小干扰rna电穿孔进入ENCODE项目Tier 1 GM12878和K562细胞系的有效方法。

Ryan Muller, M. C. Hammond, D. Rio, Yeon J Lee
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引用次数: 7

摘要

DNA元件百科全书(ENCODE)项目旨在通过使用高通量DNA/cDNA测序方法鉴定人类基因组序列中的所有功能序列元件。为了帮助标准化、比较和整合来自不同技术和平台的数据集,ENCODE联盟选择了几种标准的人类细胞系供ENCODE项目使用。一级ENCODE细胞系包括GM12878、K562和H1人类胚胎干细胞系。GM12878是一种淋巴母细胞样细胞系,由爱泼斯坦-巴尔病毒转化,由国际HapMap项目选择,使用Illumina平台进行全基因组和转录组测序。K562是一种永生化骨髓性白血病细胞系。GM12878细胞系对ENCODE项目很有吸引力,因为它与国际HapMap项目有潜在的协同作用。尽管ENCODE项目获得了GM12878细胞系的大量测序数据,包括转录组、组蛋白标记的染色质免疫沉淀测序和转录因子,但由于阳离子脂质介导的转染方法对淋巴样细胞系效率低下,因此没有在GM12878细胞系中进行小型干扰sirna介导的敲低研究。在这里,我们提出了一种高效且可重复的方法,将各种sirna转染到GM12878和K562细胞系中,随后导致靶向蛋白消耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient Method for Electroporation of Small Interfering RNAs into ENCODE Project Tier 1 GM12878 and K562 Cell Lines.
The Encyclopedia of DNA Elements (ENCODE) Project aims to identify all functional sequence elements in the human genome sequence by use of high-throughput DNA/cDNA sequencing approaches. To aid the standardization, comparison, and integration of data sets produced from different technologies and platforms, the ENCODE Consortium selected several standard human cell lines to be used by the ENCODE Projects. The Tier 1 ENCODE cell lines include GM12878, K562, and H1 human embryonic stem cell lines. GM12878 is a lymphoblastoid cell line, transformed with the Epstein-Barr virus, that was selected by the International HapMap Project for whole genome and transcriptome sequencing by use of the Illumina platform. K562 is an immortalized myelogenous leukemia cell line. The GM12878 cell line is attractive for the ENCODE Projects, as it offers potential synergy with the International HapMap Project. Despite the vast amount of sequencing data available on the GM12878 cell line through the ENCODE Project, including transcriptome, chromatin immunoprecipitation-sequencing for histone marks, and transcription factors, no small interfering siRNA-mediated knockdown studies have been performed in the GM12878 cell line, as cationic lipid-mediated transfection methods are inefficient for lymphoid cell lines. Here, we present an efficient and reproducible method for transfection of a variety of siRNAs into the GM12878 and K562 cell lines, which subsequently results in targeted protein depletion.
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