Qin Cui-fang, Li Lei, Yu Xian-tong, Chang Meng-fang, Cao Xiao-dan, Pan Hai-feng, Zhang San-jun, Chen Jin-quan, Xu Jian-hua
Guang Pu Xue Yu Guang Pu Fen Xi. 2017 Feb;37(2):476-80.
Considering the important role of metal ions including copper ions are playing in human body, a novel single-Trp peptide WDAHSS was designed and synthesized in this study to achieve sensitive detection of copper ions via fluorescence spectroscopy. The intrinsic fluorescence of a tryptophan residue in WDAHSS, which was the only source of the molecular fluorescence, could be easily quenched with copper ions. By comparing fluorescence spectra of WDAHSS with those of tryptophan molecules at different pH values, the quenching mechanism of WDAHSS was explored in detail. Research showed that the histidine in WDAHSS bound copper ions with metal coordination. With participation of peptide bond, a square planar structure was formed. It was a consequent chelation of copper ions that caused the quenching of tryptophan residue. At the same time, this study discussed how pH conditions affected the fluorescence spectra of WDAHSS. Furthermore, association constants of copper ions towards WDAHSS were calculated through fluorescence measurements and fitting analyses. To enhance the anti-jamming ability to pH variation, the amino terminal of WDAHSS was intentionally acetylized, leading to a stable fluorescence emission under physiological pH conditions. Besides, WDAHSS was designed as a special structure to enhance the selectivity and biocompatibility of its sensitive detection of copper ions. Further studies on WDAHSS may help to improve the fluorescence imaging detection in vivo.
鉴于包括铜离子在内的金属离子在人体中发挥的重要作用,本研究设计并合成了一种新型单色氨酸肽WDAHSS,以通过荧光光谱法实现对铜离子的灵敏检测。WDAHSS中色氨酸残基的固有荧光是分子荧光的唯一来源,它很容易被铜离子淬灭。通过比较WDAHSS与色氨酸分子在不同pH值下的荧光光谱,详细探究了WDAHSS的淬灭机制。研究表明,WDAHSS中的组氨酸通过金属配位与铜离子结合。在肽键的参与下,形成了一个平面正方形结构。正是铜离子的螯合导致了色氨酸残基的淬灭。同时,本研究讨论了pH条件如何影响WDAHSS的荧光光谱。此外,通过荧光测量和拟合分析计算了铜离子与WDAHSS的缔合常数。为了增强对pH变化的抗干扰能力,WDAHSS的氨基末端被有意乙酰化,从而在生理pH条件下实现稳定的荧光发射。此外,WDAHSS被设计成一种特殊结构,以增强其对铜离子灵敏检测的选择性和生物相容性。对WDAHSS的进一步研究可能有助于改善体内荧光成像检测。