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纳克级核糖体蛋白的二维聚丙烯酰胺凝胶电泳

Two-dimensional polyacrylamide gel electrophoresis of ribosomal proteins in the nanogram range.

作者信息

Brockmöller J, Kamp R M

出版信息

Biol Chem Hoppe Seyler. 1985 Sep;366(9):901-6. doi: 10.1515/bchm3.1985.366.2.901.

Abstract

A two-dimensional gel electrophoresis system to identify and check the purity of ribosomal proteins from different organisms with nanogram quantities is described. This procedure combines the method of Geyl et al. for the separation of ribosomal proteins of Escherichia coli, and the microscale electrophoresis system for proteins described by Neuhoff and Poehling, with several modifications. The first gel dimension is carried out in capillaries and the second in the form of slab gels, both are run in newly designed chambers suitable for 10-20 samples. This electrophoresis system enables a reduction of the running time from 2 days to 2 hours and an increase in sensitivity, with Coomassie blue staining, from 3-5 micrograms for the normal 100 X 100 mm gels to 50-100 ng. The resolution of all ribosomal proteins on the micro-gel (30 X 38 X 0.5 mm) is similar to the separation on the mini-gel of 100 X 100 X 3 mm as described by Geyl et al.

摘要

本文描述了一种二维凝胶电泳系统,该系统可用于鉴定和检测来自不同生物体的纳克级核糖体蛋白的纯度。此方法结合了盖尔等人用于分离大肠杆菌核糖体蛋白的方法,以及诺伊霍夫和波林描述的蛋白质微量电泳系统,并做了一些改进。第一维凝胶电泳在毛细管中进行,第二维以平板凝胶的形式进行,两者均在新设计的适合10 - 20个样品的电泳槽中运行。该电泳系统能将运行时间从2天缩短至2小时,并提高灵敏度,考马斯亮蓝染色时,对于常规的100×100 mm凝胶,灵敏度从3 - 5微克提高到50 - 100纳克。微凝胶(30×38×0.5 mm)上所有核糖体蛋白的分辨率与盖尔等人描述的100×100×3 mm迷你凝胶上的分离效果相似。

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