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以驱动蛋白Eg5为靶点监测哺乳动物细胞中的小干扰RNA转染。

Targeting the kinesin Eg5 to monitor siRNA transfection in mammalian cells.

作者信息

Weil D, Garçon L, Harper M, Duménil D, Dautry F, Kress M

机构信息

CNRS UPR1983, Institut André Lwoff, 7 rue Guy Moquet, 94801 Villejuif, France.

出版信息

Biotechniques. 2002 Dec;33(6):1244-8. doi: 10.2144/02336st01.

DOI:10.2144/02336st01
PMID:12503308
Abstract

RNA interference, the inhibition of gene expression by double-stranded RNA, provides a powerful tool for functional studies once the sequence of a gene is known. In most mammalian cells, only short molecules can be used because long ones induce the interferon pathway. With the identification of a proper target sequence, the penetration of the oligonucleotides constitutes the most serious limitation in the application of this technique. Here we show that a small interfering RNA (siRNA) targeting the mRNA of the kinesin Eg5 induces a rapid mitotic arrest and provides a convenient assay for the optimization of siRNA transfection. Thus, dose responses can be established for different transfection techniques, highlighting the great differences in response to transfection techniques of various cell types. We report that the calcium phosphate precipitation technique can be an efficient and cost-effective alternative to Oligofectamine in some adherent cells, while electroporation can be efficient for some cells growing in suspension such as hematopoietic cells and some adherent cells. Significantly, the optimal parameters for the electroporation of siRNA differ from those for plasmids, allowing the use of milder conditions that induce less cell toxicity. In summary, a single siRNA leading to an easily assayed phenotype can be used to monitor the transfection of siRNA into any type of proliferating cells of both human and murine origin.

摘要

RNA干扰,即通过双链RNA抑制基因表达,一旦基因序列已知,它就为功能研究提供了一个强大的工具。在大多数哺乳动物细胞中,只能使用短分子,因为长分子会诱导干扰素途径。随着合适靶序列的确定,寡核苷酸的穿透成为该技术应用中最严重的限制。在此我们表明,靶向驱动蛋白Eg5的mRNA的小干扰RNA(siRNA)可诱导快速有丝分裂停滞,并为优化siRNA转染提供了一种便捷的检测方法。因此,可以针对不同的转染技术建立剂量反应,突出了各种细胞类型对转染技术反应的巨大差异。我们报告,在某些贴壁细胞中,磷酸钙沉淀技术可以是Oligofectamine的一种高效且经济有效的替代方法,而电穿孔对某些悬浮生长的细胞(如造血细胞和一些贴壁细胞)可能有效。值得注意的是,siRNA电穿孔的最佳参数与质粒的不同,这使得可以使用诱导较低细胞毒性的更温和条件。总之,一种导致易于检测表型的单一siRNA可用于监测siRNA转染到任何类型的人和鼠源增殖细胞中。

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