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用于定量检测粗细胞裂解物中酵母RNA的夹心杂交分析。

Sandwich hybridisation assay for quantitative detection of yeast RNAs in crude cell lysates.

作者信息

Rautio Jari, Barken Kim Bundvig, Lahdenperä Juhani, Breitenstein Antje, Molin Søren, Neubauer Peter

机构信息

BioCentrum-DTU, Building 301, The Technical University of Denmark, DK-2800 Lyngby, Denmark.

出版信息

Microb Cell Fact. 2003 Apr 28;2(1):4. doi: 10.1186/1475-2859-2-4.

Abstract

BACKGROUND

A rapid microtiter plate based sandwich hybridization assay was developed for detection and quantification of single RNA species using magnetic beads. Following solution hybridization target RNA molecules were collected by biotin-streptavidin affinity binding and detected by fluorescence signal generated by alkaline phosphatase. The 18S rRNA and SUC2 mRNA of Saccharomyces cerevisiae were used as model RNA target molecules. RESULTS: The sensitivity of the assay was approximately 1.2 x 109 (2 fmol) molecules of target RNA. The developed method was feasible with crude cell lysates of S. cerevisiae carlsbergensis and was evaluated by measuring the levels of 18S rRNA during cell growth and SUC2 mRNA under repressive and inductive conditions. The 18S rRNA expression level followed the changes in the specific growth rate. SUC2 mRNA levels were in good correlation with the measured invertase enzyme activities. CONCLUSIONS: The here presented sandwich hybridisation method was succefully applied for monitoring the amounts of ribosomal RNA and mRNA with high expression level in shake flask cultivation conditions. Sandwich hybridisation method offers a fast and convenient tool for following single key RNA species of interest in the production conditions.

摘要

背景

开发了一种基于微量滴定板的快速夹心杂交检测方法,用于使用磁珠检测和定量单一RNA种类。溶液杂交后,通过生物素 - 链霉亲和素亲和结合收集靶RNA分子,并通过碱性磷酸酶产生的荧光信号进行检测。酿酒酵母的18S rRNA和SUC2 mRNA用作模型RNA靶分子。结果:该检测方法的灵敏度约为1.2×109(2 fmol)个靶RNA分子。所开发的方法对卡尔斯伯酵母的粗细胞裂解物可行,并通过测量细胞生长期间的18S rRNA水平以及在抑制和诱导条件下的SUC2 mRNA水平进行评估。18S rRNA表达水平随比生长速率的变化而变化。SUC2 mRNA水平与测得的转化酶活性高度相关。结论:本文提出的夹心杂交方法成功应用于监测摇瓶培养条件下高表达水平的核糖体RNA和mRNA的量。夹心杂交方法为在生产条件下跟踪单一感兴趣的关键RNA种类提供了一种快速便捷的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/688f/156893/b629ff20305b/1475-2859-2-4-1.jpg

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