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将具有间歇性荧光扫描功能的商用凝胶电泳仪应用于一种无荧光的蛋白质。

Application of the commercial gel electrophoresis apparatus with intermittent fluorescence scanning to a nonfluorescing protein.

作者信息

Chen N, Chrambach A

机构信息

Section on Macromolecular Analysis, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892-1855, USA.

出版信息

Anal Biochem. 1996 Nov 1;242(1):64-7. doi: 10.1006/abio.1996.0428.

Abstract

Gel electrophoretic instrumentation has taken a quantum jump forward with the commercial introduction of an apparatus which, after loading of the sample and initiation of electrophoresis, provides real-time gel patterns at desired time intervals, with a computer printout of mobility values characterizing each band and the means to isolate each desired band with known and maximizeable recovery. However, a major limitation of that apparatus has been that it employs fluorescence detection and therefore requires the fluorescent labeling of the macromolecules of interest. That limitation was first overcome by E. Gombocz and E. Cortez (Application Note 8, 1994, LabIntelligence, Belmont, CA) in the detection of nonfluorescing carrier ampholytes. In that application, fluorescent, immobile (uncharged) umbelliferone was added to the gel to provide a uniform background of fluorescence upon excitation at 280-360 nm. The isoelectric carrier ampholyte zones could be detected as inverted peaks due to their reduction of the fluorescence intensity of umbelliferone. A similar approach was applied to a representative SDS-protein, conalbumin-SDS, in the present study, replacing umbelliferone in the gel by a fluorescing paper sheet in contact with the lower external surface of the electrophoresis cell. Passage of the proteins reduced the intensity of the light excitation incident on the fluorescent paper so as to decrease the emitted fluorescence signal and allow for the detection of the proteins as "inverted peaks." Presumably, the reduction of background fluorescence is due to the absorbance at 280 nm of the protein passing through the gel, and reduction of the incident light intensity by that absorbance. The resulting detection of the representative unlabeled SDS-protein by "fluorescence reduction" was found to be less sensitive by a factor of 10-20 than detection of the fluorescently labeled protein (at a molar ratio of fluorescein carboxylate to conalbumin of 1/1). The area of the inverted bands of conalbumin-SDS was found to be independent of migration distance.

摘要

随着一种仪器的商业推出,凝胶电泳仪器有了巨大的飞跃。该仪器在加载样品并启动电泳后,能按所需时间间隔提供实时凝胶图谱,还能通过计算机打印出表征每个条带的迁移率值,并具备分离每个所需条带且回收率已知且可最大化的方法。然而,该仪器的一个主要局限在于它采用荧光检测,因此需要对感兴趣的大分子进行荧光标记。E. 贡博茨和E. 科尔特斯(《应用笔记8》,1994年,实验室智能公司,加利福尼亚州贝尔蒙特)在检测非荧光载体两性电解质时首次克服了这一局限。在该应用中,将荧光性、固定(不带电)的伞形酮添加到凝胶中,以便在280 - 360纳米激发时提供均匀的荧光背景。等电载体两性电解质区域由于降低了伞形酮的荧光强度,可被检测为倒置峰。在本研究中,类似的方法应用于一种代表性的SDS - 蛋白质,即伴清蛋白 - SDS,通过在电泳槽外表面下方接触的荧光纸片取代凝胶中的伞形酮。蛋白质通过时会降低入射到荧光纸上的光激发强度,从而降低发射的荧光信号,使得蛋白质能作为“倒置峰”被检测到。据推测,背景荧光的降低是由于蛋白质在凝胶中280纳米处的吸光作用,以及该吸光作用导致的入射光强度降低。结果发现,通过“荧光降低”对代表性未标记SDS - 蛋白质的检测灵敏度比检测荧光标记蛋白质(荧光素羧酸盐与伴清蛋白的摩尔比为1/1)低10 - 20倍。伴清蛋白 - SDS倒置条带的面积与迁移距离无关。

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