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人类细胞中染色体位点的多色CRISPR标记

Multicolor CRISPR labeling of chromosomal loci in human cells.

作者信息

Ma Hanhui, Naseri Ardalan, Reyes-Gutierrez Pablo, Wolfe Scot A, Zhang Shaojie, Pederson Thoru

机构信息

Program in Cell and Developmental Dynamics and Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA 01605;

Department of Electrical Engineering and Computer Science, University of Central Florida, Orlando, FL 32816; and.

出版信息

Proc Natl Acad Sci U S A. 2015 Mar 10;112(10):3002-7. doi: 10.1073/pnas.1420024112. Epub 2015 Feb 23.

Abstract

The intranuclear location of genomic loci and the dynamics of these loci are important parameters for understanding the spatial and temporal regulation of gene expression. Recently it has proven possible to visualize endogenous genomic loci in live cells by the use of transcription activator-like effectors (TALEs), as well as modified versions of the bacterial immunity clustered regularly interspersed short palindromic repeat (CRISPR)/CRISPR-associated protein 9 (Cas9) system. Here we report the design of multicolor versions of CRISPR using catalytically inactive Cas9 endonuclease (dCas9) from three bacterial orthologs. Each pair of dCas9-fluorescent proteins and cognate single-guide RNAs (sgRNAs) efficiently labeled several target loci in live human cells. Using pairs of differently colored dCas9-sgRNAs, it was possible to determine the intranuclear distance between loci on different chromosomes. In addition, the fluorescence spatial resolution between two loci on the same chromosome could be determined and related to the linear distance between them on the chromosome's physical map, thereby permitting assessment of the DNA compaction of such regions in a live cell.

摘要

基因组位点的核内定位及其动态变化是理解基因表达时空调控的重要参数。最近,通过使用转录激活样效应物(TALEs)以及细菌免疫簇状规律间隔短回文重复序列(CRISPR)/CRISPR相关蛋白9(Cas9)系统的修饰版本,已证明能够在活细胞中可视化内源性基因组位点。在此,我们报告了使用来自三种细菌直系同源物的催化失活Cas9核酸酶(dCas9)设计多色CRISPR版本的方法。每对dCas9-荧光蛋白和同源单向导RNA(sgRNA)均可有效标记活的人类细胞中的多个靶位点。使用不同颜色的dCas9-sgRNA对,可以确定不同染色体上位点之间的核内距离。此外,还可以确定同一染色体上两个位点之间的荧光空间分辨率,并将其与染色体物理图谱上它们之间的线性距离相关联,从而能够评估活细胞中此类区域的DNA压缩情况。

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