化学
荧光
脚手架
生物物理学
羟甲基
水解
荧光寿命成像显微镜
生物化学
立体化学
生物医学工程
量子力学
医学
生物
物理
作者
Mako Kamiya,Daisuke Asanuma,Erina Kuranaga,Asuka Takeishi,Masayo Sakabe,Masayuki Miura,Tetsuo Nagano,Yasuteru Urano
摘要
We identified a rhodol bearing a hydroxymethyl group (HMDER) as a suitable scaffold for designing fluorescence probes for various hydrolases. HMDER shows strong fluorescence at physiological pH, but phenolic O-alkylation of HMDER results in a strong preference for the spirocyclic form, which has weak fluorescence. As a proof of concept, we utilized this finding to develop a new fluorescence probe for β-galactosidase. This probe has favorable characteristics for imaging in biological samples: it has good cellular permeability, and its hydrolysis product is well-retained intracellularly. It could rapidly and clearly visualize β-galactosidase activity in cultured cells and in Drosophila melanogaster tissue, which has rarely been achieved with previously reported fluorescence probes.
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