98无码人妻精品一区二区三区,羞羞91视频,久久99精品久久久久久园产越南,国产乱人乱偷精品视频

您好!歡迎訪問上海起發(fā)實驗試劑有限公司網(wǎng)站!
全國服務(wù)咨詢熱線:

15921799099

當前位置:首頁 > 技術(shù)文章 > TriLink N-6001 說明書

TriLink N-6001 說明書

更新時間:2017-08-01      點擊次數(shù):2317

世界*實驗材料供應(yīng)商 TriLink正式授權(quán)上海起發(fā)為其中國代理, TriLink在一直是行業(yè)的*,一直為廣大科研客戶提供zui為的產(chǎn)品和服務(wù),上海起發(fā)一直秉承為中國科研客戶帶來的產(chǎn)品,的服務(wù),簽約 TriLink就是為了給廣大科研客戶帶來更加完善的產(chǎn)品和服務(wù),您的滿意將是我們zui大的收獲

TriLink中國代理, TriLink上海代理, TriLink北京代理,TriLink廣東代理, TriLink江蘇代理TriLink湖北代理,TriLink天津,TriLink黑龍江代理,TriLink內(nèi)蒙古代理,TriLink吉林代理,TriLink福建代理, TriLink江蘇代理, TriLink浙江代理, TriLink四川代理,

 

TriLink BioTechnologies——高品質(zhì)常規(guī)/特殊核苷酸產(chǎn)品
TriLink BioTechnologies公司是世界的核酸修飾技術(shù)領(lǐng)域的,成立于1996年,總部設(shè)在San Diego,California。TriLink公司致力于高品質(zhì)核酸修飾產(chǎn)品的研發(fā)和生產(chǎn),提供包括核苷酸、常規(guī)及核苷三磷酸特殊修飾的寡核苷酸定制(oligonucleotides),m RNA合成,CleanAmp?PCR產(chǎn)品,phosphoramidites和其他小分子在內(nèi)的眾多產(chǎn)品。近二十年來,TriLink一直是診斷和OEM市場核酸產(chǎn)品供應(yīng)的行業(yè),產(chǎn)品應(yīng)用于基因治療,核苷類化療,寡核苷酸治療和診斷領(lǐng)域。此外,TriLink還可提供特殊核苷酸、m RNA定制,合同研究服務(wù)和ISO/ QSR標準的cGMP生產(chǎn)設(shè)施。TriLink完善的產(chǎn)品及研發(fā)服務(wù)解決方案有助于推動藥物發(fā)現(xiàn)和生物醫(yī)學(xué)研究。

經(jīng)過18年的發(fā)展, TriLink已經(jīng)成為高品質(zhì)RNA合成領(lǐng)域的,為廣大科研工作者提供的mRNA及長鏈RNA(長可達幾個Kb),并且定制修飾。同時我們也提供成品mRNA產(chǎn)品,包括報告基因及 mRNA表達因子。

 

N-6001
Guanosine-3',5'-bisdiphosphate
ppGpp, Magic Spot, Guanosine tetraphosphate 

Guanosine-3',5'-bisdiphosphate
 

Extinction Coefficient: 13,600 Lmol-1cm-1 at 252 nm
Molecular Weight: 603.2 g/mol (free acid)
Molecular Formula: C10H17N5O17P4 (free acid)
Salt Form: Lithium
Purity Specification: ≥85% by AX-HPLC

Shipped at 100 mM in H2O.
1 µmole: 10 µL
5 µmole: 50 µL
10 µmole: 100 µL

Guanosine-3',5'-Bisdiphosphate (also known as guanosine tetraphosphate, ppGpp or “magic spot*”), is a guanosine analogue containing a diphosphate moiety at both the 5' and 3' hydroxyls. Within the cell, ppGpp regulates transcription of genes affecting important bacterial metabolic processes, such as cell division, motility and adaptation (Potrykus, K., et al., Lemke, J.J., et al.) When prokaryotes and certain plants become nutritionally deficient, amino acid starvation is a direct consequence. During amino acid starvation, guanosine tetraphosphate is an important signal to start the stringent response mechanism. The result of the ppGpp signal is a stop in protein synthesis, leading to adjustments in gene expression levels and causing cells to remain dormant until normal nutritional levels are restored (Artsimovitch, I., et al.) In particular, ppGpp strongly inhibits the synthesis of components of the translation machinery such as tRNA and rRNA (Paul, B.J., et al., Gralla, J.D., et al.) while simultaneously stimulating the transcription of genes involved in amino acid biosynthesis (Artsimovitch, I., et al.). This ppGpp-mediated mechanism prevents the outflow of unnecessary energy resources to help bacteria survive until adequate amino acid levels are reached.

 

Synthesis of ppGpp

Guanosine tetraphosphate is synthesized from ATP and GDP during the stringent response mechanism (Figure 1). The RelA and SpoT proteins play a critical role in maintaining the appropriate levels of ppGpp (reviewed in (Potrykus, K., et al.)). Once synthesized, the ppGpp transcription factor binds to the RNA polymerase (Vrentas, C.E., et al.) to regulate the transcription of certain promoters in a process that, in E. coli, is assisted by protein DksA, Figure 2 (Paul, B.J., et al.). In the presence of ppGpp, tRNA and rRNA synthesis is reduced in favor of transcription of amino acid biosynthetic genes. Although the global role of ppGpp is understood, the mechanism by which ppGpp contributes to the regulation of certain promoters has not been fully characterized and varies among different bacteria (Bernardo, L.M., et al.) Molecular mechanisms of ppGpp are still being studied to better understand how different bacteria adapt to extreme circumstances through the stringent response.

Stringent Response

While ppGpp plays a critical role in cellular survival in vivo, several groups have contributed to our current knowledge of how guanosine tetraphosphate interacts with the RNA polymerase and other transcription factors by in vitro experiments (Lemke, J.J., Vrentas, C.E., Powell, B.S., deLivron, M.A. et al.). Most notably, Richard Gourse’s laboratory at the University of Wisconsin focuses on understanding RNA transcription regulation and the role that ppGpp plays in modulating the response to changing environmental conditions. A well-characterized transcription assay to examine the effects of added ppGpp concentration on promoter activity during in vitro transcription is described in Paul et al. Herein, we provide some general guidelines to follow in any in vitro transcription assay in which the amount of ppGpp is varied to evaluate its effect on the cellular stringent response.

 

* Potrykus and Cashel noted two spots appeared in autoradiograms from extracts of E. coliresponding to the stress of aminoacid starvation. According to Irina Artsimovitch of Ohio State University, these spots were tagged as 'magic' because “Microbiologists have wondered for half-century how this small molecule with a relatively simple structure could have such a profound effect on regulating a cell’s survival.”

Basic experimental parameters for an in vitro transcription assay using ppGpp: 

This assay is a basic tool for the study of ppGpp in cell metabolic aspects that are sensitive to changes in the nutrient availability. One of Dr. Gourse’s basic protocols described in Schneider et al. involves the preparation of a reaction mixture that combines the appropriate reaction buffer, a DNA template (supercoiled plasmid or linear), an unbalanced pool of NTPs (where the concentration of UTP is very low), and the RNA polymerase of interest in the presence or absence of ppGpp. The transcription reaction is then incubated for the appropriate time and at the appropriate temperature, quenched using an EDTA and formamide solution, and analyzed by polyacrylamide gel electrophoresis to determine transcription yield. Other notable variations on this protocol have also been described in Krásný and Gourse, Vrentras et al., Paul et al., Carmona et al., and Bernardo et al. 

 

產(chǎn)品編號產(chǎn)品名稱規(guī)格生產(chǎn)廠家
N-6001-1ppGpp1umoletrilink

TriLink N-6001 大量現(xiàn)貨

 

我們公司zui大優(yōu)勢是強大的采購,

1:基本什么都能進口,血清,抗體,耗材,還有部分限制進口的,

2:貨品全,現(xiàn)經(jīng)營過700多個品牌,基本所有生物試劑耗材都可以進口,特別是冷偏的產(chǎn)品那就更有優(yōu)勢,

3:提供加急服務(wù),一般1-2周到貨,超過時限加急費全免

4:價格公道,絕大部分價格有優(yōu)勢,當然不能保證100%產(chǎn)品都是,因為意味著沒有服務(wù).

5:良好的信譽,大部分客戶我們提供貨到付款服務(wù),客戶包括清華,北大 交大 復(fù)旦,中山等100多所大學(xué),ROCHE,阿斯利康,國藥 ,fisher等500多家公司

6:我們*代理的品牌有:Antibody Research Corporation,arcticzymes,Biorelevant,AmberGen, Inc. ,clemente-associates,clodronaiposomes,Columbia Biosciences,enzyme research,Gene Bridges GmbH,Genovis,AmberGen, Inc.  Biotechnology GmbH,Haematologic Technologies HTI Haemtech,hookelabs,Immudex,Innovative Research of America,inspiralis ,List Biological Laboratories, Inc.,lumafluor,Microsurfaces,multiplicom,nanotools,Pel-Freez Biologicals,pentapharm,progen,Protein Ark,QA-Bio,Inc,QA-Bio,IncQuickZyme Biosciences,Teknova,TriLink BioTechnologies, Inc.,Zyagen Laboratories 等

7:我們還是invitrogen,qiagen,Midland BioProducts Corporationam,sigma;neb,roche,merck, rnd,BD, GE,pierce,BioLegend等知名*批發(fā),歡迎合作。

上海起發(fā)實驗試劑有限公司
地址:上海浦東川沙鎮(zhèn)川沙路6619號上海起發(fā)實驗試劑有限公司
郵箱:xs1@78bio.com
傳真:021-50724961
關(guān)注我們
歡迎您關(guān)注我們的微信公眾號了解更多信息:
歡迎您關(guān)注我們的微信公眾號
了解更多信息
亚洲人成伊人| av电影av网站| 美国av一区二区| 属兔人永远最旺的颜色是| 你懂的图片亚洲综合| 亚洲区综合区| 四虎亚洲天堂在线观看视频| 久久大片| xj99| 日韩AV人人夜夜澡人人爽| 一区二区三区AA| 综合 欧美 日韩| 日韩91| 欧美激情视频久久久| √天堂区在线| 欧美疯狂做受XXXX高潮| 九九啪在线| 黑人极品videos精品欧美裸| 欧美寡妇性猛交xxx| 亚洲一区二区三区涩爱av| 久久精品人人做人人综合老师| 夜夜高潮夜夜爽夜夜爱爱一区 | 日韩欧美国产综合| 欧美涩爱| 亚洲日韩VA无码中文字幕| 国产成人精品亚洲精品| 五月天丁香网| 开心色| 深田えいみAV无码国产在线| 男人的天堂久色| 铜陵市| 毛片久久国产一区二区三区海网| 欧美一区91| 亚洲AV色嘟嘟| 日韩中文字幕一区| 久久免费视频偷拍| 久久综合九色综合欧美婷婷| 蜜桃久久精品| 99国产精品视频| 红杏午夜无码人妻AV| 欧美亚洲精品天堂|