College of Integrative Medicine, The National & Local Joint Engineering Research Center for Drug Development of Neurodegenerative Disease, College of Pharmacy , Dalian Medical University , Dalian 116044 , China.
State Key Laboratory of Fine Chemicals, Dalian University of Technology , Dalian 116024 , China.
J Am Chem Soc. 2019 Jan 16;141(2):1126-1134. doi: 10.1021/jacs.8b12136. Epub 2019 Jan 2.
Cytochrome P450 2J2 (CYP2J2), a key enzyme responsible for oxidative metabolism of various xenobiotics and endogenous compounds, participates in a diverse array of physiological and pathological processes in humans. Its biological role in tumorigenesis and cancer diagnosis remains poorly understood, owing to the lack of molecular tools suitable for real-time monitoring CYP2J2 in complex biological systems. Using molecular design principles, we were able to modify the distance between the catalytic unit and metabolic recognition moiety, allowing us to develop a CYP2J2 selective fluorescent probe using a near-infrared fluorophore ( E)-2-(2-(6-hydroxy-2, 3-dihydro-1 H-xanthen-4-yl)vinyl)-3,3-dimethyl-1-propyl-3 H-indol-1-ium iodide (HXPI). To improve the reactivity and isoform specificity, a self-immolative linker was introduced to the HXPI derivatives in order to better fit the narrow substrate channel of CYP2J2, the modification effectively shortened the spatial distance between the metabolic moiety ( O-alkyl group) and catalytic center of CYP2J2. After screening a panel of O-alkylated HXPI derivatives, BnXPI displayed the best combination of specificity, sensitivity and applicability for detecting CYP2J2 in vitro and in vivo. Upon O-demethylation by CYP2J2, a self-immolative reaction occurred spontaneously via 1,6-elimination of p-hydroxybenzyl resulting in the release of HXPI. Allowing BnXPI to be successfully used to monitor CYP2J2 activity in real-time for various living systems including cells, tumor tissues, and tumor-bearing animals. In summary, our practical strategy could help the development of a highly specific and broadly applicable tool for monitoring CYP2J2, which offers great promise for exploring the biological functions of CYP2J2 in tumorigenesis.
细胞色素 P450 2J2(CYP2J2)是一种关键的酶,负责各种外源物和内源性化合物的氧化代谢,参与人类多种生理和病理过程。由于缺乏适合实时监测复杂生物系统中 CYP2J2 的分子工具,其在肿瘤发生和癌症诊断中的生物学作用仍知之甚少。我们运用分子设计原理,成功地改变了催化单元和代谢识别部分之间的距离,从而开发出一种使用近红外荧光团(E)-2-(2-(6-羟基-2,3-二氢-1H-呫吨-4-基)乙烯基)-3,3-二甲基-1-丙基-3H-吲哚-1-鎓碘化物(HXPI)的 CYP2J2 选择性荧光探针。为了提高反应性和同工酶特异性,我们在 HXPI 衍生物中引入了自毁性连接子,以更好地适应 CYP2J2 的狭窄底物通道,修饰有效地缩短了代谢部分(O-烷基)和 CYP2J2 催化中心之间的空间距离。在筛选了一系列 O-烷基化 HXPI 衍生物后,BnXPI 显示出最佳的特异性、灵敏度和适用性,可用于体外和体内检测 CYP2J2。经 CYP2J2 脱 O-甲基化后,通过 1,6-消除对羟基苄基发生自毁反应,导致 HXPI 的释放。允许 BnXPI 成功用于实时监测包括细胞、肿瘤组织和荷瘤动物在内的各种活体系统中 CYP2J2 的活性。总之,我们的实用策略有助于开发出一种高度特异性和广泛适用性的监测 CYP2J2 的工具,这为探索 CYP2J2 在肿瘤发生中的生物学功能提供了很大的希望。