Zhu Hao, Fan Jiangli, Zhang Shiling, Cao Jianfang, Song Kedong, Ge Dan, Dong Huijuan, Wang Jingyun, Peng Xiaojun
State Key Laboratory of Fine Chemicals, Dalian University of Technology, No. 2 Linggong Road, High-tech District, Dalian 116024, China.
Biomater Sci. 2014 Jan 29;2(1):89-97. doi: 10.1039/c3bm60186b. Epub 2013 Sep 11.
Zinc dyshomeostasis is a major mechanism of neuronal death, which is involved in many different neuropathological conditions. Lysosomal membrane permeabilisation has an important function in zinc-induced neuronal death under oxidative stress. To investigate lysosomal zinc functions in neurons with high spatial and temporal reliability, we report a ratiometric probe, LysoZn-1. It is derived from the styryl-BODIPY-DPA scaffold with a lysosome-targeted 2-morpholinoethylamine moiety to allow localisation in lysosomes. The electron donor at the meso-position of the BODIPY fluorophore makes the present probe prefer complexing with Zn rather than Cd, which can be explained by HSAB (Hard-Soft Acid-Base) theory and was confirmed by Gaussian calculation. Upon Zn binding, LysoZn-1 exhibits obvious fluorescence enhancement (F) and ratio (F/F) changes. The emission intensities of LysoZn-1 and LysoZn-1 + Zn do not change significantly under lysosomal pH ranging from 4.5 to 6.0. Confocal imaging experiments indicate that LysoZn-1 is able to localise to lysosomes in neural stem cells (NSCs), MCF-7 and Hela cells and detect exogenous Zn levels in NSCs and MCF-7 cells. LysoZn-1 function is not disturbed by chloroquine in living cells. Furthermore, increases in lysosomal Zn concentration upon HO stimulation in NSCs are observed using LysoZn-1.
锌稳态失衡是神经元死亡的主要机制,它涉及许多不同的神经病理状况。溶酶体膜通透性在氧化应激下锌诱导的神经元死亡中具有重要作用。为了以高时空可靠性研究神经元中的溶酶体锌功能,我们报道了一种比率探针LysoZn-1。它源自带有溶酶体靶向的2-吗啉代乙胺部分的苯乙烯基-BODIPY-DPA支架,以使其定位于溶酶体中。BODIPY荧光团中位的电子供体使本探针更倾向于与锌而非镉络合,这可以用HSAB(硬软酸碱)理论来解释,并通过高斯计算得到证实。与锌结合后,LysoZn-1表现出明显的荧光增强(F)和比率(F/F)变化。在4.5至6.0的溶酶体pH值范围内,LysoZn-1和LysoZn-1 + Zn的发射强度没有明显变化。共聚焦成像实验表明,LysoZn-1能够定位于神经干细胞(NSCs)、MCF-7和Hela细胞的溶酶体中,并检测NSCs和MCF-7细胞中的外源锌水平。在活细胞中,LysoZn-1的功能不受氯喹的干扰。此外,使用LysoZn-1观察到在NSCs中HO刺激后溶酶体锌浓度增加。