化学
二肽酶
谷氨酸受体
谷氨酸羧肽酶Ⅱ
酶
生物化学
分解代谢
膦酸盐
神经递质
谷氨酸
乙酰化
生物活性
立体化学
受体
体外
氨基酸
内科学
癌症
基因
前列腺
医学
作者
Paul Jackson,Derek C. Cole,Barbara S. Slusher,S.L. Stetz,Laurie E. Ross,Bruce A. Donzanti,Diane A. Trainor
摘要
A series of substituted phosphonate derivatives were designed and synthesized in order to study the ability of these compounds to inhibit the neuropeptidase N-acetylated α-linked acidic dipeptidase (NAALADase). The molecules were shown to act as inhibitors of the enzyme, with the most potent (compound 3) having a Ki of 0.275 nM. The potency of this compound is more than 1000 times greater than that of previously reported inhibitors of the enzyme. NAALADase is responsible for the catabolism of the abundant neuropeptide N-acetyl-l-aspartylglutamate (NAAG) into N-acetylaspartate and glutamate. NAAG has been proposed to be a neurotransmitter at a subpopulation of glutamate receptors; alternatively, NAAG has been suggested to act as a storage form of synaptic glutamate. As a result, inhibition of NAALADase may show utility as a therapeutic intervention in diseases in which altered levels of glutamate are thought to be involved.
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