Prieto Daniel, Aparicio Gonzalo, Morande Pablo E, Zolessi Flavio R
Sección Biología Celular, Facultad de Ciencias, Universidad de la República, Uruguay, Iguá 4225, 11400, Montevideo, Uruguay.
Histochem Cell Biol. 2014 Sep;142(3):335-45. doi: 10.1007/s00418-014-1215-0. Epub 2014 Mar 27.
The increasing need for multiple-labeling of cells and whole organisms for fluorescence microscopy has led to the development of hundreds of fluorophores that either directly recognize target molecules or organelles, or are attached to antibodies or other molecular probes. DNA labeling is essential to study nuclear-chromosomal structure, as well as for gel staining, but also as a usual counterstain in immunofluorescence, FISH or cytometry. However, there are currently few reliable red to far-red-emitting DNA stains that can be used. We describe herein an extremely simple, inexpensive and robust method for DNA labeling of cells and electrophoretic gels using the very well-known histological stain methyl green (MG). MG used in very low concentrations at physiological pH proved to have relatively narrow excitation and emission spectra, with peaks at 633 and 677 nm, respectively, and a very high resistance to photobleaching. It can be used in combination with other common DNA stains or antibodies without any visible interference or bleed-through. In electrophoretic gels, MG also labeled DNA in a similar way to ethidium bromide, but, as expected, it did not label RNA. Moreover, we show here that MG fluorescence can be used as a stain for direct measuring of viability by both microscopy and flow cytometry, with full correlation to ethidium bromide staining. MG is thus a very convenient alternative to currently used red-emitting DNA stains.
对细胞和整个生物体进行荧光显微镜多重标记的需求日益增加,这促使了数百种荧光团的开发,这些荧光团要么直接识别靶分子或细胞器,要么附着于抗体或其他分子探针上。DNA标记对于研究核染色体结构至关重要,对于凝胶染色也是如此,同时它还是免疫荧光、荧光原位杂交(FISH)或细胞计数中常用的复染剂。然而,目前可用的可靠的红色到远红色发射的DNA染色剂很少。我们在此描述一种极其简单、廉价且可靠的方法,使用广为人知的组织学染色剂甲基绿(MG)对细胞和电泳凝胶进行DNA标记。在生理pH条件下以极低浓度使用的MG被证明具有相对较窄的激发和发射光谱,峰值分别在633和677nm,并且具有非常高的抗光漂白性。它可以与其他常见的DNA染色剂或抗体联合使用,而不会产生任何可见的干扰或串色现象。在电泳凝胶中,MG对DNA的标记方式与溴化乙锭类似,但正如预期的那样,它不会标记RNA。此外,我们在此表明,MG荧光可作为一种染色剂,通过显微镜和流式细胞术直接测量细胞活力,与溴化乙锭染色完全相关。因此,MG是目前使用的红色发射DNA染色剂的一种非常方便的替代品。