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Inhibition of T Cell Receptor Activation by Semi-Synthetic Sesquiterpene Lactone Derivatives and Molecular Modeling of Their Interaction with Glutathione and Tyrosine Kinase ZAP-70

机译:半合成倍半萜烯内酯衍生物抑制T细胞受体活化及其与谷胱甘肽和酪氨酸激酶ZAP-70相互作用的分子模型

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A variety of natural compounds have been shown to modulate T cell receptor (TCR) activation, including natural sesquiterpene lactones (SLs). In the present studies, we evaluated the biological activity of 11 novel semi-synthetic SLs to determine their ability to modulate TCR activation. Of these compounds, α -epoxyarglabin, cytisinyl epoxyarglabin, 1 β ,10 α -epoxyargolide, and chloroacetate grosheimin inhibited anti-CD3-induced Ca2+ mobilization and extracellular signal-regulated kinase 1/2 (ERK1/2) phosphorylation in Jurkat T cells. We also found that the active SLs depleted intracellular glutathione (GSH) in Jurkat T cells, supporting their reactivity towards thiol groups. Because the zeta-chain associated tyrosine kinase 70 kDa (ZAP-70) is essential for TCR signaling and contains a tandem SH2 region that is highly enriched with multiple cysteines, we performed molecular docking of natural SLs and their semi-synthetic derivatives into the ZAP-70 binding site. The docking showed that the distance between the carbon atom of the exocyclic methylene group and the sulfur atom in Cys39 of the ZAP-70 tandem SH2 module was 3.04-5.3 for active compounds. Furthermore, the natural SLs and their derivatives could be differentiated by their ability to react with the Cys39 SH-group. We suggest that natural and/or semi-synthetic SLs with an α -methylene- γ -lactone moiety can specifically target GSH and the kinase site of ZAP-70 and inhibit the initial phases of TCR activation.
机译:已显示多种天然化合物可调节T细胞受体(TCR)活化,包括天然倍半萜内酯(SLs)。在本研究中,我们评估了11种新型半合成SL的生物活性,以确定其调节TCR激活的能力。在这些化合物中,α-环氧精蛋白,胱氨酰环氧精蛋白,1β,10α-环氧果糖脂和氯乙酸罗汉明抑制Jurkat T细胞中抗CD3诱导的Ca2 +动员和细胞外信号调节激酶1/2(ERK1 / 2)磷酸化。我们还发现活性SL消耗Jurkat T细胞中的细胞内谷胱甘肽(GSH),从而支持了它们对巯基的反应性。因为Zeta链相关酪氨酸激酶70 kDa(ZAP-70)对于TCR信号传导至关重要,并且包含高度富含多个半胱氨酸的串联SH2区,所以我们将天然SL及其半合成衍生物分子对接到ZAP中-70结合位点。对接表明,对于活性化合物,ZAP-70串联SH2模块的Cys39中环亚甲基的碳原子与硫原子之间的距离为3.04-5.3。此外,天然SL及其衍生物可通过与Cys39 SH-基团反应的能力加以区分。我们建议具有α-亚甲基-γ-内酯部分的天然和/或半合成SL可以特异性地靶向GSH和ZAP-70的激酶位点,并抑制TCR激活的初始阶段。

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