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首页> 外文期刊>Current Eye Research >A biotin-coupled bifunctional enzyme exhibiting both glutamine synthetase activity and glutamate decarboxylase activity.
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A biotin-coupled bifunctional enzyme exhibiting both glutamine synthetase activity and glutamate decarboxylase activity.

机译:生物素偶联的双功能酶同时具有谷氨酰胺合成酶活性和谷氨酸脱羧酶活性。

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摘要

PURPOSE: To purify and study native form and enzymatic activity of the 42 kDa biotin-coupled protein (p42), which is related to glutamate action in chick retina. METHODS: p42 was purified using molecular filtration in the presence of 0.7 M sodium chloride. Purity and identification of p42 were studied by SDS-PAGE, 2D-PAGE, LC-MS/MS, and MALDI-TOF MS. The native form of p42 was investigated using native-PAGE and Ferguson plot. Biotin-coupled property was examined by Western blot analysis. Enzymatic actions of p42 were studied using glutamate as substrate in the presence or absence of glutamine. RESULTS: p42 was successfully purified from chick retinal protein solution using the molecular filtration. Western blot analysis with avidin showed that p42 was a biotin-coupled protein. Using SDS-PAGE, 2D-PAGE, LC-MS/MS, and MALDI-TOF MS, purified p42 was identified as a glutamine synthetase with four isoforms. Native-PAGE, followed by Ferguson plot analysis, showed two molecular forms of p42 corresponding to homotetramers and homooctamers. Enzymatic reaction followed by paper chromatography showed that p42 catalyzed the synthesis of glutamine from glutamate in the presence of ammonium ion, ATP, and magnesium ion. At prolonged reaction time, gamma-aminobutyric acid (GABA) was also formed. With glutamate and glutamine present at equal concentrations in the reaction mixture, GABA could be rapidly detected, but GABA could not be detected when glutamate concentration was more than four-fold that of glutamine. The results indicated that p42 also had glutamate decarboxylase activity. Both enzymatic activities were inhibited by avidin. High concentrations of Mn(2+) inhibited synthetase activity of p42 but not decarboxylase activity. CONCLUSION: p42 was purified from chick retinal protein solution using molecular filtration in the presence of sodium chloride. The protein was a biotin-coupled bifunctional enzyme that contained glutamine synthetase activity and glutamate decarboxylase activity. Biotin was possibly involved in these activities. Mn(2+) showed different effects on the two activities.
机译:目的:纯化和研究42 kDa生物素偶联蛋白(p42)的天然形式和酶活性,这与雏鸡视网膜中的谷氨酸作用有关。方法:在0.7 M氯化钠存在下,通过分子过滤纯化p42。通过SDS-PAGE,2D-PAGE,LC-MS / MS和MALDI-TOF MS研究了p42的纯度和鉴定。 p42的天然形式使用native-PAGE和Ferguson图进行了研究。通过Western印迹分析检查生物素偶联的性质。在存在或不存在谷氨酰胺的情况下,以谷氨酸为底物研究了p42的酶促作用。结果:采用分子过滤技术成功地从雏鸡视网膜蛋白溶液中纯化出p42。用抗生物素蛋白进行的蛋白质印迹分析表明,p42是一种生物素偶联蛋白。使用SDS-PAGE,2D-PAGE,LC-MS / MS和MALDI-TOF MS,纯化的p42被鉴定为具有四种同工型的谷氨酰胺合成酶。 Native-PAGE,然后进行Ferguson绘图分析,显示出p42的两种分子形式,分别对应于同四聚体和同八聚体。酶促反应后通过纸色谱分析表明,在铵离子,ATP和镁离子存在下,p42催化谷氨酸合成谷氨酰胺。在延长的反应时间,还会形成γ-氨基丁酸(GABA)。在反应混合物中存在相同浓度的谷氨酸和谷氨酰胺时,可以快速检测到GABA,但是当谷氨酸盐浓度超过谷氨酰胺的四倍时,则无法检测到GABA。结果表明,p42还具有谷氨酸脱羧酶活性。两种酶活性均被抗生物素蛋白抑制。高浓度的Mn(2+)抑制p42的合成酶活性,但不能抑制脱羧酶活性。结论:在氯化钠存在下,通过分子过滤从雏鸡视网膜蛋白溶液中纯化了p42。该蛋白是一种生物素偶联的双功能酶,具有谷氨酰胺合成酶活性和谷氨酸脱羧酶活性。生物素可能参与了这些活动。 Mn(2+)对这两个活动显示不同的影响。

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