in an Escherichia coli reduced genome strain. Metabolic Engineering 9, 133-141 (2007).
  4. Perna, N.T., et al., 2001. Genome sequence of enterohemorrhagic Escherichia coli O157:H7. Nature 409: 529-533 (2001).

Patents & Disclaimers

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. PHUSION® is a registered trademark of Thermo Fisher Scientific. Plasmid-Safe™ ATP-Dependent DNase is a registered trademark of EPICENTRE® Biotechnologies. Stbl3™ is a trademark of Life Technologies.

品牌介绍
scarabgenomics在pDNA生产中遇到的一个常见挑战是茎环DNA结构的存在,例如病毒长末端重复序列(LTR)或短发夹RNA(shRNA),它们难以复制并且即使在特意设计的E中也使载体不稳定大肠杆菌宿主,例如Stbl3™。清洁Genome® 大肠杆菌可显着提高不稳定pDNA载体的产量。CleanGenome®E . coli Out表现出用于慢病毒生产的Stbl3™。Chakiath&Esposito(2007)研究表明,“包含慢重复序列的慢病毒表达克隆通常在大肠杆菌中表现出极大的不稳定性。。” 即使是专门设计用于克隆慢病毒直接重复序列的宿主(例如Stbl3™)也被证明是不足够的。Chakiath&Esposito表明,CleanGenome® 大肠杆菌菌株MDS™42是基因组平台减少的基础菌株,可稳定包含这些重复序列的慢病毒表达克隆(图1)。在使用MDS™42进行的100多次克隆反应中,这些作者仅选择了两个转化子菌落进行分析,在超过95%的情况下,两个克隆都具有正确的限制性图谱,从而节省了重组质粒制备的大量时间和精力。同样,衍生自腺相关病毒(AAV)的载体带有两个反向重复序列,形成40 bp茎。在末端,另外两个9bp的茎分支进一步终止于环结构。这两个茎环本身包含直接重复序列,当在标准大肠杆菌宿主中生长时,特别容易被删除。极端的例子是pT-ITR-IL2载体(图2),其中包含ITR1和ITR2茎环,它们也是彼此直接重复的。为了测试CleanGenome®菌株解决不稳定的生物治疗性pDNA生产挑战的能力,圣甲虫基因组公司使用了腺相关病毒pT-ITR-IL2载体。将其转化到MDS™42和未还原的亲本菌株大肠杆菌中K-12 MG1655。选择含有对NotI,KpnI和MscI具有正确限制模式的质粒的克隆。为了测试在大肠杆菌中的生长过程中的稳定性,将来自两个宿主的一式三份的克隆在Luria Broth中在37°C下生长24小时,并进行选择。取出培养样品进行分析,然后将每组的一种正确培养物通过在新鲜肉汤中稀释10-6 – 10-7来开始连续传代。再进行四次相似的连续传代,从每个阶段分离质粒DNA以进行分析。在MDS™42中生长的pT-ITR-IL2的限制性酶切消化模式没有随传代而改变,而MG1655生长的质粒不稳定(图3)。)。KpnI消化物(单个位点)显示出较小的质粒片段,与通过内部重组使质粒重复序列之间的“锤头”区域丢失相一致。MscI消化(每个ITR两侧的位点)同样显示出片段之一的逐渐丢失,与KpnI消化一致。DNA测序证实了这些结果。