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Studies on the structural background on the cross-inhibition of the products in the arginine metabolism of macrophages

机译:产物在巨噬细胞精氨酸代谢中交叉抑制的结构背景研究

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Arginase and nitric oxide synthase (NOS) were inhibited by nitrite and putrescine, respectively. Results showed a cross-inhibition by the products of the two arginine utilizing pathways in macrophages. The kinetics of these inhibitions have been described earlier. Arginase was measured by the release of urea; NOS activity was determined by measuring 14C-L-citrulline synthesis from 14C-labeled L-arginine. The structural changes of arginase were studied by fluorescence and gel filtration experiments. Nitrite caused a decrease of tryptophane fluorescence over 5 mM concentration without dissociating the arginase oligomers as indicated by gel filtration experiments. The differences in the structural features of L-arginine substrate and putrescine inhibitor made the binding of putrescine to the active site of NOS unlikely. In conclusion, our studies suggest that nitrite causes a non-competitive inhibition of arginase based on a conformational change without the dissociation of the arginase oligomers. For putrescine inhibition we suggest an allosteric mechanism also based on a conformational change.
机译:精氨酸酶和一氧化氮合酶(NOS)分别被亚硝酸盐和腐胺抑制。结果显示两种精氨酸利用产物在巨噬细胞中的交叉抑制。这些抑制的动力学已在前面描述。通过尿素的释放来测量精氨酸酶;通过测量由14C标记的L-精氨酸合成14C-L-瓜氨酸来确定NOS活性。通过荧光和凝胶过滤实验研究了精氨酸酶的结构变化。如凝胶过滤实验所示,亚硝酸盐在5 mM浓度下导致色氨酸荧光降低,而没有解离精氨酸酶低聚物。 L-精氨酸底物和腐胺抑制剂的结构特征的差异使得腐胺与NOS活性位点的结合不太可能。总之,我们的研究表明,亚硝酸盐会基于构象变化而导致精氨酸酶的非竞争性抑制,而不会解离精氨酸酶的低聚物。对于腐胺抑制,我们建议还基于构象变化的变构机制。

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