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替考拉宁的内酰胺和扩环类似物的设计、合成与研究

Design, Synthesis, and Study of Lactam and Ring-Expanded Analogues of Teixobactin.

作者信息

Yang Hyunjun, Pishenko Arthur V, Li Xingyue, Nowick James S

机构信息

Department of Chemistry and Department of Pharmaceutical Sciences , University of California , Irvine , California 92697-2025 , United States.

出版信息

J Org Chem. 2020 Feb 7;85(3):1331-1339. doi: 10.1021/acs.joc.9b02631. Epub 2019 Dec 9.

Abstract

This paper describes the chemical synthesis, X-ray crystallographic structure, and antibiotic activity assay of lactam analogues of teixobactin and explores ring-expanded analogues of teixobactin with β-homo amino acids. Lactam analogues of teixobactin containing all four stereoisomers of aza-threonine at position 8 were synthesized on a solid support from commercially available stereoisomeric threonine derivatives. The threonine stereoisomers are converted to the diastereomeric aza-threonines by mesylation, azide displacement, and reduction during the synthesis. d-Aza-Thr,Arg-teixobactin exhibits 2-8-fold greater antibiotic activity than the corresponding macrolactone Arg-teixobactin. Azateixobactin analogues containing other stereoisomers of aza-threonine are inactive. A dramatic 16-128-fold increase in the activity of teixobactin and teixobactin analogues is observed with the inclusion of 0.002% of the mild detergent polysorbate 80 in the MIC assay. The X-ray crystallographic structure of -Me-d-Gln,d-aza-Thr,Arg-teixobactin reveals an amphipathic hydrogen-bonded antiparallel β-sheet dimer that binds chloride anions. In the binding site, the macrolactam amide NH groups of residues 8, 10, and 11, as well as the extra amide NH group of the lactam ring, hydrogen bond to the chloride anion. The teixobactin pharmacophore tolerates ring expansion of the 13-membered ring to 14-,15-, and 16-membered rings containing β-homo amino acids with retention of partial or full antibiotic activity.

摘要

本文描述了替考拉宁内酰胺类似物的化学合成、X射线晶体学结构及抗生素活性测定,并探索了含β-高氨基酸的替考拉宁环扩展类似物。在固相载体上,由市售的立体异构苏氨酸衍生物合成了在8位含有氮杂苏氨酸所有四种立体异构体的替考拉宁内酰胺类似物。在合成过程中,通过甲磺酰化、叠氮化物取代和还原反应,将苏氨酸立体异构体转化为非对映异构的氮杂苏氨酸。d-氮杂-Thr,Arg-替考拉宁的抗生素活性比相应的大环内酯类Arg-替考拉宁高2至8倍。含有其他氮杂苏氨酸立体异构体的氮杂替考拉宁类似物无活性。在MIC测定中加入0.002%的温和去污剂聚山梨醇酯80后,观察到替考拉宁及其类似物的活性显著提高了16至128倍。-Me-d-Gln,d-氮杂-Thr,Arg-替考拉宁的X射线晶体学结构揭示了一种结合氯离子的两亲性氢键反平行β-折叠二聚体。在结合位点,8、10和11位残基的大环内酰胺酰胺NH基团以及内酰胺环的额外酰胺NH基团与氯离子形成氢键。替考拉宁药效团能够耐受13元环扩展为含有β-高氨基酸并保留部分或全部抗生素活性的14、15和16元环。

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