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Miniaturized two-dimensional gel electrophoresis of high-molecular-weight proteins using low-concentration multifilament-supporting gel for isoelectric focusing

机译:低浓度多丝支撑凝胶用于等电聚焦的高分子量蛋白质的二维凝胶电泳

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摘要

A miniaturized two-dimensional gel electrophoresis (2-DE) system was constructed with a multifilament-supporting (MFS) gel as a first-dimensional gel for isoelectric focusing (IEF). The MFS gel was 1 mm in diameter, had a multifilament yarn of acrylic as a gel-support, and could provide low-concentration (2.5%T) polyacrylamide with sufficient mechanical strength, resulting in fast IEF, and clear 2-D spots due to the relatively large pore and improved transfer efficiency from the first-dimensional gel to the second-dimensional one of especially high-molecular-weight (HMW) proteins. In this study, by using the MFS gel of 4 cm in length as a miniaturized IEF gel, three colored proteins were separated in 8 min, which was about twice faster than using the MFS gel of standard length (7 cm). The second-dimensional gel was also miniaturized to be 55 mm wide, 40 mm long and 0.75 mm thick. The low-concentration MFS gel after IEF was easily transferred onto the top of the miniaturized second-dimensional gel with a tweezers. By using the miniaturized 2-DE system, the HMW size marker was separated in 30 min by IEF and in 25 min by native-polyacrylamide gel electrophoresis (Native-PAGE), which was at least twice faster than by using the standard size 2-DE system using MFS gel. This miniaturized 2-DE system could be expected as a useful separation method for fast protein diagnosis and screening.
机译:用支持多丝的(MFS)凝胶作为等电聚焦(IEF)的一维凝胶,构建了一个二维二维凝胶电泳(2-DE)系统。 MFS凝胶的直径为1 mm,具有丙烯酸的复丝纱作为凝胶载体,可以提供具有足够机械强度的低浓度(2.5%T)聚丙烯酰胺,从而产生快速的IEF和清晰的2-D点从第一维凝胶到第二维凝胶,尤其是高分子量(HMW)蛋白质,具有较大的孔并提高了转移效率。在这项研究中,通过使用长度为4 cm的MFS凝胶作为微型IEF凝胶,在8分钟内分离了三种有色蛋白质,这比使用标准长度的MFS凝胶(7 cm)快约两倍。二维凝胶也被小型化为55mm宽,40mm长和0.75mm厚。用镊子将IEF后的低浓度MFS凝胶轻松转移到微型二维凝胶的顶部。通过使用小型化的2-DE系统,通过IEF在30分钟内和通过自然聚丙烯酰胺凝胶电泳(Native-PAGE)在25分钟内分离HMW大小标记,比使用标准大小的2-快至少两倍。 DE系统使用MFS凝胶。可以期望这种小型化的2-DE系统可作为快速蛋白质诊断和筛选的有用分离方法。

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