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嗜热栖热菌异源四聚体硝酸还原酶的膜相关成熟

Membrane-associated maturation of the heterotetrameric nitrate reductase of Thermus thermophilus.

作者信息

Zafra Olga, Cava Felipe, Blasco Francis, Magalon Axel, Berenguer Jose

机构信息

Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Científicas-Universidad Autónoma de Madrid, Campus de Cantoblanco, 28049 Madrid, Spain.

出版信息

J Bacteriol. 2005 Jun;187(12):3990-6. doi: 10.1128/JB.187.12.3990-3996.2005.

Abstract

The nar operon, coding for the respiratory nitrate reductase of Thermus thermophilus (NRT), encodes a di-heme b-type (NarJ) and a di-heme c-type (NarC) cytochrome. The role of both cytochromes and that of a putative chaperone (NarJ) in the synthesis and maturation of NRT was studied. Mutants of T. thermophilus lacking either NarI or NarC synthesized a soluble form of NarG, suggesting that a putative NarCI complex constitutes the attachment site for the enzyme. Interestingly, the NarG protein synthesized by both mutants was inactive in nitrate reduction and misfolded, showing that membrane attachment was required for enzyme maturation. Consistent with its putative role as a specific chaperone, inactive and misfolded NarG was synthesized by narJ mutants, but in contrast to its Escherichia coli homologue, NarJ was also required for the attachment of the thermophilic enzyme to the membrane. A bacterial two-hybrid system was used to demonstrate the putative interactions between the NRT proteins suggested by the analysis of the mutants. Strong interactions were detected between NarC and NarI and between NarG and NarJ. Weaker interaction signals were detected between NarI, but not NarC, and both NarG and NarH. These results lead us to conclude that the NRT is a heterotetrameric (NarC/NarI/NarG/NarH) enzyme, and we propose a model for its synthesis and maturation that is distinct from that of E. coli. In the synthesis of NRT, a NarCI membrane complex and a soluble NarGJH complex are synthesized in a first step. In a second step, both complexes interact at the cytoplasmic face of the membrane, where the enzyme is subsequently activated with the concomitant conformational change and release of the NarJ chaperone from the mature enzyme.

摘要

编码嗜热栖热菌呼吸硝酸盐还原酶(NRT)的nar操纵子,编码一种双血红素b型(NarJ)和一种双血红素c型(NarC)细胞色素。研究了这两种细胞色素以及一种假定的伴侣蛋白(NarJ)在NRT合成和成熟过程中的作用。缺乏NarI或NarC的嗜热栖热菌突变体合成了可溶性形式的NarG,这表明一种假定的NarCI复合物构成了该酶的附着位点。有趣的是,这两种突变体合成的NarG蛋白在硝酸盐还原中无活性且折叠错误,表明酶的成熟需要膜附着。与它作为特异性伴侣蛋白的假定作用一致,narJ突变体合成了无活性且折叠错误的NarG,但与大肠杆菌的同源物不同,NarJ也是嗜热酶附着到膜上所必需的。利用细菌双杂交系统来证明突变体分析所提示的NRT蛋白之间的假定相互作用。在NarC和NarI之间以及NarG和NarJ之间检测到强相互作用。在NarI与NarG和NarH之间检测到较弱的相互作用信号,但NarC与它们之间未检测到。这些结果使我们得出结论,NRT是一种异源四聚体(NarC/NarI/NarG/NarH)酶,并且我们提出了一种与大肠杆菌不同的其合成和成熟模型。在NRT的合成中,第一步合成NarCI膜复合物和可溶性NarGJH复合物。第二步,这两种复合物在膜的细胞质面相互作用,随后酶在伴随着构象变化和NarJ伴侣蛋白从成熟酶中释放的情况下被激活。

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