Department of Chemistry, University of Oxford, Chemical Research Laboratory, Mansfield Road, Oxford OX1 3TA, United Kingdom.
J Am Chem Soc. 2011 Feb 16;133(6):1987-2001. doi: 10.1021/ja1100867. Epub 2011 Jan 18.
Cyclodextrins (CDs) have been widely used in host-guest molecular recognition because of their chiral and hydrophobic cavities. For example, β-cyclodextrin (βCD) lodged as a molecular adaptor in protein pores such as α-hemolysin (αHL) is used for stochastic sensing. Here, we have tuned the cavity and overall size of βCD by replacing a single oxygen atom in its ring skeleton by a disulfide unit in two different configurations to both expand our ability to detect analytes and understand the interactions of βCD with protein pores. The three-dimensional structures of the two stereoisomeric CDs have been determined by the combined application of NMR spectroscopy and molecular simulation and show distorted conformations as compared to natural βCD. The interactions of these synthetic βCD analogues with mutant αHL protein pores and guest molecules were studied by single-channel electrical recording. The dissociation rate constants for both disulfide CDs from the mutant pores show ∼1000-fold increase as compared to those of unaltered βCD, but are ∼10-fold lower than the dissociation rate constants for βCD from wild-type αHL. Both of the skeleton-modified CDs show altered selectivity toward guest molecules. Our approach expands the breadth in sensitivity and diversity of sensing with protein pores and suggests structural parameters useful for CD design, particularly in the creation of asymmetric cavities.
环糊精 (CDs) 因其手性和疏水性空腔而被广泛应用于主体-客体分子识别。例如,β-环糊精 (βCD) 作为分子适体嵌入α-溶血素 (αHL) 等蛋白质孔道中,用于随机感应。在这里,我们通过将其环骨架中的单个氧原子替换为二硫单元,以两种不同的构象来调节 βCD 的空腔和整体尺寸,从而既提高了我们检测分析物的能力,又加深了对 βCD 与蛋白质孔道相互作用的理解。通过 NMR 光谱和分子模拟的联合应用,确定了这两种立体异构 CDs 的三维结构,与天然 βCD 相比,它们呈现出扭曲的构象。通过单通道电记录研究了这些合成 βCD 类似物与突变体 αHL 蛋白孔道和客体分子的相互作用。与未改变的 βCD 相比,两种二硫键 CDs 从突变孔道中的解离速率常数增加了约 1000 倍,但比 βCD 从野生型 αHL 中的解离速率常数低约 10 倍。两种骨架修饰的 CD 对客体分子的选择性都发生了改变。我们的方法扩展了蛋白质孔道进行感应的灵敏度和多样性,并且提出了对 CD 设计有用的结构参数,特别是在创建不对称空腔方面。