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The astrocyte surface NAAG receptor and NAAG peptidase signaling complex as a therapeutic target.

机译:星形胶质细胞表面NAAG受体和NAAG肽酶信号复合物作为治疗靶标。

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There is evidence that schizophrenia and other neuropathies may involve malfunction of a unique N-acetylaspartylglutamate (NAAG) receptor and its associated NAAG peptidase, a receptor and enzyme found together on the astrocyte surface. NAAG is a peptide neurotransmitter released by stimulated neurons and specifically targeted to the group II metabotropic glutamate receptor 3 (mGlu(3)), activation of which initiates astrocyte Ca(2+) waves responsible for astrocyte-astrocyte and astrocyte-vascular system signaling and induction of vascular hyperemic responses that increase energy supplies to stimulated neurons. In this review, it is hypothesized that the receptor and enzyme exist as a cytostructural unit on the astrocyte surface, and the nature of this proposed mGlu(3)-NAAG peptidase complex is considered in terms of its physiological signaling role, and of the effect of drugs on this role. The mGlu(3) receptor has been the target of extrinsic antagonists and agonists that mimic NAAG structure and compete with natural NAAG for the receptor site. NAAG metabolism has also been the target of extrinsic NAAG-like substances that inhibit NAAG peptidase, competing with NAAG for the enzyme active site. Several drugs that affect the mGlu(3) receptor or NAAG peptidase have reached a stage of human testing. Two are agonists of the mGlu(3) receptor, and another is an NAAG peptidase inhibitor. These substances appear to have potential for treating schizophrenia and other cognitive neuropathies by interfering with a homeostatic NAAG activated neuron-astrocyte-vascular energy supply system.
机译:有证据表明,精神分裂症和其他神经病可能涉及独特的N-乙酰天门冬氨酸谷氨酸(NAAG)受体及其相关的NAAG肽酶,星形胶质细胞表面上同时存在的一种受体和酶的功能障碍。 NAAG是由受刺激的神经元释放的肽类神经递质,并且专门针对II组代谢型谷氨酸受体3(mGlu(3)),其激活会启动星形胶质细胞Ca(2+)波,负责星形胶质细胞-星形细胞和星形胶质细胞-血管系统的信号传导和诱导血管充血反应,增加对受激神经元的能量供应。在这篇综述中,假设受体和酶作为星形胶质细胞表面上的细胞结构单元存在,并且从其生理信号传导作用和作用的角度考虑了该提议的mGlu(3)-NAAG肽酶复合物的性质。药物对这个作用。 mGlu(3)受体已成为模拟NAAG结构并与天然NAAG竞争受体位点的外在拮抗剂和激动剂的靶标。 NAAG代谢也已成为抑制NAAG肽酶,与NAAG竞争酶活性位点的外源性NAAG样物质的目标。影响mGlu(3)受体或NAAG肽酶的几种药物已进入人体测试阶段。两个是mGlu(3)受体的激动剂,另一个是NAAG肽酶抑制剂。这些物质似乎有可能通过干扰稳态的NAAG激活的神经元-星形胶质细胞-血管能量供应系统来治疗精神分裂症和其他认知神经病。

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