Department of Health, Life and Environmental Sciences, University of L'Aquila, Piazzale Salvatore Tommasi 1, 67100 L'Aquila, Italy.
J Mol Biol. 2013 Nov 15;425(22):4556-68. doi: 10.1016/j.jmb.2013.09.002. Epub 2013 Sep 8.
Members of the typical 2-Cys peroxiredoxin (Prx) subfamily represent an intriguing example of protein moonlighting behavior since this enzyme shifts function: indeed, upon chemical stimuli, such as oxidative stress, Prx undergoes a switch from peroxidase to molecular chaperone, associated to a change in quaternary structure from dimers/decamers to higher-molecular-weight (HMW) species. In order to detail the structural mechanism of this switch at molecular level, we have designed and expressed mutants of peroxiredoxin I from Schistosoma mansoni (SmPrxI) with constitutive HMW assembly and molecular chaperone activity. By a combination of X-ray crystallography, transmission electron microscopy and functional experiments, we defined the structural events responsible for the moonlighting behavior of 2-Cys Prx and we demonstrated that acidification is coupled to local structural variations localized at the active site and a change in oligomerization to HMW forms, similar to those induced by oxidative stress. Moreover, we suggest that the binding site of the unfolded polypeptide is at least in part contributed by the hydrophobic surface exposed by the unfolding of the active site. We also find an inverse correlation between the extent of ring stacking and molecular chaperone activity that is explained assuming that the binding occurs at the extremities of the nanotube, and the longer the nanotube is, the lesser the ratio binding sites/molecular mass is.
典型的 2-Cys 过氧化物酶(Prx)亚家族成员代表了一种有趣的蛋白质兼职行为的例子,因为这种酶改变了功能:实际上,在化学刺激下,如氧化应激,Prx 从过氧化物酶转变为分子伴侣,同时四级结构从二聚体/十聚体转变为高分子量(HMW)物种。为了详细了解这种分子水平上的结构转换的机制,我们设计并表达了曼氏血吸虫(Schistosoma mansoni)过氧化物酶 I(SmPrxI)的突变体,其具有组成型 HMW 组装和分子伴侣活性。通过 X 射线晶体学、透射电子显微镜和功能实验的结合,我们确定了负责 2-Cys Prx 兼职行为的结构事件,并证明酸化与局部结构变化相关,这些变化位于活性部位,并导致寡聚体向 HMW 形式转变,类似于氧化应激诱导的变化。此外,我们认为未折叠多肽的结合位点至少部分由活性部位展开所暴露的疏水面贡献。我们还发现环堆积的程度与分子伴侣活性之间存在反相关关系,这可以通过假设结合发生在纳米管的末端来解释,纳米管越长,结合位点/分子量的比值越小。