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本文引用的文献

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Tetrachlorovancomycin: Total Synthesis of a Designed Glycopeptide Antibiotic of Reduced Synthetic Complexity.四氯金霉素:一种设计的低合成复杂度糖肽抗生素的全合成。
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2
Conjugation of Vancomycin with a Single Arginine Improves Efficacy against Mycobacteria by More Effective Peptidoglycan Targeting.将万古霉素与单个精氨酸缀合可通过更有效地靶向肽聚糖来提高抗分枝杆菌的疗效。
J Med Chem. 2023 Aug 10;66(15):10226-10237. doi: 10.1021/acs.jmedchem.3c00565. Epub 2023 Jul 21.
3
Divergent Total Synthesis and Characterization of Maxamycins.达佛霉素的发散全合成及结构表征。
J Am Chem Soc. 2023 Jun 14;145(23):12837-12852. doi: 10.1021/jacs.3c03710. Epub 2023 Jun 6.
4
Improved preparative enzymatic glycosylation of vancomycin aglycon and analogues.改进的万古霉素苷元及类似物的制备性酶促糖基化反应
Tetrahedron. 2023 Jan 26;131. doi: 10.1016/j.tet.2022.133211. Epub 2022 Dec 12.
5
The quest for supernatural products: the impact of total synthesis in complex natural products medicinal chemistry.对超自然产物的追求:全合成对复杂天然产物药物化学的影响。
Nat Prod Rep. 2020 Nov 1;37(11):1511-1531. doi: 10.1039/d0np00060d. Epub 2020 Nov 10.
6
Maxamycins: Durable Antibiotics Derived by Rational Redesign of Vancomycin.麦加霉素:通过对万古霉素进行合理设计而衍生出的耐用抗生素。
Acc Chem Res. 2020 Nov 17;53(11):2587-2599. doi: 10.1021/acs.accounts.0c00569. Epub 2020 Nov 2.
7
Next-Generation Total Synthesis of Vancomycin.万古霉素的下一代全合成。
J Am Chem Soc. 2020 Sep 16;142(37):16039-16050. doi: 10.1021/jacs.0c07433. Epub 2020 Sep 4.
8
Vancomycin C-Terminus Guanidine Modifications and Further Insights into an Added Mechanism of Action Imparted by a Peripheral Structural Modification.万古霉素C末端胍基修饰及对由外周结构修饰赋予的额外作用机制的进一步见解。
ACS Infect Dis. 2020 Aug 14;6(8):2169-2180. doi: 10.1021/acsinfecdis.0c00258. Epub 2020 Jul 14.
9
C1-CBP-vancomycin: Impact of a Vancomycin C-Terminus Trimethylammonium Cation on Pharmacological Properties and Insights into Its Newly Introduced Mechanism of Action.C1-CBP-万古霉素:万古霉素C端三甲基铵阳离子对药理特性的影响及其新引入作用机制的见解
J Org Chem. 2020 Feb 7;85(3):1365-1375. doi: 10.1021/acs.joc.9b02314. Epub 2019 Oct 31.
10
Vancomycin-Arginine Conjugate Inhibits Growth of Carbapenem-Resistant and Targets Cell-Wall Synthesis.万古霉素-精氨酸缀合物抑制碳青霉烯类耐药菌的生长并靶向细胞壁合成。
ACS Chem Biol. 2019 Sep 20;14(9):2065-2070. doi: 10.1021/acschembio.9b00565. Epub 2019 Sep 12.

四氯麦角霉素:不同的全合成及初步评估。

Tetrachloromaxamycins: Divergent Total Synthesis and Initial Assessments.

机构信息

Departments of Chemistry, The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 N. Torrey Pines Road, La Jolla, California 92037, United States.

出版信息

J Org Chem. 2024 Sep 6;89(17):12701-12710. doi: 10.1021/acs.joc.4c01927. Epub 2024 Aug 21.

DOI:10.1021/acs.joc.4c01927
PMID:39169612
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11380578/
Abstract

Divergent total syntheses of binding pocket and peripherally modified tetrachlorovancomycins, a non-native synthetic glycopeptide, and their evaluation are disclosed. Central to the approach is the synthesis of a single late-stage intermediate that bears a residue 4 thioamide ([Ψ[C(═S)NH]Tpg]tetrachlorovancomycin (), LLS 15 steps, 14% overall) as a precursor to either of two key pocket modifications and their pairing with any combination of two peripheral modifications conducted without protecting groups. A stereochemical simplification achieved by the addition of two aryl chlorides removes two synthetically challenging atropisomer centers in native glycopeptides and streamlines the synthesis. Key features include in a convergent epimerization-free thioacylation of the AB ring system amine with an -thioacylbenzotriazolyl DE tetrapeptide (85%) followed by simultaneous room-temperature SAr macrocyclizations of the CD and DE ring systems (96%). The approach provided from which [Ψ[C(═N)NH]Tpg]tetrachlorovancomycin () and [Ψ(CHNH)Tpg]tetrachlorovancomycin () were prepared in a single-step and bear binding pocket modifications that convey dual d-Ala-d-Ala/d-Lac ligand binding to overcome vancomycin resistance. The newest maxamycin members are disclosed, bearing two additional peripheral modifications that introduce two independent synergistic MOAs that do not rely on native ligand binding for activity. Ligand binding properties of pocket-modified tetrachlorovancomycins -, antibacterial activity of a key compound series, and PK assessments of two tetrachloromaxamycins are reported.

摘要

披露了结合口袋和外围修饰的四氯万古霉素(一种非天然合成糖肽)的发散全合成及其评价。该方法的核心是合成一种单一的晚期中间体,该中间体带有一个残基 4 硫酰胺([Ψ[C(═S)NH]Tpg]四氯万古霉素(),LLS 15 步,总收率 14%),作为两种关键口袋修饰的前体,以及在不使用保护基团的情况下与两种外围修饰的任意组合进行配对。通过添加两个芳基氯化物实现的立体化学简化消除了天然糖肽中两个具有挑战性的轴手性中心,简化了合成。关键特征包括 AB 环系统胺的无外消旋硫代酰化与 -硫代酰基苯并三唑基 DE 四肽(85%)的反应,然后在室温下同时进行 CD 和 DE 环系统的 SAr 大环化(96%)。该方法提供了[Ψ[C(═N)NH]Tpg]四氯万古霉素()和[Ψ(CHNH)Tpg]四氯万古霉素(),可通过一步反应制备,并具有结合口袋修饰,可传递双重 d-Ala-d-Ala/d-Lac 配体结合,以克服万古霉素耐药性。披露了最新的 maxamycin 成员,它们带有两个额外的外围修饰,引入了两种独立的协同作用机制,这些机制不依赖于天然配体结合来发挥活性。报道了口袋修饰的四氯万古霉素的配体结合特性、关键化合物系列的抗菌活性以及两种四氯 maxamycin 的 PK 评估。