Chino Marco, Zhang Shao-Qing, Pirro Fabio, Leone Linda, Maglio Ornella, Lombardi Angela, DeGrado William F
Department of Chemical Sciences, University of Napoli "Federico II,", Via Cintia, 46, Napoli, 80126, Italy.
Department of Pharmaceutical Chemistry and the Cardiovascular Research Institute, University of California at San Francisco, San Francisco, California.
Biopolymers. 2018 Aug;109(10):e23339. doi: 10.1002/bip.23229. Epub 2018 Sep 11.
De novo design provides an attractive approach, which allows one to test and refine the principles guiding metalloproteins in defining the geometry and reactivity of their metal ion cofactors. Although impressive progress has been made in designing proteins that bind transition metal ions including iron-sulfur clusters, the design of tetranuclear clusters with oxygen-rich environments remains in its infancy. In previous work, we described the design of homotetrameric four-helix bundles that bind tetra-Zn clusters. The crystal structures of the helical proteins were in good agreement with the overall design, and the metal-binding and conformational properties of the helical bundles in solution were consistent with the crystal structures. However, the corresponding apo-proteins were not fully folded in solution. In this work, we design three peptides, based on the crystal structure of the original bundles. One of the peptides forms tetramers in aqueous solution in the absence of metal ions as assessed by CD and NMR. It also binds Zn in the intended stoichiometry. These studies strongly suggest that the desired structure has been achieved in the apo state, providing evidence that the peptide is able to actively impart the designed geometry to the metal cluster.
从头设计提供了一种有吸引力的方法,它使人们能够测试和完善指导金属蛋白定义其金属离子辅因子的几何结构和反应活性的原理。尽管在设计能够结合包括铁硫簇在内的过渡金属离子的蛋白质方面已经取得了令人瞩目的进展,但富含氧环境的四核簇的设计仍处于起步阶段。在之前的工作中,我们描述了结合四锌簇的同四聚体四螺旋束的设计。螺旋蛋白的晶体结构与整体设计高度吻合,溶液中螺旋束的金属结合和构象性质与晶体结构一致。然而,相应的脱辅基蛋白在溶液中并未完全折叠。在这项工作中,我们基于原始束的晶体结构设计了三种肽。通过圆二色光谱(CD)和核磁共振(NMR)评估,其中一种肽在无金属离子的水溶液中形成四聚体。它还以预期的化学计量比结合锌。这些研究有力地表明,在脱辅基状态下已经实现了所需的结构,这证明该肽能够主动赋予金属簇设计的几何结构。