Suppr超能文献

杯[4]芳烃的亚氨基-酚基-吡啶基衍生物(L1 和 L2)作为锌离子在溶液和 HeLa 细胞中的主荧光开关传感器,以及 [ZnL2]对焦磷酸和 ATP 的识别。

Imino-phenolic-pyridyl conjugates of calix[4]arene (L1 and L2) as primary fluorescence switch-on sensors for Zn2+ in solution and in HeLa cells and the recognition of pyrophosphate and ATP by [ZnL2].

机构信息

Bioinorganic Laboratory & Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.

出版信息

Inorg Chem. 2012 May 7;51(9):4994-5005. doi: 10.1021/ic202426v. Epub 2012 Apr 20.

Abstract

Pyridyl-based triazole-linked calix[4]arene conjugates, viz. L(1) and L(2), were synthesized and characterized. These two conjugates were shown to be selective and sensitive for Zn(2+) among the 12 metal ions studied in HEPES buffer medium by fluorescence, absorption, and visual color change with the detection limit of ~31 and ~112 ppb, respectively, by L(1) and L(2). Moreover, the utility of the conjugates L(1) and L(2) in showing the zinc recognition in live cells has also been demonstrated using HeLa cells as monitored by fluorescence imaging. The zinc complexes of L(1) and L(2) were isolated, and the structure of [ZnL(1)] has been established by single-crystal XRD and that of [ZnL(2)] by DFT calculations. TDDFT calculations were performed in order to demonstrate the electronic properties of receptors and their zinc complexes. The isolated zinc complexes, viz. [ZnL(1)] and [ZnL(2)], have been used as molecular tools for the recognition of anions on the basis of their binding affinities toward Zn(2+). [ZnL(2)] was found to be sensitive and selective toward phosphate-bearing ions and molecules and in particular to pyrophosphate (PPi) and ATP among the other 18 anions studied; however, [ZnL(1)] was not sensitive toward any of the anions studied. The selectivity has been shown on the basis of the changes observed in the emission and absorption spectral studies through the removal of Zn(2+) from [ZnL(2)] by PPi. Thus, [ZnL(2)] has been shown to detect PPi up to 278 ± 10 ppb at pH 7.4 in aqueous methanolic (1/2 v/v) HEPES buffer.

摘要

基于吡啶的三唑连接杯[4]芳烃缀合物,即 L(1) 和 L(2),已被合成并进行了表征。这两种缀合物在 HEPES 缓冲介质中对 12 种金属离子的研究表明,对 Zn(2+)具有选择性和敏感性,荧光、吸收和视觉颜色变化的检测限分别约为31 和112 ppb。此外,还通过荧光成像监测 HeLa 细胞,证明了缀合物 L(1)和 L(2)在活细胞中显示锌识别的用途。分离出 L(1)和 L(2)的锌配合物,并通过单晶 XRD 确定 [ZnL(1)]的结构,通过 DFT 计算确定 [ZnL(2)]的结构。进行 TDDFT 计算以证明受体及其锌配合物的电子性质。分离出的锌配合物,即 [ZnL(1)]和 [ZnL(2)],已被用作基于与 Zn(2+)结合亲和力识别阴离子的分子工具。[ZnL(2)]对含磷的离子和分子,特别是对研究的其他 18 种阴离子中的焦磷酸 (PPi) 和 ATP,具有敏感性和选择性;然而,[ZnL(1)]对研究的任何阴离子都不敏感。通过观察到的发射和吸收光谱研究中的变化表明,通过 PPi 从 [ZnL(2)]中去除 Zn(2+),[ZnL(2)]显示出选择性。因此,在 pH 7.4 的水-甲醇(1/2 v/v)HEPES 缓冲液中,[ZnL(2)]已被证明可以检测到高达 278 ± 10 ppb 的 PPi。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验