Zou Li-Wei, Wang Ping, Qian Xing-Kai, Feng Lei, Yu Yang, Wang Dan-Dan, Jin Qiang, Hou Jie, Liu Zhi-Hong, Ge Guang-Bo, Yang Ling
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China; Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
Biosens Bioelectron. 2017 Apr 15;90:283-289. doi: 10.1016/j.bios.2016.11.068. Epub 2016 Nov 30.
In this study, a highly specific ratiometric two-photon fluorescent probe GP-BAN was developed and well-characterized to monitor dipeptidyl peptidase IV in plasma and living systems. GP-BAN was designed on the basis of the catalytic properties and substrate preference of DPP-IV, and it could be readily hydrolyzed upon addition of DPP-IV under physiological conditions. Both reaction phenotyping and inhibition assays demonstrated that GP-BAN displayed good reactivity and high selectivity towards DPP-IV over other human serine hydrolases including FAP, DPP-VIII, and DPP-IX. The probe was successfully used to monitor the real activities of DPP-IV in complex biological systems including diluted plasma, while it could be used for high throughput screening of DPP-IV inhibitors by using human plasma or tissue preparations as enzyme sources. As a two-photon fluorescent probe, GP-BAN was also successfully used for two-photon imaging of endogenous DPP-IV in living cells and tissues, and showed high ratiometric imaging resolution and deep-tissue penetration ability. Taken together, a ratiometric two-photon fluorescent probe GP-BAN was developed and well-characterized for highly selective and sensitive detection of DPP-IV in complex biological systems, which could serve as a promising imaging tool to explore the biological functions and physiological roles of this key enzyme in living systems.
在本研究中,开发了一种高特异性的比率型双光子荧光探针GP - BAN,并对其进行了充分表征,用于监测血浆和生物活体系统中的二肽基肽酶IV。GP - BAN是基于二肽基肽酶IV的催化特性和底物偏好设计的,在生理条件下加入二肽基肽酶IV后,它很容易被水解。反应表型分析和抑制试验均表明,与包括FAP、DPP - VIII和DPP - IX在内的其他人丝氨酸水解酶相比,GP - BAN对二肽基肽酶IV表现出良好的反应活性和高选择性。该探针成功用于监测包括稀释血浆在内的复杂生物系统中二肽基肽酶IV的实际活性,同时可将人血浆或组织制剂作为酶源用于二肽基肽酶IV抑制剂的高通量筛选。作为一种双光子荧光探针,GP - BAN还成功用于活细胞和组织中内源性二肽基肽酶IV的双光子成像,并显示出高比率成像分辨率和深部组织穿透能力。综上所述,开发了一种比率型双光子荧光探针GP - BAN,并对其进行了充分表征,用于在复杂生物系统中对二肽基肽酶IV进行高选择性和灵敏检测,它有望作为一种成像工具来探索这种关键酶在生物活体系统中的生物学功能和生理作用。