First-generation species-selective chemical probes for fluorescence imaging of human senescence-associated β-galactosidase

荧光 化学 荧光寿命成像显微镜 活体细胞成像 衰老 生物化学 生物物理学 生物 细胞生物学 光学 物理 细胞
作者
Xiaokang Li,Wenjing Qiu,Jinwen Li,Xi Chen,Yulu Hu,Ying Gao,Donglei Shi,Xinming Li,Huiling Lin,Zelan Hu,Guoqiang Dong,Chunquan Sheng,Bei Jiang,Conglong Xia,Chu‐Young Kim,Yuan Guo,Jian Li,Jian Li,Jian Li
出处
期刊:Chemical Science [Royal Society of Chemistry]
卷期号:11 (28): 7292-7301 被引量:80
标识
DOI:10.1039/d0sc01234c
摘要

Human senescence-associated β-galactosidase (SA-β-gal), the most widely used biomarker of aging, is a valuable tool for assessing the extent of cell 'healthy aging' and potentially predicting the health life span of an individual. Human SA-β-gal is an endogenous lysosomal enzyme expressed from GLB1, the catalytic domain of which is very different from that of E. coli β-gal, a bacterial enzyme encoded by lacZ. However, existing chemical probes for this marker still lack the ability to distinguish human SA-β-gal from β-gal of other species, such as bacterial β-gal, which can yield false positive signals. Here, we show a molecular design strategy to construct fluorescent probes with the above ability with the aid of structure-based steric hindrance adjustment catering to different enzyme pockets. The resulting probes normally work as traditional SA-β-gal probes, but they are unique in their powerful ability to distinguish human SA-β-gal from E. coli β-gal, thus achieving species-selective visualization of human SA-β-gal for the first time. NIR-emitting fluorescent probe KSL11 as their representative further displays excellent species-selective recognition performance in biological systems, which has been herein verified by testing in senescent cells, in lacZ-transfected cells and in E. coli-β-gal-contaminated tissue sections of mice. Because of our probes, it was also discovered that SA-β-gal content in mice increased gradually with age and SA-β-gal accumulated most in the kidneys among the main organs of naturally aging mice, suggesting that the kidneys are the organs with the most severe aging during natural aging.
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