用于生物测定和分子成像的区域特异性腔肠素类似物。

IF 4 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS
Bioconjugate Chemistry Bioconjugate Pub Date : 2024-09-18 Epub Date: 2024-08-15 DOI:10.1021/acs.bioconjchem.4c00303
Genta Kamiya, Nobuo Kitada, Tadaomi Furuta, Suresh Thangudu, Arutselvan Natarajan, Ramasamy Paulmurugan, Sung-Bae Kim, Shojiro A Maki
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引用次数: 0

摘要

荧光素酶-腔肠素(CTZ)反应产生的生物发光(BL)被广泛用作生物测定和体内分子成像的光学读数。在本研究中,我们展示了一种系统的方法,通过全套 Regioisomeric CTZ 类似物来阐明荧光素酶-CTZ 结合的化学反应,其中所有的官能团都经过了区域化学修饰。将化学结构分为 1-6 组后发现,CTZ 类似物的偶数组(2、4 和 6)与 NanoLuc 酶的结合异常紧密。CTZ 类似物 M2 与 NanoLuc 的结合亮度最高,其原因已通过对结合模式的计算分析得以破解。我们还报告了:(i) 根据每种海洋荧光素酶的不同,CTZ类似物的区域异构体共同产生了独特的强度模式;(ii) 定量的结构-活性关系分析揭示了CTZ类似物各自功能基团的作用;(iii) CTZ类似物的区域异构体还产生了BL光谱的红移和颜色变化:即与NanoLuc的λmax值在500 nm附近,与ALuc16的λmax值在530 nm附近,与RLuc86SG的λmax值在570 nm附近。最后,研究人员使用(i)M2 特异性 NanoLuc 和原生 CTZ 特异性 ALuc16 的双荧光素酶系统、(ii)可激活雌激素的单链 BL 探针成像以及(iii)对携带表达 NanoLuc 和 RLuc8.6SG 的肿瘤的活体小鼠进行 BL 成像,证明了 CTZ 类似物的优势。该研究首次系统地阐明了BL成像研究中的区域化学性质。这项研究为了解 CTZ 类似物如何在 BL 报告系统中发挥区域化学作用提供了新的视角,并为分子成像的具体应用提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Regiospecific Coelenterazine Analogs for Bioassays and Molecular Imaging.

Regiospecific Coelenterazine Analogs for Bioassays and Molecular Imaging.

Bioluminescence (BL) generated by luciferase-coelenterazine (CTZ) reactions is broadly employed as an optical readout in bioassays and in vivo molecular imaging. In this study, we demonstrate a systematic approach to elucidate the luciferase-CTZ binding chemistry with a full set of regioisomeric CTZ analogs, where all the functional groups were regiochemically modified. When the chemical structures were categorized into Groups 1-6, the even-numbered Groups (2, 4, and 6) of the CTZ analogs are found to be exceptionally bright with NanoLuc enzyme. A CTZ analogue M2 was the brightest with NanoLuc and the reason was deciphered by a computational analysis of the binding modes. We also report that (i) the regioisomeric CTZ analogs collectively create unique intensity patterns according to each marine luciferase, (ii) the quantitative structure-activity relationship analysis revealed the roles of respective functional groups of CTZ analogs, and (iii) the regioisomeric CTZ analogs also exert red shifts of the BL spectra and color variation: that is, the λmax values are near 500 nm with NanoLuc, near 530 nm with ALuc16, and near 570 nm with RLuc86SG. The advantages of the regioisomeric CTZ analogs were finally demonstrated using (i) a dual-luciferase system with M2-specific NanoLuc and native CTZ-specific ALuc16, (ii) an estrogen activatable single-chain BL probe by imaging, and (iii) BL imaging of live mice bearing tumors expressing NanoLuc and RLuc8.6SG. This study is the first systematic approach to elucidate the regiochemistry in BL imaging studies. This study provides new insights into how CTZ analogs regiochemically work in BL reporter systems and guides the specific applications to molecular imaging.

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来源期刊
CiteScore
9.00
自引率
2.10%
发文量
236
审稿时长
1.4 months
期刊介绍: Bioconjugate Chemistry invites original contributions on all research at the interface between man-made and biological materials. The mission of the journal is to communicate to advances in fields including therapeutic delivery, imaging, bionanotechnology, and synthetic biology. Bioconjugate Chemistry is intended to provide a forum for presentation of research relevant to all aspects of bioconjugates, including the preparation, properties and applications of biomolecular conjugates.
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