Guangxi Key Laboratory of Special Biomedicine, Medical College, Guangxi University, Nanning 530004, China.
Faculty of Pharmacy, Guangxi Health Science College, Nanning 530023, China.
Molecules. 2024 Apr 25;29(9):1961. doi: 10.3390/molecules29091961.
In this study, two "on-off" probes (BF-cur-Ben and BF-cur-But) recognizing acetylcholinesterase (AChE) were designed and synthesized. The obtained probes can achieve recognition of AChE with good selectivity and pH-independence with a linear range of 0.57 U/mL and 0.525 U/mL respectively. BF-cur-Ben has a lower limit of detection (LOD) (0.031 U/mL), higher enzyme affinity (K = 16 ± 1.6 μM), and higher inhibitor sensitivity. A responsive mechanism of the probes for AChE was proposed based on HPLC and mass spectra (MS) experiments, as well as calculations. In molecular simulation, BF-cur-Ben forms more hydrogen bonds (seven, while BF-cur-But has only four) and thus has a more stable enzyme affinity, which is mirrored by the results of the comparison of K values. These two probes could enable recognition of intracellular AChE and probe BF-cur-Ben has superior cell membrane penetration due to its higher log value. These probes can monitor the overexpression of AChE during apoptosis of lung cancer cells. The ability of BF-cur-Ben to monitor AChE in vivo was confirmed by a zebrafish experiment.
在这项研究中,设计并合成了两种识别乙酰胆碱酯酶(AChE)的“开-关”探针(BF-cur-Ben 和 BF-cur-But)。所得探针能分别以 0.57 U/mL 和 0.525 U/mL 的线性范围,实现对 AChE 的选择性和 pH 独立性识别。BF-cur-Ben 具有更低的检测限(LOD)(0.031 U/mL)、更高的酶亲和力(K = 16 ± 1.6 μM)和更高的抑制剂敏感性。基于 HPLC 和质谱(MS)实验以及计算,提出了探针识别 AChE 的响应机制。在分子模拟中,BF-cur-Ben 形成更多的氢键(七个,而 BF-cur-But 只有四个),因此具有更稳定的酶亲和力,这与 K 值比较的结果一致。这两种探针可用于识别细胞内的 AChE,由于 BF-cur-Ben 的 log 值更高,其具有更好的细胞膜穿透能力。这些探针可以监测肺癌细胞凋亡过程中 AChE 的过表达。通过斑马鱼实验证实了 BF-cur-Ben 监测体内 AChE 的能力。