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抑制 HINT1 调制小鼠脊髓伤害感受和 NMDA 诱发的行为。

Inhibition of HINT1 Modulates Spinal Nociception and NMDA Evoked Behavior in Mice.

出版信息

ACS Chem Neurosci. 2019 Oct 16;10(10):4385-4393. doi: 10.1021/acschemneuro.9b00432. Epub 2019 Sep 25.

Abstract

The interactions between the mu-opioid (MOR) and -methyl-d-aspartate receptor (NMDAR) constitute an area of intense investigation because of their contributions to maladaptive neuroplasticity. Recent evidence suggests that their association requires the involvement of histidine triad nucleotide-binding protein (HINT1) with the enzyme's active site being critical in its regulatory role. Since it is known that spinal blockade of NMDA receptors prevents the development of opioid analgesic tolerance, we hypothesized that spinal inhibition of the HINT1 enzyme may similarly inhibit opioid tolerance. To address these questions, we evaluated novel HINT1 active-site inhibitors in two models of NMDAR and MOR interaction, namely, MOR inhibition of spinal NMDA activation and acute endomorphin-2 tolerance. These studies revealed that while the tryptamine carbamate of guanosine inhibitor, TrpGc, blocked both the development of opioid tolerance and the inhibitory effect of opioids on NMDA activation of the NMDA receptor, acyl-sulfamate analogues could only block the latter. Thermodynamic binding and X-ray crystallographic studies suggested that there are key differences between the bound HINT1-inhibitor surfaces that may be responsible for their differential ability to probe the ability of HINT1 to regulate cross talk between the mu-opioid receptor and NMDA receptor in the spinal cord.

摘要

μ-阿片(MOR)和 -甲基-d-天冬氨酸受体(NMDAR)之间的相互作用是一个研究热点,因为它们对适应性神经可塑性有贡献。最近的证据表明,它们的关联需要组氨酸三核苷酸结合蛋白(HINT1)的参与,酶的活性部位在其调节作用中至关重要。由于已知脊髓 NMDA 受体阻断可防止阿片类药物镇痛耐受的发展,我们假设脊髓 HINT1 酶的抑制可能同样抑制阿片类药物耐受。为了解决这些问题,我们在 MOR 抑制脊髓 NMDA 激活和急性内吗啡肽-2 耐受这两种 NMDA 和 MOR 相互作用模型中评估了新型 HINT1 活性位点抑制剂。这些研究表明,虽然鸟嘌呤抑制剂色胺基胍的三唑基氨基甲酸酯阻断了阿片类药物耐受的发展以及阿片类药物对 NMDA 受体 NMDA 激活的抑制作用,但酰基磺酰胺类似物只能阻断后者。热力学结合和 X 射线晶体学研究表明,结合的 HINT1 抑制剂表面之间存在关键差异,这可能是它们在探测 HINT1 调节脊髓中μ-阿片受体和 NMDA 受体之间串扰能力方面的差异能力的原因。

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