用于光药理学研究的基因定向笼状 RyR 探针的设计、合成和光化学特性

IF 3 4区 化学 Q3 CHEMISTRY, PHYSICAL ChemPhotoChem Pub Date : 2024-05-21 DOI:10.1002/cptc.202400140
Aika Yokoyama, Hanami Aoki, Mizuki Funayama, Ryo Shinozaki, Hiroto Yoshida, Dr. Akinobu Z. Suzuki, Prof. Dr. Toshiaki Furuta
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引用次数: 0

摘要

Ryanodine 受体(RyR)是一种重要的细胞内 Ca2+ 通道,参与了与多种疾病相关的各种生理过程。本文介绍了用于 RyR 的新型光活化笼状化合物的合成和评估。我们使用(6-溴-7-羟基胭脂虫-4-基)甲基(Bhc)作为可光敏的保护基团,开发了笼型 4-CmC(一种广谱 RyR 激动剂)和 FLA365(一种拮抗剂)。合成的化合物(Bhcmoc-4-CmC 和 Bhcmoc-FLA365)具有光活性,可实现对 RyR 活性的时空控制。在 405 纳米波长的光下,Bhcmoc-4-CmC 的量子产率为 25%,光解效率为 1,075 M-1 cm-1,可触发内质网释放 Ca2+。相反,Bhcmoc-FLA365 的量子产率降低了 0.61%,这可能是由于其叔胺结构的淬灭效应。我们还应用基因定向笼化技术,合成了可激活β-半乳糖苷酶(β-Gal)的Gal-Bhcmoc-4-CmC和Gal-Bhcmoc-FLA365,以及可激活猪肝酯酶(PLE)的CM-Bhcmoc-FLA365,将这些探针靶向特定类型的细胞。这些笼状化合物为光药理学做出了重大贡献,为精确分析和操纵 RyR 功能提供了工具。未来的研究目标包括进一步优化和分析这些笼状化合物的光化学机制,以提高它们在生物和医学研究中的应用。
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Design, Synthesis, and Photochemical Properties of Gene-directed Caged RyR Probes for Photopharmacological Studies

Ryanodine receptor (RyR) is a crucial intracellular Ca2+ channel involved in various physiological processes associated with several diseases. This paper presents the synthesis and evaluation of novel photoactivatable caged compounds for the RyR. We used (6-bromo-7-hydroxycoumarn-4-yl)methyl (Bhc) as the photolabile protecting group to develop caged versions of 4-CmC, a broad-spectrum RyR agonist, and FLA365, an antagonist. The synthesized compounds, Bhcmoc-4-CmC and Bhcmoc-FLA365, exhibited photoreactivity that enabled spatiotemporal control over the RyR activity. Bhcmoc-4-CmC presents a quantum yield of 25 % and a photolysis efficiency of 1,075 M−1 cm−1 under 405 nm light, triggering Ca2+ release from the endoplasmic reticulum. Conversely, Bhcmoc-FLA365 presents a reduced quantum yield of 0.61 %, which can be attributed to the quenching effects of its tertiary amine structure. We also applied gene-directed caging, synthesizing β-galactosidase (β-Gal) activatable Gal-Bhcmoc-4-CmC and Gal-Bhcmoc-FLA365, and porcine liver esterase (PLE)-activatable CM-Bhcmoc-FLA365, to target these probes to the specific cell types. These caged compounds contribute significantly to photopharmacology, providing tools for the precise analysis and manipulation of the RyR functions. Future research objectives involve further optimization and analysis of the photochemical mechanisms of these caged compounds to enhance their applications in biological and medical research.

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来源期刊
ChemPhotoChem
ChemPhotoChem Chemistry-Physical and Theoretical Chemistry
CiteScore
5.80
自引率
5.40%
发文量
165
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