Department of Chemistry, Stony Brook University, Stony Brook, NY, USA.
Department of Anesthesiology, Renaissance School of Medicine, Stony Brook University, Stony Brook, NY 11794, USA.
Bioorg Med Chem. 2023 Oct 30;94:117464. doi: 10.1016/j.bmc.2023.117464. Epub 2023 Sep 4.
Fatty acid binding proteins (FABPs) are intracellular chaperones that deliver bioactive lipids to cytosolic enzymes and nuclear receptors, thereby regulating diverse biological functions. FABP5 is a member of the FABP family that mediates endocannabinoid transport and inactivation, with pharmacological or genetic FABP5 inhibition conferring antinociceptive effects. Consequently, FABP5 inhibitors have emerged as promising analgesics and demonstrate antinociceptive activity in models of pain. Recently developed FABP5 inhibitors based upon the α-truxillic acid monoester (TAME) scaffold demonstrate high affinities for FABP5 but are commonly accompanied by reduced selectivity against related FABPs, notably FABP3 that is expressed in the heart, highlighting the need to identify additional scaffolds that afford enhanced selectivity while maintaining FABP5 potency. Here, we describe the synthesis and biological evaluation of truxillic acid monoamides (TAMADs) as potent, selective, and efficacious FABP5 inhibitors. Combining in silico molecular docking and in vitro binding assay approaches, our findings demonstrate that TAMADs exhibit exceptional selectivity against FABP3 and several compounds attain high FABP5 affinities. Examination of antinociceptive activity revealed that TAMADs and their corresponding TAMEs demonstrate comparable efficacy and temporal activity profiles in vivo. These results position TAMAD as a suitable scaffold for the development of FABP5 inhibitors with diminished FABP3 cross-reactivity.
脂肪酸结合蛋白(FABP)是细胞内伴侣蛋白,可将生物活性脂质递送至胞质酶和核受体,从而调节多种生物学功能。FABP5 是 FABP 家族的成员,可介导内源性大麻素的转运和失活,药理学或遗传抑制 FABP5 可产生镇痛作用。因此,FABP5 抑制剂已成为有前途的镇痛药,并在疼痛模型中显示出镇痛活性。最近基于α-曲酸单酯(TAME)支架开发的 FABP5 抑制剂对 FABP5 具有高亲和力,但通常对相关 FABP 的选择性降低,特别是在心脏中表达的 FABP3,这凸显了需要确定额外的支架,以在保持 FABP5 效力的同时提供增强的选择性。在这里,我们描述了曲酸单酰胺(TAMAD)作为有效、选择性和有效的 FABP5 抑制剂的合成和生物学评价。通过计算机模拟分子对接和体外结合测定方法,我们的研究结果表明,TAMAD 对 FABP3 表现出优异的选择性,并且几种化合物具有高 FABP5 亲和力。镇痛活性研究表明,TAMAD 和相应的 TAME 在体内具有相当的疗效和时间活性谱。这些结果表明 TAMAD 是开发对 FABP3 交叉反应性降低的 FABP5 抑制剂的合适支架。