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反义RNA扩增:一种用于分析单个活细胞mRNA群体的线性扩增方法。

Antisense RNA Amplification: A Linear Amplification Method for Analyzing the mRNA Population from Single Living Cells.

作者信息

Phillips J, Eberwine JH

机构信息

Department of Pharmacology, University of Pennsylvania, 3620 Hamilton Walk, Philadelphia, Pennsylvania, 19104-6084

出版信息

Methods. 1996 Dec;10(3):283-8. doi: 10.1006/meth.1996.0104.

DOI:10.1006/meth.1996.0104
PMID:8954839
Abstract

Cell-specific gene expression is a fundamental area of investigation of various disciplines, but is often complicated by cell heterogeneity, paucity of material, or limits of detection for low-abundance mRNAs. Antisense RNA (aRNA) amplification presents a linear amplification method for analyzing the mRNA population from single living cells. Patch clamp electrodes containing reverse transcriptase, dNTPS, and a poly(T) primer modified 5' with a T7 RNA polymerase promoter sequence are used to isolate the cytoplasmic contents of individual living cells. The cDNAs transcribed therefore contain the T7 promoter sequence. Following subsequent processing for second-strand cDNA synthesis, T7 polymerase is used for amplification, which results in a 2000-fold amplification of antisense RNA. A second round of amplification results in a 10(6)-fold amplification of the initial material. The aRNA amplification method may be used in conjunction with other techniques. Electrophysiology may be conducted first to examine functional properties. Reverse Northerns may be performed, using the aRNA as a probe to identify specific cDNAs loaded onto a slot blot. PCR may be conducted to determine splice variants. Differential display and library construction may be employed to identify unknown or novel genes. Thus, the aRNA amplification may prove a valuable method for providing information on cell-specific gene expression in a variety of studies.

摘要

细胞特异性基因表达是各学科研究的一个基本领域,但常常因细胞异质性、材料稀缺或低丰度mRNA检测限而变得复杂。反义RNA(aRNA)扩增提供了一种用于分析单个活细胞中mRNA群体的线性扩增方法。含有逆转录酶、dNTPs和5'端用T7 RNA聚合酶启动子序列修饰的聚(T)引物的膜片钳电极用于分离单个活细胞的细胞质内容物。由此转录的cDNA包含T7启动子序列。在随后进行第二链cDNA合成的处理后,使用T7聚合酶进行扩增,这导致反义RNA扩增2000倍。第二轮扩增导致初始材料扩增10^6倍。aRNA扩增方法可与其他技术结合使用。可首先进行电生理学检查功能特性。可以进行反向Northern杂交,使用aRNA作为探针来鉴定加载到狭缝印迹上的特定cDNA。可进行PCR以确定剪接变体。可采用差异显示和文库构建来鉴定未知或新基因。因此,aRNA扩增可能是一种有价值的方法,可在各种研究中提供有关细胞特异性基因表达的信息。

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