Sea Kevin, Sohn Se Hui, Durazo Armando, Sheng Yuewei, Shaw Bryan F, Cao Xiaohang, Taylor Alexander B, Whitson Lisa J, Holloway Stephen P, Hart P John, Cabelli Diane E, Gralla Edith Butler, Valentine Joan Selverstone
From the Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, the Department of Wine Studies, Santa Rosa Junior College, Santa Rosa, California 95401,
From the Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, LG Chem, Ltd., Yuseong-gu, Daejeon 305-380, Korea.
J Biol Chem. 2015 Jan 23;290(4):2405-18. doi: 10.1074/jbc.M114.588798. Epub 2014 Nov 28.
The functional and structural significance of the intrasubunit disulfide bond in copper-zinc superoxide dismutase (SOD1) was studied by characterizing mutant forms of human SOD1 (hSOD) and yeast SOD1 lacking the disulfide bond. We determined x-ray crystal structures of metal-bound and metal-deficient hC57S SOD1. C57S hSOD1 isolated from yeast contained four zinc ions per protein dimer and was structurally very similar to wild type. The addition of copper to this four-zinc protein gave properly reconstituted 2Cu,2Zn C57S hSOD, and its spectroscopic properties indicated that the coordination geometry of the copper was remarkably similar to that of holo wild type hSOD1. In contrast, the addition of copper and zinc ions to apo C57S human SOD1 failed to give proper reconstitution. Using pulse radiolysis, we determined SOD activities of yeast and human SOD1s lacking disulfide bonds and found that they were enzymatically active at ∼10% of the wild type rate. These results are contrary to earlier reports that the intrasubunit disulfide bonds in SOD1 are essential for SOD activity. Kinetic studies revealed further that the yeast mutant SOD1 had less ionic attraction for superoxide, possibly explaining the lower rates. Saccharomyces cerevisiae cells lacking the sod1 gene do not grow aerobically in the absence of lysine, but expression of C57S SOD1 increased growth to 30-50% of the growth of cells expressing wild type SOD1, supporting that C57S SOD1 retained a significant amount of activity.
通过对缺乏二硫键的人超氧化物歧化酶1(hSOD1)和酵母超氧化物歧化酶1的突变体形式进行表征,研究了铜锌超氧化物歧化酶(SOD1)亚基内二硫键的功能和结构意义。我们测定了结合金属和缺乏金属的hC57S SOD1的X射线晶体结构。从酵母中分离出的C57S hSOD1每个蛋白质二聚体含有四个锌离子,其结构与野生型非常相似。向这种四锌蛋白中添加铜可得到正确重构的2Cu,2Zn C57S hSOD,其光谱性质表明铜的配位几何结构与全酶野生型hSOD1非常相似。相比之下,向脱辅基C57S人SOD1中添加铜离子和锌离子未能实现正确重构。使用脉冲辐解,我们测定了缺乏二硫键的酵母和人SOD1的SOD活性,发现它们的酶活性约为野生型速率的10%。这些结果与早期关于SOD1中亚基内二硫键对SOD活性至关重要的报道相反。动力学研究进一步表明,酵母突变体SOD1对超氧化物的离子吸引力较小,这可能解释了其较低的反应速率。缺乏sod1基因的酿酒酵母细胞在没有赖氨酸的情况下不能有氧生长,但C57S SOD1的表达使生长增加到表达野生型SOD1细胞生长的30 - 50%,这支持C57S SOD1保留了大量活性。