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当前位置: 首页 > 产品中心 > > NEB/HiScribe® T7 High Yield RNA Synthesis Kit/50 reactions/E2040S
商品详细NEB/HiScribe® T7 High Yield RNA Synthesis Kit/50 reactions/E2040S
NEB/HiScribe® T7 High Yield RNA Synthesis Kit/50 reactions/E2040S
NEB/HiScribe® T7 High Yield RNA Synthesis Kit/50 reactions/E2040S
商品编号: E2040S
市场价: ¥0.00
美元价: 0.00
产地: 美国(厂家直采)
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产品分类: 其他
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联系Q Q: 3392242852
电话号码: 4000-520-616
电子邮箱: info@ebiomall.com
商品介绍
The HiScribe T7 High Yield RNA Synthesis Kit is an extremely flexible system for in vitro transcription of RNA using T7 RNA Polymerase. The kit allows for synthesis many kinds of RNA including internally labeled and co-transcriptionally capped transcripts.RNA synthesized from the kit is suitable for many applications including RNA structure and function studies, ribozyme biochemistry, probes for RNase protection assays and hybridization based blots, anti-sense RNA and RNAi experiments, microarray analysis, microinjection, and in vitro translation and RNA vaccines.The kit contains sufficient reagents for 50 reactions of 20 μl each. Each standard reaction yields up to 180 μg of RNA from 1 μg control template. Each kit can yield up to 9 mg RNA. For 32P labeling, the kit contains enough reagents for 100reactions of 20 μl each.Materials Not Included:
  • DNA Template: The DNA template must be linear and contain the T7RNA Polymerase promoter with correct orientation in relation to target sequence to be transcribed.
  • 3′-O-Me-m7G(5′)ppp(5′)G RNA Cap Structure Analog (NEB #S1411)
  • m7G(5′)ppp(5′)G RNA Cap Structure Analog (NEB #S1404)
  • m7G(5′)ppp(5′)A RNA Cap Structure Analog (NEB #S1405)
  • G(5′)ppp(5′)A RNA Cap Structure Analog (NEB #S1406)
  • G(5′)ppp(5′)G RNA Cap Structure Analog (NEB #S1407)
  • Modified-NTP: Biotin-, Fluorescein-, Digoxigenin-, or Aminoallyl-NTP
  • Labeling: [α-32P] labeled ribonucleotide (800-6,000 Ci/mmol)
  • General: 37°C incubator or PCR machine, nuclease-free water
  • DNase I: DNase I (RNase-free) (NEB #M0303)
  • Purification: Buffer- or water-saturated phenol/chloroform, ethanol and 3 M sodium acetate, pH 5.2, spin columns
  • Gel Analysis: Gels and running buffers, gel apparatus, power supply
Figure 1. Transcription by T7 RNA PolymeraseFigure 1. Transcription by T7 RNA Polymerase
Figure 2. Time course of standard RNA synthesis from three DNA templatesFigure 2. Time course of standard RNA synthesis from three DNA templates
Reactions were incubated at 37°C in a PCR machine. Transcripts were purified by spin columns and quantified on NanoDrop™ Spectrophotometer.
Figure 3. Effect of template amount on RNA yieldFigure 3. Effect of template amount on RNA yield
Standard reactions were incubated at 37°Cin a PCR machine for 2 hours. Transcripts were purified by spin columns and quantified on NanoDrop™ Spectrophotometer.
Figure 4: Improved RNA yield and integrity from extended duration transcription reactionsFigure 4: Improved RNA yield and integrity from extended duration transcription reactions
reactions were assembled, in duplicate, according to the manufacturers’ suggested protocols using 3 ng of dsDNA template encoding a 1.8 kb RNA, and incubated at 37°C for 16, 24 and 40 hours. At each time point, the corresponding tubes were transferred to -20°C to stop the reaction. Transcription reactions were column purified after the last time point.(A) Transcript yield – After column purification, RNA concentration was measured using a NanoDrop spectrophotometer and total RNA yield was calculated. These data demonstrate that a substantially higher yield of RNA was synthesized using the HiScribe T7 High Yield RNA Synthesis Kit as compared to the competitor’s kit.(B) Transcript integrity – 150 ng of column purified RNA was run a 1.2% denaturing agarose gel, stained with ethidium bromide and visualized by UV fluorescence. The data demonstrate greatly improved transcript integrity after extended duration RNA synthesis reactions using the HiScribe T7 High Yield RNA Synthesis Kit as compared to the competitor’s kit.
This product is related to the following categories:
RNA Synthesis Products
This product can be used in the following applications:
RNA Labeling,
In vitro Transcription for RNA Synthesis
品牌介绍
New England Biolabs(NEB)公司       NEB公司——三十多年的卓越品质NEB公司成立于二十世纪七十年代中期,拥有众多经验丰富的科学家,是生产生命科学试剂的领导者。目前,NEB为基因组研究提供最齐全的重组酶和天然酶,并且公司业务范围已延伸至蛋白质组学和药品开发领域。回顾三十余年来的历程,NEB公司作为先驱公司之一,为促进生物科技工业的发展做出了巨大的贡献。NEB美国总部乔迁新址后拥有最尖端的设备,有一座现代化的发酵中心及设备齐全的实验室,这些实验室主要用于产品生产、质量监控、产品开发和基础科研之用。作为首批以商业规模生产限制性内切酶的公司之一,NEB一直专注于内切酶的研究,并保持业内领先水平。NEB公司一贯坚持以科学为本的原则,公司生产的试剂因其高质量、高性价比享誉世界。重组酶NEB公司对酶的生产与其基础科研不能分开,通过对限制/修饰系统的克隆和过量表达方面的研究,使我们能够大大降低成本,改善产品质量。NEB已经成功克隆了180多种内切酶,其中大多是完全克隆,少数是部分克隆。目前,NEB可供应240多种内切酶,其中180多种可以重组酶形式提供,同时还有大量的应用途广泛的重组聚合酶和重组修饰酶。质量与客户服务NEB公司凭借着严格的质检程序、深入的基础科研以及不断开发的研发项目,承诺为全球科技人员提供高纯度的科研产品。直接与NEB总部联系或与NEB的国际网点联系,即可体验到NEB的个性化客户服务。公司内负责生产以及负责进行质量监控的科学家(产品负责人)也就是技术支持人员。他们为客户解答有关限制核酸内切酶、甲基化酶、以及其他DNA修饰酶、蛋白质修饰酶方面的问题。同时,公司的有机合成部门可提供linkers、引物、adaptors、探针以及寡核苷酸合成等方面的信息。研究人员也可为客户提供技术支持服务,这些研究人员在DNA测序、甲基化、克隆、过量表达、发酵、蛋白质纯化以及蛋白质分析方面都有很深造诣。基础科研NEB在分子生物学和寄生虫学方面的基础研究由公司内部的资深科学家负责。这些科学家在他们各自的领域都卓有成绩,经常在业内著名杂志上发表文献,指导博士后工作、为大学生提供暑期实习机会,而且经常受邀去当地学校进行演讲。NEB鼓励公司与外界合作,每周学术探讨会为其他科学家们提供了交流和展示的平台。环保政策NEB公司在资助科研项目时最基本原则之一就是:一切工作都应符合保护生态环境。公司产品生产、分析以及运输过程既要满足产品的稳定性,也要符合我们的环保政策。20年来,NEB公司最引人注目的一项环保政策是:回收运输泡沫盒,虽然这项工作首创于美国,但是,目前加拿大、德国以及英国的分公司也同样实施了。公司还在内部开展多方位的回收工作,经常用再生纸张印刷市场宣传资料。这些小细节不会影响产品质量,但是对环境的保护却是显而易见。公司职责除环保政策外,通过基金会,NEB还竭力为改善当地社区及全人类尽微薄之力。NEB基金会创立于1982年,属私人性质,其宗旨是支持发展中国家的环保、教育、健康及艺术事业。此外,NEB捐款委员会也经常向当地社区进行捐款活动。
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