Pica Andrea, Merlino Antonello, Buell Alexander K, Knowles Tuomas P J, Pizzo Elio, D'Alessio Giuseppe, Sica Filomena, Mazzarella Lelio
Department of Chemical Sciences, University of Naples `Federico II', Via Cintia, 80126 Naples, Italy.
Acta Crystallogr D Biol Crystallogr. 2013 Oct;69(Pt 10):2116-23. doi: 10.1107/S0907444913020507. Epub 2013 Sep 20.
The deletion of five residues in the loop connecting the N-terminal helix to the core of monomeric human pancreatic ribonuclease leads to the formation of an enzymatically active domain-swapped dimer (desHP). The crystal structure of desHP reveals the generation of an intriguing fibril-like aggregate of desHP molecules that extends along the c crystallographic axis. Dimers are formed by three-dimensional domain swapping. Tetramers are formed by the aggregation of swapped dimers with slightly different quaternary structures. The tetramers interact in such a way as to form an infinite rod-like structure that propagates throughout the crystal. The observed supramolecular assembly captured in the crystal predicts that desHP fibrils could form in solution; this has been confirmed by atomic force microscopy. These results provide new evidence that three-dimensional domain swapping can be a mechanism for the formation of elaborate large assemblies in which the protein, apart from the swapping, retains its original fold.
在单体人胰腺核糖核酸酶的N端螺旋与核心相连的环中删除五个残基,会导致形成一个具有酶活性的结构域交换二聚体(desHP)。desHP的晶体结构揭示了沿c轴延伸的desHP分子有趣的纤维状聚集体的产生。二聚体通过三维结构域交换形成。四聚体由具有略有不同四级结构的交换二聚体聚集形成。四聚体以形成贯穿整个晶体的无限棒状结构的方式相互作用。晶体中观察到的超分子组装预测desHP纤维可以在溶液中形成;这已通过原子力显微镜得到证实。这些结果提供了新的证据,表明三维结构域交换可以是形成精细大组装体的一种机制,其中蛋白质除了交换外,还保留其原始折叠。