Separation of brain-RNA by micro-electrophoresis on agarose-acrylamide gels.

Neurobiology Pub Date : 1975-06-01
A Cupello, H Hydén
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Abstract

A simple method is described for RNA fractionation on the microscale (10(-8) to 10(-7) g). The optimal conditions for electrophoretic separation of low molecular weight RNA (4S-16S) on such a scale have been determined running a standard mixture of 4S, 5S and 16S E. coli RNAs on agarose-polyacrylamide gels at three different concentrations of acrylamide. The separations were evaluated for resolution of the different species and for linearity in the relationship between mobility and logarithm of molecular weight. A straight linear relationship and good resolution was obtained on a 3.48 per cent polyacrylamide - 0.7 per cent agarose gel. When a sample of 10(-2) O.D.U.260 of macroextracted cerebral RNA was separated on such a gel, six unusual RNA bands were detected between 5A and 18S. To find out optimal conditions for RNA fractionation in the 16S-28S range a standard mixture of 16S, 18S, 23S and 28S RNA was run on gels of three different acrylamide concentrations. The separations were again evaluated with regard to both the resolution and the linearity of the relationship between the logarithms of the molecular weights and the mobilities of the standard RNA species. A 0.7 per cent agarose - 2.5 per cent polyacrylamide gel appeared to be quite suitable with regard to both. The fractionation of a microsample of RNA macroextracted from whole rat brain is presented. We also present the fractionation of the RNA microextracted from 1 mg of the CA3 region of rat hippocampus.

琼脂糖-丙烯酰胺凝胶微电泳分离脑rna。
本文描述了一种在微尺度(10(-8)至10(-7)g)上进行RNA分离的简单方法。在三种不同浓度的丙烯酰胺下,在琼脂糖-聚丙烯酰胺凝胶上运行4S、5S和16S大肠杆菌RNA的标准混合物,确定了在这种尺度上电泳分离低分子量RNA (4S-16S)的最佳条件。评估了不同物种的分离和迁移率与分子量对数之间的线性关系。在3.48%聚丙烯酰胺- 0.7%琼脂糖凝胶上,得到了良好的分辨率和直线关系。将大提取的10(-2)O.D.U.260脑RNA样品在该凝胶上分离后,在5A ~ 18S之间检测到6条异常RNA条带。为了找出16S-28S范围内RNA分离的最佳条件,将16S, 18S, 23S和28S RNA的标准混合物在三种不同浓度的丙烯酰胺凝胶上运行。分离再次评估双方的分辨率和线性关系之间的对数的分子量和标准RNA物种的流动性。一种含有0.7%琼脂糖- 2.5%聚丙烯酰胺的凝胶似乎在这两方面都很合适。介绍了从大鼠全脑中提取的RNA显微样品的分离方法。我们还展示了从大鼠海马CA3区提取的1 mg RNA微萃取物的分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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