Coenzyme FO
CAS No. 37333-48-5
Coenzyme FO ( —— )
产品货号. M34991 CAS No. 37333-48-5
Coenzyme FO 是一种脱氮黄素发色团,在产甲烷途径中起着重要的氢化物受体/供体作用。
纯度: >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| 规格 | 价格/人民币 | 库存 | 数量 |
| 2MG | ¥1912 | 有现货 |
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| 5MG | ¥2931 | 有现货 |
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| 10MG | ¥4352 | 有现货 |
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| 25MG | ¥6827 | 有现货 |
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| 50MG | ¥9228 | 有现货 |
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| 100MG | ¥12393 | 有现货 |
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| 500MG | 获取报价 | 有现货 |
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| 1G | 获取报价 | 有现货 |
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生物学信息
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产品名称Coenzyme FO
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注意事项本公司产品仅用于科研实验,不得用于人体或动物的临床与诊断
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产品简述Coenzyme FO 是一种脱氮黄素发色团,在产甲烷途径中起着重要的氢化物受体/供体作用。
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产品描述Coenzyme FO, a deazaflavin chromophore, acts as an important hydride acceptor/donor in the central methanogenic pathway.
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体外实验The formation of Coenzyme FO is mediated by two separate radical SAM active sites, one each in the CofG and CofH enzymes or both in the FbiC enzyme. These two radical SAM domains constitute the functional domains of Fo synthase. F420 is biosynthesized in Methanocaldococcus jannaschii by the action of eight enzymes with the formation of the deazaflavin chromophore (Fo) as the remaining unsolved step.Coenzyme F420 is the central low-redox-potential electron carrier in methanogenic metabolism. Coenzyme F420 is reduced under hydrogen by the action of F420-dependent hydrogenase.Coenzyme F420 acts as a hydride transfer coenzyme for an F420-specific glucose-6-phosphate dehydrogenase (Fgd) in mycobacteria. Coenzyme F420 is found in all methanogenic and certain nonmethanogenic archaea, where it participates in energy metabolism, NADP reduction, oxygen detoxification, and sulfite reduction. By converting NO2 back to NO with F420H2, M. tuberculosis could decrease the effectiveness of antibacterial action of macrophages.
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体内实验——
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同义词——
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通路Others
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靶点Other Targets
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受体Others
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研究领域——
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适应症——
化学信息
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CAS Number37333-48-5
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分子量363.32
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分子式C16H17N3O7
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纯度>98% (HPLC)
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溶解度In Vitro:?DMSO 中的溶解度 : 5 mg/mL (13.76 mM; 超声助溶 ) Ethanol 中的溶解度 : < 1 mg/mL (insoluble)
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SMILESC([C@@H]([C@@H]([C@@H](CO)O)O)O)N1C=2C(=CC=3C1=CC(O)=CC3)C(=O)NC(=O)N2
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化学全称——
运输与储存
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储存条件(-20℃)
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运输条件With Ice Pack
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稳定性≥ 2 years
参考文献
1. Mills DJ, et al. De novo modeling of the F(420)-reducing [NiFe]-hydrogenase from a methanogenic archaeon by cryo-electron microscopy. Elife. 2013;2:e00218. Published 2013 Mar 5.?
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