Wang Sha, Cao Jiao, Jia Wendong, Guo Weiming, Yan Shuanghong, Wang Yuqin, Zhang Panke, Chen Hong-Yuan, Huang Shuo
State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University 210023 Nanjing China
Chemistry and Biomedicine Innovation Center (ChemBIC), Nanjing University 210023 Nanjing China.
Chem Sci. 2019 Dec 10;11(3):879-887. doi: 10.1039/c9sc05260g.
In the formation of coordination interactions between metal ions and amino acids in natural metalloproteins, the bound metal ion is critical either for the stabilization of the protein structure or as an enzyme co-factor. Though extremely small in size, metal ions, when bound to the restricted environment of an engineered biological nanopore, result in detectable perturbations during single channel recordings. All reported work of this kind was performed with engineered α-hemolysin nanopores and the observed events appear to be extremely small in amplitude (∼1-3 pA). We speculate that the cylindrical pore restriction of α-hemolysin may not be optimal for probing extremely small analytes. porin A (MspA), a conical shaped nanopore, was engineered to interact with Ca, Mn, Co, Ni, Zn, Pb and Cd and a systematically larger event amplitude (up to 10 pA) was observed. The measured rate constant suggests that the coordination of a single ion with an amino acid follows hard-soft-acid-base theory, which has never been systematically validated in the case of a single molecule. By adjusting the measurement pH from 6.8 to 8.0, the duration of a single ion binding event could be modified with a ∼46-fold time extension. The phenomena reported suggest MspA to be a superior engineering template for probing a variety of extremely small analytes, such as monatomic and polyatomic ions, small molecules or chemical intermediates, and the principle of hard-soft-acid-base interaction may be instructive in the pore design.
在天然金属蛋白中金属离子与氨基酸形成配位相互作用时,结合的金属离子对于蛋白质结构的稳定或作为酶辅因子至关重要。尽管金属离子尺寸极小,但当它们与工程化生物纳米孔的受限环境结合时,在单通道记录过程中会导致可检测到的扰动。所有此类已报道的工作都是使用工程化的α-溶血素纳米孔进行的,观察到的事件幅度似乎极小(约1 - 3 pA)。我们推测,α-溶血素的圆柱形孔限制可能并非探测极小分析物的最佳选择。微孔蛋白A(MspA)是一种锥形纳米孔,经工程改造后可与钙、锰、钴、镍、锌、铅和镉相互作用,并观察到系统上更大的事件幅度(高达10 pA)。测得的速率常数表明,单个离子与氨基酸的配位遵循硬软酸碱理论,而在单分子情况下,这一理论从未得到系统验证。通过将测量pH从6.8调整到8.0,单个离子结合事件的持续时间可延长约46倍。所报道的这些现象表明,MspA是探测各种极小分析物(如单原子和多原子离子、小分子或化学中间体)的优良工程模板,并且硬软酸碱相互作用原理可能对孔设计具有指导意义。