CAS: 17885-08-4; Dl-O-Phosphoserine

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407-41-0 1114-81-4 73913-63-0

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CAS号302-84-1 DL-丝氨酸 | CAS号7664-38-2 磷酸 | CAS号407-41-0 L-O-磷酸丝氨酸 | CAS号312-84-5 D-丝氨酸(mM/ml) | CAS号56-45-1 L-丝氨酸 | CAS号73913-63-0 O-磷酸-D-丝氨酸 | CAS号302-84-1 DL-丝氨酸

合成工艺路线路线简述

    O-Diphenoxyphosphoryl-Dl-Serine Ethyl Ester; Hydrobromide置于sodium Hydroxide体系中,化学反应生成Dl-O-磷酸丝氨酸
    参考文献:Riley Et Al.,Journal Of The Chemical Society,1957,P. 1373,1375
    标题:Riley Et Al.,Journal Of The Chemical Society,1957,P. 1373,1375

    海关参考信息

    专利信息


    专利号:US-12421534-B2
    优先权日:2021-11-10
    标 题 :Engineered enzymes and method for the synthesis of diverse tyrosine analogs
    发明人:ALMHJELL PATRICK J; ARNOLD FRANCES H
    权利人:CALIFORNIA INST OF TECHN
    摘要:Provided herein is an engineered tryptophan synthase β-subunit (TrpB) that catalyzes the synthesis of tyrosine, tyrosine analogs, or salts thereof. Also provided herein are methods for preparing tyrosine, tyrosine analogs, or a salt thereof using the engineered TrpB described herein.

    专利号:US-7301006-B2
    优先权日:2002-07-16
    标 题 :Methods and materials for the synthesis of modified peptides
    发明人:YOUNG TRAVIS G; KIESSLING LAURA L
    权利人:WISCONSIN ALUMNI RES FOUND
    摘要:Methods and protected amino acids useful as building blocks (protected monomers) for the synthesis of peptides and proteins that are selectively modified at one or more side-chain hydroxyl groups. Azide-bearing protecting groups allow the selective deprotection of side-chain hydroxyl groups of amino acids after synthesis of a peptide. Reaction conditions for removal of the azide-bearing protecting group can be selected which are substantially orthogonal to those that will remove α-amino protecting groups typically employed in peptide synthesis, such that hydroxyl groups protected with the azide-bearing protecting group remain protected during synthesis of the peptide chain. Various protecting groups which are readily available can be used for protecting potentially reactive side chain groups of amino acids in the peptide or protein to be modified. Preferred side-chain protecting groups are chemically distinguishable from the azide-bearing protecting group and substantially orthogonal reaction conditions can be selected such that side-chain protection of other amino acids is maintained when the azide-bearing protecting group is removed. The use of the azide-bearing protecting group of this invention for one or more hydroxy amino acids during peptide synthesis allows the selective unmasking of those azide-protected side-chain hydroxyl groups and selective modification of the hydroxyl groups that are selectively unmasked. The methods and materials herein are particularly used in synthesis of sulfated, phosphorylated and glycosylated peptides and proteins. Kits and methods of synthesizing a modified peptide or protein using the kits are also provided.

    专利号:US-5977301-A
    优先权日:1992-09-24
    标题 :Synthesis of N-substituted oligomers
    发明人:ZUCKERMAN RONALD N; KERR JANICE M; KENT STEPHEN B H; MOOS WALTER H; SIMON REYNA J; GOFF DANE A
    权利人:CHIRON CORP
    摘要:A solid-phase method for the synthesis of N-substituted oligomers, such as poly (N-substituted glycines) (referred to herein as poly NSGs) is used to obtain oligomers, such as poly NSGs of potential therapeutic interest which poly NSGs can have a wide variety of side-chain substituents. Each N-substituted glycine monomer is assembled from two 'sub-monomers' directly on the solid support. Each cycle of monomer addition consists of two steps: (1) acylation of a secondary amine bound to the support with an acylating agent comprising a leaving group capable of nucleophilic displacement by -NH2, such as a haloacetic acid, and (2) introduction of the side-chain by nucleophilic displacement of the leaving group, such as halogen (as a resin-bound alpha -haloacetamide) with a sufficient amount of a second sub-monomer comprising an -NH2 group, such as a primary amine, alkoxyamine, semicarbazide, acyl hydrazide, carbazate or the like. Repetition of the two step cycle of acylation and displacement gives the desired oligomers. The efficient synthesis of a wide variety of oligomeric NSGs using automated synthesis technology of the present method makes these oligomers attractive candidates for the generation and rapid screening of diverse peptidomimetic libraries. The oligomers of the invention, such as N-substituted glycines (i.e. poly NSGs) disclosed here provide a new class of peptide-like compounds not found in nature, but which are synthetically accessible and have been shown to possess significant biological activity and proteolytic stability.

    专利号:EP-0671928-B1
    优先权日:1992-09-24
    标题 :Synthesis of n-substituted oligomers
    发明人:ZUCKERMANN RONALD N; KERR JANICE M; KENT STEPHEN BRIAN HENRY; MOOS WALTER H; SIMON REYNA J; GOFF DANE A
    权利人:CHIRON CORP
    摘要:Poly N-substituted Glycines (poly NSGs), wherein the substituents bear purine or pyrimidine bases (R<9>) every second glycine: In addition, a solid phase method for the synthesis of N-substituted oligomers of more general structures is disclosed.The poly NSGs obtainable by this method can have a wide variety of side-chain substituents. Each N-substituted glycine monomer is assembled from two 'sub-monomers' directly on the solid support. Each cycle of monomer addition consists of two steps: (1) acylation of a secondary amine bound to the support with an acylating agent comprising a leaving group capable of nucleophilic displacement by -NH2, such as a haloacetic acid, and (2) introduction of the side-chain by nucleophilic displacement of the leaving group, such as halogen (as a resin-bound alpha -haloacetamide) with a sufficient amount of a second sub-monomer comprising an -NH2 group, such as a primary amine, alkoxyamine, semicarbazide, acyl hydrazide, carbazate or the like. Repetition of the two step cycle of acylation and displacement gives the desired oligomers. The efficient synthesis of a wide variety of oligomeric NSGs using the automated synthesis technology of the present method makes these oligomers attractive candidates for the generation and rapid screening of diverse peptidomimetic libraries. The oligomers of the invention, such as N-substituted glycines (i.e. poly NSGs) disclosed here provide a new class of peptide-like compounds not found in nature, but which are synthetically accessible and have been shown to possess significant biological activity and proteolytic stability.

    专利号:US-5877278-A
    优先权日:1992-09-24
    标题:Synthesis of N-substituted oligomers
    发明人:ZUCKERMANN RONALD N; GOFF DANE A; NG SIMON; SPEAR KERRY; SCOTT BARBARA O; SIGMUND AARON C; GOLDSMITH RICHARD A; MARLOWE CHARLES K; PEI YAZHONG; RICHTER LUTZ; SIMON REYNA
    权利人:CHIRON CORP
    摘要:A solid-phase method for the synthesis of N-substituted oligomers, such as poly (N-substituted glycines) (referred to herein as poly NSGs) is used to obtain oligomers, such as poly NSGs of potential therapeutic interest which poly NSGs can have a wide variety of side-chain substituents. Each N-substituted glycine monomer is assembled from two 'sub-monomers' directly on the solid support. Each cycle of monomer addition consists of two steps: (1) acylation of a secondary amine bound to the support with an acylating agent comprising a leaving group capable of nucleophilic displacement by -NH2, such as a haloacetic acid, and (2) introduction of the side-chain by nucleophilic displacement of the leaving group, such as halogen (as a solid support-bound alpha -haloacetamide) with a sufficient amount of a second sub-monomer comprising an -NH2 group, such as a primary amine, alkoxyamine, semicarbazide, acyl hydrazide, carbazate or the like. Repetition of the two step cycle of acylation and displacement gives the desired oligomers. The efficient synthesis of a wide variety of oligomeric NSGs using automated synthesis technology of the present method makes these oligomers attractive candidates for the generation and rapid screening of diverse peptidomimetic libraries. The oligomers of the invention, such as N-substituted glycines (i.e. poly NSGs) disclosed here provide a new class of peptide-like compounds not found in nature, but which are synthetically accessible and have been shown to possess significant biological activity and proteolytic stability. Combinatorial libraries of cyclic compounds are disclosed wherein the cyclic compounds are comprised of at least one ring structure derived from cyclization of a peptoid backbone. The diversity of product compounds is generated by the sequential addition of substituted submonomers. The combinatorial library includes 10 or more, preferably 100 or more, and more preferably 1,000 or more distinct and different compounds. The library includes each of the product compounds in retrievable and analyzable amounts and preferably includes at least one biologically active compound. Methods of synthesizing the combinatorial libraries and assay devices produced using the libraries are disclosed as is methodology for screening for and obtaining biologically active cyclic organic compounds.

    专利号:US-5549974-A
    优先权日:1994-06-23
    标题:Methods for the solid phase synthesis of thiazolidinones, metathiazanones, and derivatives thereof
    发明人:HOLMES CHRISTOPHER P
    权利人:AFFYMAX TECH NV
    摘要:The invention provides an efficient and versatile method for the combinatorial synthesis and screening of libraries of 4-thiazolidinones, metathiazanones, and derivatives thereof. In order to expediently synthesize a combinatorial library of derivatives based upon these core structures, a general methodology for the solid phase synthesis of these derivatives is also provided. Arrays of thiazolidinones, metathiazanones, and derivatives thereof useful as peptidomimetics and for the identification of agents having antifungal, antihistaminic, or antimicrobial activity or use in the treatment of inflammation, hypertension, renal failure, congestive heart failure, uremia and other conditions can be prepared using this method.
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    主要参考文献

    [参考文献]: Angela D Cefalo, Et Al. The Streptococcus Thermophilus Protein Wzh Functions As A Phosphotyrosine Phosphatase. Can J Microbiol. 2013 Jun;59(6):391-8.
    [参考文献]: Hua-Lin Fu, Et Al. Tet1 Exerts Its Tumor Suppressor Function By Interacting With P53-Ezh2 Pathway In Gastric Cancer. J Biomed Nanotechnol. 2014 Jul;10(7):1217-30.
    [参考文献]: Jagadeeswaran Chandrasekar, Et Al. Catalytic Dna With Phosphatase Activity. Proc Natl Acad Sci U S A. 2013 Apr 2;110(14):5315-20.
    [参考文献]: Jean-Yves Winum, Et Al. Carbonic Anhydrase Inhibitors. Interaction Of Isozymes I, Ii, Iv, V, And Ix With Organic Phosphates And Phosphonates. Bioorg Med Chem Lett. 2005 Mar 15;15(6):1683-6.
    [参考文献]: Kevin Guo, Et Al. Differential 12C-/13C-Isotope Dansylation Labeling And Fast Liquid Chromatography/mass Spectrometry For Absolute And Relative Quantification Of The Metabolome. Anal Chem. 2009 May 15;81(10):3919-32.

    合成参考文献


    参考文献:10.1093/clinchem/26.7.840
    摘要:Millán JL, Whyte MP, Avioli LV, Fishman WH. Hypophosphatasia (adult form): quantitation of serum alkaline phosphatase isoenzyme activity in a large kindred. 1980 Jun 01;26(7):840–5. doi: 10.1093/clinchem/26.7.840.
    参考文献:10.1667/rr3156
    摘要:Pond CD, Leachman SA, Warters RL. Accumulation, activation and interindividual variation of the epidermal TP53 protein in response to ionizing radiation in organ cultured human skin. Radiat Res. 2004 Jun;161(6):739–45. doi: 10.1667/rr3156.
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