Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
J Am Chem Soc. 2010 Mar 24;132(11):3997-4005. doi: 10.1021/ja907407m.
The first example of a computationally de novo designed protein that binds an emissive abiological chromophore is presented, in which a sophisticated level of cofactor discrimination is pre-engineered. This heterotetrameric, C(2)-symmetric bundle, A(His):B(Thr), uniquely binds (5,15-di[(4-carboxymethyleneoxy)phenyl]porphinato)zinc [(DPP)Zn] via histidine coordination and complementary noncovalent interactions. The A(2)B(2) heterotetrameric protein reflects ligand-directed elements of both positive and negative design, including hydrogen bonds to second-shell ligands. Experimental support for the appropriate formulation of (DPP)Zn:A(His):B(Thr) is provided by UV/visible and circular dichroism spectroscopies, size exclusion chromatography, and analytical ultracentrifugation. Time-resolved transient absorption and fluorescence spectroscopic data reveal classic excited-state singlet and triplet PZn photophysics for the A(His):B(Thr):(DPP)Zn protein (k(fluorescence) = 4 x 10(8) s(-1); tau(triplet) = 5 ms). The A(2)B(2) apoprotein has immeasurably low binding affinities for related [porphinato]metal chromophores that include a (DPP)Fe(III) cofactor and the zinc metal ion hemin derivative [(PPIX)Zn], underscoring the exquisite active-site binding discrimination realized in this computationally designed protein. Importantly, elements of design in the A(His):B(Thr) protein ensure that interactions within the tetra-alpha-helical bundle are such that only the heterotetramer is stable in solution; corresponding homomeric bundles present unfavorable ligand-binding environments and thus preclude protein structural rearrangements that could lead to binding of (porphinato)iron cofactors.
首次展示了一种通过计算从头设计的能够结合发光非生物生色团的蛋白质,其中预先设计了一种复杂的辅助因子辨别水平。这种具有 C(2)对称性的、四聚体、A(His):B(Thr)独特地通过组氨酸配位和互补的非共价相互作用结合(5,15-二[(4-羧基亚甲基氧)苯基]卟啉酸锌[(DPP)Zn]。该 A(2)B(2)异四聚体蛋白反映了配体指导的正设计和负设计的元素,包括与第二壳层配体的氢键。通过紫外可见和圆二色性光谱、尺寸排阻色谱和分析超速离心实验为(DPP)Zn:A(His):B(Thr)的适当配方提供了实验支持。时间分辨瞬态吸收和荧光光谱数据揭示了 A(His):B(Thr):(DPP)Zn 蛋白的典型激发态单重态和三重态 PZn 光物理性质(k(fluorescence) = 4 x 10(8) s(-1); tau(triplet) = 5 ms)。A(2)B(2)脱辅基蛋白对相关[卟啉酸]金属生色团的结合亲和力可以忽略不计,其中包括一个(DPP)Fe(III)辅助因子和锌金属离子血红素衍生物[(PPIX)Zn],这突出了在这种通过计算设计的蛋白质中实现的精细的活性位点结合辨别。重要的是,A(His):B(Thr)蛋白中的设计元素确保了在四-α-螺旋束内的相互作用,使得只有异四聚体在溶液中稳定;相应的同聚体束呈现出不利的配体结合环境,从而排除了可能导致(卟啉酸)铁辅助因子结合的蛋白质结构重排。