Banci Lucia, Bertini Ivano, Cramaro Fiorenza, Del Conte Rebecca, Viezzoli Maria Silvia
Department of Chemistry and Centro Risonanze Magnetiche, University of Florence, Via Luigi Sacconi 6, 50019 Sesto Fiorentino, Italy.
Biochemistry. 2003 Aug 19;42(32):9543-53. doi: 10.1021/bi034324m.
The solution structure of the demetalated copper, zinc superoxide dismutase is obtained for the monomeric Glu133Gln/Phe50Glu/Gly51Glu mutant through NMR spectroscopy. The demetalated protein still has a well-defined tertiary structure; however, two beta-strands containing two copper ligands (His46 and His48, beta4) and one zinc ligand (Asp83, beta5) are shortened, and the sheet formed by these strands and strands beta7 and beta8 moves away from the other strands of the beta-barrel to form an open clam with respect to a closed conformation in the holoprotein. Furthermore, loop IV which contains three zinc ligands (His63, His71, and His80) and loop VII which contributes to the definition of the active cavity channel are severely disordered, and experience extensive mobility as it results from thorough (15)N relaxation measurements. These structural and mobility data, if compared with those of the copper-depleted protein and holoprotein, point out the role of each metal ion in the protein folding, leading to the final tertiary structure of the holoprotein, and provide hints for the mechanisms of metal delivery by metal chaperones.
通过核磁共振光谱法获得了单体Glu133Gln/Phe50Glu/Gly51Glu突变体脱金属铜锌超氧化物歧化酶的溶液结构。脱金属蛋白仍具有明确的三级结构;然而,包含两个铜配体(His46和His48,β4)和一个锌配体(Asp83,β5)的两条β链缩短,由这些链以及β7和β8链形成的片层相对于全蛋白中的封闭构象从β桶的其他链移开,形成一个开放的蛤状结构。此外,包含三个锌配体(His63、His71和His80)的环IV以及有助于定义活性腔通道的环VII严重无序,并且通过全面的(15)N弛豫测量显示出广泛的流动性。这些结构和流动性数据,如果与贫铜蛋白和全蛋白的数据相比,指出了每种金属离子在蛋白质折叠中的作用,导致了全蛋白的最终三级结构,并为金属伴侣传递金属的机制提供了线索。