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BTN3A1配体的合成与代谢:烯丙醇修饰的研究

Synthesis and Metabolism of BTN3A1 Ligands: Studies on Modifications of the Allylic Alcohol.

作者信息

Lentini Nicholas A, Schroeder Chloe M, Harmon Nyema M, Huang Xueting, Schladetsch Megan A, Foust Benjamin J, Poe Michael M, Hsiao Chia-Hung Christine, Wiemer Andrew J, Wiemer David F

机构信息

Department of Chemistry, University of Iowa, Iowa City, Iowa 52242-1294, United States.

Department of Pharmaceutical Sciences, University of Connecticut, Storrs, Connecticut 06269-3092,United States.

出版信息

ACS Med Chem Lett. 2020 Dec 4;12(1):136-142. doi: 10.1021/acsmedchemlett.0c00586. eCollection 2021 Jan 14.

Abstract

()-4-Hydroxy-3-methyl-but-2-enyl diphosphate (HMBPP) and its phosphonate analogs are potent phosphoantigens. HMBPP contains an ()-allylic alcohol which interacts with the molecular target BTN3A1 giving an antigenic signal to activate Vγ9Vδ2 T cells. As probes of BTN3A1 function, we prepared prodrug derivatives of the HMBPP analog C-HMBP that lack the ()-allylic alcohol or have modified it to an aldehyde or aldoxime and evaluated their biological activity. Removal of the alcohol completely abrogates phosphoantigenicity in these compounds while the aldoxime modification decreases potency relative to the ()-allylic alcohol form. However, homoprenyl derivatives oxidized to an aldehyde stimulate Vγ9Vδ2 T cells at nanomolar concentrations. Selection of phosphonate protecting groups (i.e., prodrug forms) impacts the potency of phosphoantigen aldehydes, with mixed aryl acyloxyalkyl forms exhibiting superior activity relative to aryl amidate forms. The activity correlates with the cellular reduction of the aldehyde to the alcohol form. Thus, the functionality on this ligand framework can be altered concurrently with phosphonate protection to promote cellular transformation to highly potent phosphoantigens.

摘要

()-4-羟基-3-甲基-丁-2-烯基二磷酸酯(HMBPP)及其膦酸酯类似物是有效的磷酸抗原。HMBPP含有一个()-烯丙醇,它与分子靶点BTN3A1相互作用,发出抗原信号以激活Vγ9Vδ2 T细胞。作为BTN3A1功能的探针,我们制备了HMBPP类似物C-HMBP的前药衍生物,这些衍生物缺乏()-烯丙醇或将其修饰为醛或醛肟,并评估了它们的生物活性。去除醇基会完全消除这些化合物中的磷酸抗原性,而醛肟修饰相对于()-烯丙醇形式会降低效力。然而,氧化为醛的类异戊二烯衍生物在纳摩尔浓度下可刺激Vγ9Vδ2 T细胞。膦酸酯保护基团(即前药形式)的选择会影响磷酸抗原醛的效力,混合芳基酰氧基烷基形式相对于芳基酰胺形式表现出更高的活性。该活性与醛向醇形式的细胞还原相关。因此,在进行膦酸酯保护的同时,可以改变该配体框架上的官能团,以促进细胞转化为高效的磷酸抗原。

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