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Screening marine natural products for selective inhibitors of key kynurenine pathway enzymes

机译:筛选母线天然产物,用于关键的kynurenine途径酶的选择性抑制剂

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摘要

Kynurenine, a metabolite of tryptophan along the 'kynurenine pathway', is at a branch point of the pathway which can lead to the synthesis of both quinolinic acid (QUIN) and kynurenic acid (KYNA). KYNA is an antagonist of glutamate receptors; however, QUIN is a selective agonist of NMDA receptors, and has been shown to act as an excitotoxic agent. A high QUIN/KYNA ratio has been implicated in a variety of neurological diseases in which excitotoxic neuronal cell death is found, e.g. AIDS-related dementia, stroke, etc. Inhibiting the key enzymes of this pathway (i.e. kynureninase and kynurenine 3-hydroxylase) would lower the QUIN/KYNA ratio, which may potentially have neuroprotective effects. We have developed high through-put assays for kynurenine pathway enzymes which allow us to screen extracts from marine organisms for selective enzyme inhibitors. Active metabolites are purified, isolated and identified by HPLC, high-field NMR and mass spectral techniques. Extracts from a sponge of the Aka species were found to contain a selective inhibitor of kynureninase. We have recently purified and identified the active principal as being serotonin sulfate. Related indoleamines, serotonin and 5-hydroxyindoleacetic acids are inactive. This finding may be suggestive of a novel interaction between the serotoninergic and excitatory amino acid pathways.
机译:Kynurenine是沿着'kynurenine途径'的色氨酸代谢物,是途径的分支点,其可以导致喹啉酸(quin)和鸡蛋酸(Kyna)的合成。 Kyna是谷氨酸受体的拮抗剂;然而,Quin是NMDA受体的选择性激动剂,并且已被证明用作兴奋毒剂。高Quin / Kyna比例涉及各种神经疾病,其中发现兴奋毒性神经细胞死亡,例如,艾滋病相关的痴呆,中风等抑制该途径的关键酶(即kynureninase和kynurenine 3-羟化酶)将降低quin / kyna比,这可能具有神经保护作用。我们为犬留蛋白途径酶开发了高通道测定,其允许我们从海洋生物中筛选出选择性酶抑制剂的筛选。通过HPLC,高场NMR和质谱技术纯化,分离和鉴定活性代谢物。发现来自AKA物种的海绵的提取物含有蛋白质酶的选择性抑制剂。我们最近纯化并鉴定了活跃的本金作为硫酸羟色素素。相关吲哚胺,血清素和5-羟基戊酸酸是无活性的。该发现可能是暗示血清奈诺肾上腺素能和兴奋性氨基酸途径之间的新相互作用。

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