906748-39-8 + 906748-40-1 = 53-59-8 反应条件:1.1S:Dmf,16 H,Rt1.2R:Acoh,R:Bu4N+ f-,S:Thf,1.5 H,0°C2.1R:S:H2O,S:Meoh,2 H,Rt 标题:Chemical Synthesis Of The Novel Ca2+ Messenger Naadp 作者:By Dowden,James Et Al 参考文献:Nucleosides 日期:2005 卷标:24(5-7) 页码:513-518]
13035-61-5 + 98-92-0 + 69304-45-6 + 108549-23-1 = 53-59-8 反应条件:1.1R:Me3Siso3Cf3,S:Mecn,1.5 H,Rt1.2S:Meoh,1 H,Rt1.1S:Ch2Cl2,3 H,Rt1.2R:Mcpba,0.5 H,-78°C2.1R:F3Cco2H,S:H2O,S:Thf,3 H,4°C3.1R:Et3N,R:Pcl3,R:1H-Imidazole,S:Thf,15 Min,0°C3.2R:Et4N+ br-,15 Min,Rt,Ph 74.1R:Me3Sin=cmeosime3,S:CHCL3,1 H,Rt4.2R:0.5 H,Rt4.3R:D2O,S:Meoh,15 Min,Rt5.1R:Pocl3,R:P(Ome)3,4 H,0°C5.2R:Et3N,R:Diimidazolyl Ketone,S:Dmf,3 H,Rt5.3R:Meoh,Rt5.4S:Dmf,24 H,Rt5.5R:Acoh,R:Bu4N+ f-,S:H2O,S:Thf,3 H,0°C6.1R:C:Pd,S:H2O,S:Meoh,3 H,Rt 标题:Chemical Synthesis Of The Second Messenger Nicotinic Acid And Adenine Dinucleoside Phosphate By Total Synthesis Of Nicotinamide Adenine Dinucleotide Phosphate 作者:By Dowden,James Et Al 参考文献:Angewandte Chemie 日期:2004 卷标:43(35) 页码:4637-4640]
53-57-6 = 53-59-8 + 53595-18-9 + 98-92-0 + 1273577-02-8 + 60-92-4 + 58-68-4 + 4457-01-6 + 130-49-4 + 3805-37-6 反应条件:1.116 H,95°C 标题:Factors Influencing The Operational Stability Of Nadph-Dependent Alcohol Dehydrogenase And An Nadh-Dependent Variant Thereof In Gas/solid Reactors 作者:By Kulishova,Liliya Et Al 参考文献:Journal Of Molecular Catalysis B: Enzymatic 日期:2010 卷标:67(3-4) 页码:271-283
Alkaline Earth Salt Of/the/ Methylsulfuric Acid置于乙醚,三氯氧磷体系中,化学反应生成 烟酰胺腺嘌呤双核苷酸磷酸盐 参考文献:Die Einwirkung Von Phosphoroxychlorid Auf Cozymase 标题:Die Einwirkung Von Phosphoroxychlorid Auf Cozymase 摘要: DOI:10.1007/bf01496120
专利信息
专利号:US-5824472-A 优先权日:1986-03-24 标 题 :Process for the synthesis of sugar nucleotides using recombinant-DNA methods 发明人:BETLACH MICHAEL R; DOHERTY DANIEL H; VANDERSLICE REBECCA W 权利人:MONSANTO CO 摘要:A recombinant-DNA mediated method for the synthesis of sugar nucleotides is disclosed. This method utilizes portable DNA sequences capable of directing the microbial synthesis of various enzymes that catalyze the synthesis of sugar nucleotides, including UDP-glucose, UDP-glucuronic acid and GDP-mannose. The sugar moieties of these sugar nucleotides may subsequently be incorporated into industrially-useful polysaccharides such as xanthan gum. It has been found that vectors containing the portable DNA sequences described herein are capable both of causing sugar nucleotide production in microorganisms previously incapable of such synthesis and of causing increased sugar nucleotide production in organisms capable of synthesizing small quantities of these compounds. In particular, plasmids pAS7, pAS9 and pTS13 are disclosed. These plasmids are capable of directing sugar nucleotide synthesis in various hosts, including Xanthomonas sp. such as X. campestris and other organisms such as E. coli and various Pseudomonas sp.
专利号:US-10865390-B2 优先权日:2018-02-12 标 题 :Alcohol dehydrogenase mutant and application thereof in synthesis of diaryl chiral alcohols 发明人:NI YE; ZHOU JIEYU; XU GUOCHAO; WANG YUE 权利人:UNIV JIANGNAN 摘要:The present disclosure discloses an alcohol dehydrogenase mutant and application thereof in synthesis of diaryl chiral alcohols, and belongs to the technical field of bioengineering. The alcohol dehydrogenase mutant of the present disclosure has excellent catalytic activity and stereoselectivity, and may efficiently catalyze the preparation of a series of chiral diaryl alcohols in R- and S-configurations. By coupling alcohol dehydrogenase of the present disclosure to glucose dehydrogenase or formate dehydrogenase, the synthesis of chiral diaryl alcohol intermediates of various antihistamines may be achieved. Compared with the prior art, a method for preparing diaryl chiral alcohols through asymmetric catalytic reduction using the alcohol dehydrogenase of the present disclosure has the advantages of simple and convenient operation, high substrate concentration, complete reaction and high product purity, and has great industrial application prospects.
专利号:US-10822593-B2 优先权日:2018-02-12 标 题:Alcohol dehydrogenase mutant and application thereof in synthesis of diaryl chiral alcohols 发明人:NI YE; ZHOU JIEYU; XU GUOCHAO; WANG YUE 权利人:UNIV JIANGNAN 摘要:The present disclosure discloses an alcohol dehydrogenase mutant and application thereof in synthesis of diaryl chiral alcohols, and belongs to the technical field of bioengineering. The alcohol dehydrogenase mutant of the present disclosure has excellent catalytic activity and stereoselectivity, and may efficiently catalyze the preparation of a series of chiral diaryl alcohols in R- and S-configurations. By coupling alcohol dehydrogenase of the present disclosure to glucose dehydrogenase or formate dehydrogenase, the synthesis of chiral diaryl alcohol intermediates of various antihistamines may be achieved. Compared with the prior art, a method for preparing diaryl chiral alcohols through asymmetric catalytic reduction using the alcohol dehydrogenase of the present disclosure has the advantages of simple and convenient operation, high substrate concentration, complete reaction and high product purity, and has great industrial application prospects.
专利号:US-11053227-B2 优先权日:2017-12-20 标 题:Process for preparing intermediates for the synthesis of optically active beta-amino alcohols by enzymatic reduction and novel synthesis intermediates 发明人:COLLI CORRADO; BERTOLINI GIORGIO; SADA MARA; GARIS FARIS; NISIC FILIPPO; BIANCHI ALDO; BIAGGI CINZIA; DI FABIO ROMANO; RONZONI SILVANO; BERTUOLO STEFANIA; PRANDI ADOLFO; MAIORANA STEFANO 权利人:OLON SPA 摘要:Subject-matter of the present invention is a process for preparing intermediates for the synthesis of optically active beta-amino alcohols by enzymatic reduction of the corresponding beta-amino ketones. Subject-matter of the invention are also said novel synthesis intermediates and the use thereof in the preparation of active pharmaceutical ingredients, among which vilanterol and the salts thereof.
专利号:US-11046978-B2 优先权日:2016-03-16 标 题:Synthesis of isoprenoids and derivatives 发明人:GONZALEZ RAMON; CLOMBURG JAMES M; CHEONG SEOKJUNG 权利人:UNIV RICE WILLIAM M 摘要:This disclosure generally relates to the use of enzyme combinations or recombinant microbes comprising same to make isoprenoid precursors, isoprenoids and derivatives thereof including prenylated aromatic compounds. Novel metabolic pathways exploiting Claisen, aldol, and acyioin condensations are used instead of the natural mevalonate (MVA) pathway or 1-deoxy-d-xylulose 5-phosphate (DXP) pathways for generating isoprenoid precursors such as isopentenyl pyrophosphate (IPP), dimethylallyl pyrophosphate (DMAPP), and geranyl pyrophosphate (GPP). These pathways have the potential for better carbon and or energy efficiency than native pathways. Both decarboxylative and non-carboxylative condensations are utilized, enabling product synthesis from a number of different starting compounds. These condensation reactions serve as a platform for the synthesis of isoprenoid precursors when utilized in combination with a variety of metabolic pathways and enzymes for carbon rearrangement and the addition/removal of functional groups. Isoprenoid alcohols are key intermediary products for the production of isoprenoid precursors in these novel synthetic metabolic pathways.
专利号:US-11078465-B2 优先权日:2018-02-12 标题:Alcohol dehydrogenase mutant and application thereof in synthesis of diaryl chiral alcohols 发明人:NI YE; WANG YUE; DAI WEI; XU GUOCHAO; ZHOU JIEYU 权利人:UNIV JIANGNAN 摘要:The present disclosure discloses an alcohol dehydrogenase mutant and application thereof in synthesis of diaryl chiral alcohols, and belongs to the technical field of bioengineering. The alcohol dehydrogenase mutant of the present disclosure has excellent catalytic activity and stereoselectivity, and may efficiently catalyze the preparation of a series of chiral diaryl alcohols in R- and S-configurations. By coupling alcohol dehydrogenase of the present disclosure to glucose dehydrogenase or formate dehydrogenase, the synthesis of chiral diaryl alcohol intermediates of various antihistamines may be achieved. Compared with the prior art, a method for preparing diaryl chiral alcohols through asymmetric catalytic reduction using the alcohol dehydrogenase of the present disclosure has the advantages of simple and convenient operation, high substrate concentration, complete reaction and high product purity, and has great industrial application prospects.
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