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首页> 外文期刊>Archives of Biochemistry and Biophysics >Molecular and functional characterization of D-3-phosphoglycerate dehydrogenase in the serine biosynthetic pathway of the hyperthermophilic archaeon Sulfolobus tokodaii
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Molecular and functional characterization of D-3-phosphoglycerate dehydrogenase in the serine biosynthetic pathway of the hyperthermophilic archaeon Sulfolobus tokodaii

机译:D-3-磷酸甘油酸脱氢酶在超嗜热古细菌Sulfolobus tokodaii的丝氨酸生物合成途径中的分子和功能表征

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A gene (ST1218) encoding a D-3-phosphoglycerate dehydrogenase (PGDH; EC 1.1.1.95) homolog was found in the genome of Sulfolobus tokodaii strain 7 by screening a database of enzymes likely to contribute to L-serine biosynthesis in hyperthermophilic archaea. After expressing the gene in Escherichia coli, the PGDH activity of the recombinant enzyme was assessed. Homogeneous PGDH was obtained using conventional chromatography steps, though during the purification an unexpected decline in enzyme activity was observed if the enzyme was stored in plastic tubes, but not in glass ones. The purified enzyme was a homodimer with a subunit molecular mass of about 35 kDa and was highly thermostable. It preferably acted as an NAD-dependent D-3-phosphoglycerate (3PGA) dehydrogenase. Although NADP had no activity as the electron acceptor, both NADPH and NADH acted as electron donors. Kinetic analyses indicated that the enzyme reaction proceeds via a Theorell-Chance Bi-Bi mechanism. Unlike E coli PGDH, the S. tokodaii enzyme was not inhibited by L-serine. In addition, both the NAD-dependent 3PGA oxidation and the reverse reaction were enhanced by phosphate and sulfate ions, while NADPH-dependent 3-phosphohydroxypyruvate (PHP) reduction was inhibited. Thus S. tokodaii PGDH appears to be subject to a novel regulatory mechanism not seen elsewhere. A database analysis showed that ST 1218 gene forms a cluster with ST 1217 gene, and a functional analysis of the ST 1217 product expressed in E coli revealed that it possesses L-glutamate-PHP aminotransferase activity. Taken together, our findings represent the first example of a phosphorylated serine pathway in a hyperthermophilic archaeon. (c) 2007 Elsevier Inc. All rights reserved.
机译:通过筛选可能有助于超嗜热古生菌中L-丝氨酸生物合成的酶数据库,在Sulfolobus tokodaii菌株7的基因组中发现了一个编码D-3-磷酸甘油酸脱氢酶(PGDH; EC 1.1.1.95)同源物的基因(ST1218)。在大肠杆菌中表达该基因后,评估了重组酶的PGDH活性。使用常规色谱步骤可得到均相的PGDH,尽管在纯化过程中,如果将酶存储在塑料管中而不是玻璃管中,则会观察到酶活性的意外下降。纯化的酶是具有约35kDa的亚基分子量的同型二聚体,并且是高度热稳定的。它优选充当NAD依赖性D-3-磷酸甘油酸(3PGA)脱氢酶。尽管NADP没有作为电子受体的活性,但是NADPH和NADH都充当电子供体。动力学分析表明酶反应是通过Theorell-Chance Bi-Bi机制进行的。与大肠杆菌PGDH不同,S。tokodaii酶不受L-丝氨酸抑制。此外,磷酸根离子和硫酸根离子增强了NAD依赖性3PGA的氧化和逆反应,而抑制了NADPH依赖性3-磷酸羟基丙酮酸(PHP)的还原。因此,tokodaii PGDH似乎受到一种新的调控机制的约束,这是其他地方所没有的。数据库分析表明ST 1218基因与ST 1217基因形成簇,对大肠杆菌中表达的ST 1217产物的功能分析表明它具有L-谷氨酸-PHP氨基转移酶活性。综上所述,我们的发现代表了超嗜热古菌中磷酸化丝氨酸途径的第一个例子。 (c)2007 Elsevier Inc.保留所有权利。

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