School of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng, China.
Zhong Yuan Academy of Biological Medicine, Liaocheng People's Hospital, Liaocheng, China.
Luminescence. 2019 Sep;34(6):585-594. doi: 10.1002/bio.3641. Epub 2019 May 9.
A novel multifunctional fluorescent peptide sensor based on pentapeptide dansyl-Gly-His-Gly-Gly-Trp-COOH (D-P5) was designed and synthesized efficiently using Fmoc solid-phase peptide synthesis (SPPS). This fluorescent peptide sensor shows selective and sensitive responses to Hg and Cu among 17 metal ions and six anions studied in N-2-hydroxyethylpiperazine-N-2-ethane sulfonic acid (HEPES) buffer solution. The peptide probe differentiates Hg and Cu ions by a 'turn-on' response to Hg and a 'turn-off' response to Cu . Upon addition of Hg or Cu ions, the sensor displayed an apparent color change that was visible under an ultraviolet lamp to the naked eye. The limits of detection (LOD) of DP-5 were 25.0 nM for Hg and 85.0 nM for Cu ; the detection limits for Cu were much lower than the drinking water maximum contaminant levels set out by the United States Environmental Protection Agency (USEPA). It is noteworthy that both D-P5-Hg and D-P5-Cu systems were also used to detect S successfully based on the formation of ternary complexes. The LODs of D-P5-Hg and D-P5-Cu systems for S were 217.0 nM and 380.0 nM, respectively. Furthermore, the binding stoichiometry, binding affinity and pH sensitivity of the probe for Hg and Cu were investigated. This study gives new possibilities for using a short fluorescent peptide sensor for multifunctional detection, especially for anions.
一种新型的基于五肽荧光肽传感器Dansyl-Gly-His-Gly-Gly-Trp-COOH(D-P5)的设计和合成采用 Fmoc 固相肽合成(SPPS)高效。这种荧光肽传感器在 N-2-羟乙基哌嗪-N-2-乙磺酸(HEPES)缓冲溶液中对 17 种金属离子和 6 种阴离子的研究中表现出对 Hg 和 Cu 的选择性和敏感性响应。肽探针通过对 Hg 的“开”响应和对 Cu 的“关”响应来区分 Hg 和 Cu 离子。加入 Hg 或 Cu 离子后,传感器显示出明显的颜色变化,肉眼在紫外灯下可见。DP-5 的检测限(LOD)分别为 25.0 nM 用于 Hg 和 85.0 nM 用于 Cu;Cu 的检测限远低于美国环境保护署(USEPA)规定的饮用水最大污染物水平。值得注意的是,基于三元配合物的形成,D-P5-Hg 和 D-P5-Cu 体系也成功地用于检测 S。D-P5-Hg 和 D-P5-Cu 体系对 S 的检测限分别为 217.0 nM 和 380.0 nM。此外,还研究了探针对 Hg 和 Cu 的结合化学计量、结合亲和力和 pH 敏感性。这项研究为使用短荧光肽传感器进行多功能检测,特别是阴离子检测提供了新的可能性。