CAS: 29908-03-0; (2S)-2-Amino-4-((((2S,3S,4R,5R)-5-(6-Amino-9H-Purin-9-yl)-3,4-Dihydroxytetrahydrofuran-2-yl)Methyl)(Methyl)Sulfonio)Butanoate

该化合物是一种生物活性化合物,涉及关键的生化过程,包括甲基化,跨硫化和氨基反射,它作为多种酶反应的普遍甲基捐献者,在DNA/RNA甲基化,...

结构式图片

上下游产品

methyl iodide S-(5'-adenosyl)-L-hom°Cysteine D-Glucose L-methioninevindoline N-Methylnicotinium R-(+)-N'-methylnicotinium ion R-(+)-N-methylnicotinium ion

合成工艺路线路线简述

    Adohcy置于硫酸,溶剂黄146体系中,化学反应生成S-腺苷-L-蛋氨酸
    参考文献:S-(5'-脱氧腺苷-5')-高半胱氨酸的合成,这是一种涉及"活性蛋氨酸"的酶法甲基化反应的产物
    标题:S-(5'-脱氧腺苷-5')-高半胱氨酸的合成,这是一种涉及"活性蛋氨酸"的酶法甲基化反应的产物
    摘要:
    Doi:10.1039/jr9550001085

    海关参考信息

    专利信息


    专利号:US-2024035023-A1
    优先权日:2022-06-24
    标题 :Computer implemented method for engineering fluorinase enzymes for synthesis of fluorophenyl compounds
    发明人:R PRAVIN KUMAR; G GLADSTONE SIGAMANI; L ROOPA; B K NAVEEN; SHETTY ANUJ J; M LIKITH
    权利人:KCAT ENZYMATIC PRIVATE LTD
    摘要:The present invention discloses a computer-implemented method for engineering fluorinase enzymes towards the synthesis of fluorophenyl compounds. Limited or no mechanistic details of fluorinase enzymes have hindered progress in understanding their catalytic mechanisms for synthesizing synthetic organofluorine compounds. Through a comprehensive computational screening process, specific methionine-sulfonium phenyl substrates, including [(3S)-3-amino-3-carboxypropyl][2,5-difluoro-4-(4-methoxy-2,4-dioxobutyl)phenyl]methylsulfonium, were designed and optimized using quantum chemical optimization techniques. This methodology uncovers crucial information on F— ion attack conformation and the catalytic mechanism of the substrate, leading to the formation of Methyl 3-oxo-4-(2,4,5-trifluorophenyl)butanoate. Furthermore, a protein sequence and 3D modeling-based enzyme screening process was employed to identify the most suitable enzyme for this substrate. The identified enzyme was then engineered using the mechanistic insights gained from the studies, resulting in improved substrate scope, stability and catalytic efficiency. This computer-based approach offers an efficient and precise alternative to traditional trial-and-error methods, advancing the field towards the successful synthesis fluorophenyl compounds.

    专利号:US-2004018598-A1
    优先权日:2000-05-30
    标题 :Bio-intermediates for use in the chemical synthesis of polyketides
    发明人:SANTI DANIEL; ASHLEY GARY; MYLES DAVID C
    摘要:The present invention relates to compounds made by a subset of modules from one or more polyketide synthase (“PKSâ€?) genes that are used as starting material in the chemical synthesis of novel molecules, particularly naturally occurring polyketides or derivatives thereof. The biologically derived intermediates (“bio-intermediatesâ€?) generally represent particularly difficult compounds to synthesize using traditional chemical approaches due to one or more stereocenters. In one aspect of the invention, an intermediate in the synthesis of epothilone is provided that feeds into the synthetic protocol of Danishefsky and co-workers. In another aspect of the invention, intermediates in the synthesis of discodermolide are provided that feed into the synthetic protocol of Smith and co-workers. By taking advantage of the inherent stereochemical specificity of biological processes, the syntheses of key intermediates and thus the overall syntheses of compounds like epothilone and discodermolide are greaty simplified.

    专利号:US-7294486-B2
    优先权日:2001-09-05
    标 题:Enzymatic process for the synthesis of organo-fluorine compounds
    发明人:O'HAGAN DAVID; SCHAFFRATH CHRISTOPH
    权利人:UNIV ST ANDREWS
    摘要:There is described a process for the synthesis of a fluoronucleoside compound, said process comprising mixing a substrate and an enzyme from Streptomyces cattelya as catalyst. The process may be used to produce an 18 F labelled fluoronucleoside compound. There is also described an enzyme derived from Streptomyces cattelya which has the capacity to catalyse the synthesis of a fluoronucleoside compound.

    专利号:US-8314209-B2
    优先权日:2007-12-12
    标 题 :Lipid-assisted synthesis of polymer compounds and methods for their use
    发明人:RAJAMANI SUDHA; OLASAGASTI FELIX; DEAMER DAVID W; BENNER SEICO
    权利人:RAJAMANI SUDHA; OLASAGASTI FELIX; DEAMER DAVID W; BENNER SEICO; UNIV CALIFORNIA
    摘要:The invention herein disclosed provides for methods for the synthesis of polymers from monomers. In particular the method provides for the synthesis of polynucleotides from mononucleotides in the absence of catalytic enzymes. The method comprises providing an aqueous solution having a plurality of phospholipid molecules and monomer molecules; subjecting the aqueous solution to fluctuating temperature conditions; subjecting the aqueous solution to fluctuating cycles of drying and hydrating conditions; subjecting the aqueous solution to fluctuating [H + ] conditions; the fluctuating conditions thereby allowing formation of a chemical bond between at least two monomers to create a polymer. The invention is of particular use in the fields of molecular biology, structural biology, cell biology, molecular switches, molecular circuits, and molecular computational devices, and the manufacture thereof.

    专利号:US-2024240209-A1
    优先权日:2021-04-20
    标 题:Synthesis of enantiopure cis-a-irone from a renewable carbon source
    发明人:CHEN XIXIAN; ZHANG CONGQIANG; T REHKA; SHUKAL SUDHA; SMITH DEREK; ANDRÉ ISABELLE; JEREMY ESQUE
    权利人:AGENCY SCIENCE TECH & RES; INSTITUT NATIONAL DE RECH POUR L AGRICULTURE LALIMENTATION ET LENVIRONMENT; CENTRE NAT RECH SCIENT; INSTITUT NAT DES SCIENCES APPLIQUEES DE TOULOUSE
    摘要:Synthesis of enantiopure cis-α-irone from a renewable carbon source Disclosed herein are natural and synthetic enzymes capable of performing a method of producing cis-α-irone. The method comprises providing an enzyme capable of converting psi-ionone to cis-α-irone; and contacting the enzyme and psi-ionone under suitable conditions to produce cis-α-irone. The enzyme may be a methyltransferase from Streptomyces albireticuli (SaMT), a promiscuous bifunctional methyltransferase/cyclase (pMT1) enzyme from Streptomyces, or a modified pMT1 enzyme with at least one substitution. The enzymes allow the in-vivo and in-vitro production of cis-α-irone including the use of glucose as feedstock for the biotransformation into cis-α-irone.

    专利号:WO-2025081225-A1
    优先权日:2023-10-17
    标 题 :Synthesis of polyphenols
    发明人:TURLAND CADE LACHLAN; GROLMAN DAVID; BEHRENDORFF JAMES BRUCE YARNTON HAYCOCK; MORADI SHAYLI VARASTEH; THOMSON RAINE ELIZABETH STURT
    权利人:Delica Therapeutics Pty Ltd
    摘要:The present disclosure relates to polyphenols, including flavonoids, flavones and cannflavins, and methods of synthesising polyphenols. The present disclosure provides methods, enzymes and compositions that may be useful in the synthesis of polyphenols.
    西安康诺化工有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.konochemical.com
    企业联系电话:13289246953👤
    📞西安康诺化工有限公司 ⚠️参考联系方式
    联系人:高先生
    电话:13289246953
    手机:13289246953
    传真:QQ:1075836660
    邮箱:info@konochemical.com
    通信地址: 陕西省西安市长安区上林苑四路1701号 西安佑鑫电子 B座 301
    邮编: QQ:1075836660
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:陕西省西安市长安区上林苑四路1701号 西安佑鑫电子 B座 301
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    开平牵牛生化制药有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.genuine.com.cn
    电话: 0750-2882278👤
    📞开平牵牛生化制药有限公司 ⚠️参考联系方式

    销售电话:0750-2882278
    邮箱:xiaozy@genuine.com.cn
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别 ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    陕西帕尼尔生物科技有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.pioneerbiotech.com
    企业联系电话:029-84385017-8001👤
    📞陕西帕尼尔生物科技有限公司 ⚠️参考联系方式
    联系人:高经理;肖经理
    电话:029-84385017-8001
    手机:高经理13259417953
    传真:QQ:1477918929
    邮箱:sales5@pioneebiotech.com
    通信地址: 陕西省西安市未央区凤城十路保利中达广场
    邮编: 710000
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:陕西省西安市未央区凤城十路保利中达广场
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    武汉华玖医药科技有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.whhjpharm.com
    企业联系电话:18120446293👤
    📞武汉华玖医药科技有限公司 ⚠️参考联系方式
    联系人:汪经理
    电话:18120446293
    手机:18120446293
    传真:027-59220200
    邮箱:3504472216@qq.com
    通信地址: 武汉市东西湖区泾河办事处陈家岭189号
    邮编: 432000
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:武汉市东西湖区泾河办事处陈家岭189号
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    杭州鼎燕化工有限公司
    ⚠️ 未注册 · 未认证企业
    ⚠️ 该商家尚未完成注册及企业认证,请用户仔细辨别,谨慎交易。
    数据来源于公开网络搜索,平台未作核实,请自行辨别。
    🏢敬请 企业认领
    🏬开设公司展台
    📢获取免费会员权益
    🎖️点亮专属注册企业标签
    📇展现公司完整信息 样本查看立即注册认领 →
    网址: http://www.dingyanchem.com
    企业联系电话:18267553885👤
    📞杭州鼎燕化工有限公司 ⚠️参考联系方式
    联系人:林女士
    电话:18267553885
    手机:18267553885
    传真:0571-87156470
    邮箱:sales@dingyanchem.com
    通信地址: 杭州市江干区下沙19号大街571号下沙电子商务园4A601-602室
    邮编: 310018
    🆔 联系时候可告知是从"百琢研"平台获取的信息.
    ⚠️ 声明: 该企业未认证、未认领,请自行辨别信息的真实性和可靠性。咨询或交易时请注意风险评估与信息核实,百琢研不参与任何交易。企业认领注册入口→

    地址:杭州市江干区下沙19号大街571号下沙电子商务园4A601-602室
    ⚠️ 未注册 · 未认证企业
    注册入口 备注: 📌 数据来源说明:本展台内容基于各搜索引擎等公开数据整理,仅作展示用途。请用户自行辨别
    ✉️ 若企业需抹除展台内容或有异议, 请通过页面底部联系方式告知我们,我们会尽快处理。
    第 1 / 1 页
    现货

    供应商参考报价(招募中)

    品牌试剂参考报价(招募中)

    📌 第三方产品分析报告

    ✅ COA系统入驻 | 共享模式

    主要参考文献


    1: Pogotova GA. [AN INFLUENCE OF ADEMETIONINE ON AN ENERGY METABOLISM, PROOXIDANT-ANTIOXIDANT SYSTEM IN LIVER, MYOCARDIUM, AND BRAIN OF RATS IN THE PRESENCE OF THE DICHLOROETHANE HEPATITIS]. Lik Sprava. 2015 Jul-Sep;(5-6):120-5. Ukrainian. eCollection 2015.
    3: Virukalpattigopalratnam MP, Singh T, Ravishankar AC. Heptral (ademetionine) in patients with intrahepatic cholestasis in chronic liver disease due to non-alcoholic liver disease: results of a multicentre observational study in India. J Indian Med Assoc. 2013 Dec;111(12):856-9. doi: 10.7534/j.issn.1009-2137.2013.05.044. Chinese. Russian. Russian. Russian. Chinese. Russian. Chinese. German. Review. Review. Italian. Italian. German.

    合成参考文献


    参考文献:10.1371/journal.pone.0020852
    摘要:Murphy K, O'Sullivan O, Rea MC, Cotter PD, Ross RP, Hill C. Genome Mining for Radical SAM Protein Determinants Reveals Multiple Sactibiotic-Like Gene Clusters. PLoS ONE. 2011 Jul 08;6(7):e20852. doi: 10.1371/journal.pone.0020852.
    参考文献:10.1016/j.bioorg.2011.06.001
    摘要:Lin H. S-Adenosylmethionine-dependent alkylation reactions: When are radical reactions used Bioorganic Chemistry. 2011 Dec;39(5-6):161–70. doi: 10.1016/j.bioorg.2011.06.001.
    参考文献:10.1074/jbc.r111.272690
    摘要:Zhang Q, Liu W. Complex Biotransformations Catalyzed by Radical S-Adenosylmethionine Enzymes. Journal of Biological Chemistry. 2011 Sep;286(35):30245–52. doi: 10.1074/jbc.r111.272690.
    参考文献:10.1186/1471-2180-13-35
    摘要:Cascio V, Gittings D, Merloni K, Hurton M, Laprade D, Austriaco N. S-Adenosyl-L-methionine protects the probiotic yeast, Saccharomyces boulardii, from acid-induced cell death. BMC Microbiol. 2013 Feb 13;13():35.
    📝 需求与反馈
    尽可能描述清楚需求与问题信息
    ×

    通知