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偕二苯并菲啉和偕二苯并菲啉二磺酸钠二钠盐作荧光染料的异双核钌(II)配合物用于胶内蛋白质染色。

Heteroleptic Ruthenium(II) Complexes with Bathophenanthroline and Bathophenanthroline Disulfonate Disodium Salt as Fluorescent Dyes for In-Gel Protein Staining.

机构信息

Univ. Lille, CNRS, USR 3290, MSAP, Miniaturisation pour la Synthèse l'Analyse et la Protèomique, F-59 000 Lille, France.

Univ. Lille, CNRS, INRA, Centrale Lille, ENSCL, Univ. Artois, FR 2638 - IMEC - Institut Michel-Eugène Chevreul, F-59000 Lille, France.

出版信息

Inorg Chem. 2020 Apr 6;59(7):4527-4535. doi: 10.1021/acs.inorgchem.9b03679. Epub 2020 Mar 17.

Abstract

The in-gel detection of proteins for various proteomic experiments is commonly done with the fluorescent Ru tris(bathophenanthroline disulfonate) complex (Ru(BPS)), which is more cost-effective compared to commercial Ru-based formulations but requires tedious procedures for its preparation and strongly acidic staining conditions. Herein, we report the synthesis and characterization of heteroleptic Ru complexes Ru(BPS)(BP) and Ru(BPS)(BP) containing bathophenanthroline (BP) and bathophenanthroline disulfonate disodium salt (BPS) in comparison with Ru(BPS). It was shown by fluorescent and UV-vis measurements that novel Ru complexes were excitable in both UV and visible light, close to emission bands of classical lasers, which is important for successful in-gel protein detection. Novel fluorescent dyes demonstrated improved protein detection in comparison with commercially available SYPRO Ruby staining solution. In addition, unlike commonly used staining protocols, staining with Ru(BPS)(BP) can be performed at nearly neutral pH, thereby reducing artificial post-translational modifications (PTMs).

摘要

用于各种蛋白质组学实验的凝胶内蛋白质检测通常使用荧光 Ru 三(邻菲啰啉二磺酸钠)配合物(Ru(BPS)),与商业 Ru 基制剂相比,它更具成本效益,但在制备和强烈的酸性染色条件方面需要繁琐的程序。在此,我们报告了异核 Ru 配合物 Ru(BPS)(BP)和 Ru(BPS)(BP)的合成和表征,其中包含邻菲啰啉(BP)和邻菲啰啉二磺酸钠二钠盐(BPS),并与 Ru(BPS)进行了比较。荧光和紫外-可见测量表明,新型 Ru 配合物在紫外光和可见光下都可激发,接近经典激光器的发射带,这对于成功的凝胶内蛋白质检测非常重要。新型荧光染料与市售的 SYPRO Ruby 染色溶液相比,提高了蛋白质的检测能力。此外,与常用的染色方案不同,用 Ru(BPS)(BP)染色可以在近中性 pH 值下进行,从而减少人为的翻译后修饰(PTMs)。

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