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标记染色体插入位点系统:一种研究核纤层相关染色质的方法。

Tagged Chromosomal Insertion Site System: A Method to Study Lamina-Associated Chromatin.

作者信息

Harr Jennifer C, Reddy Karen L

机构信息

Department of Biological Chemistry and Center for Epigenetics, Johns Hopkins University, Baltimore, MD, USA.

Department of Biological Chemistry and Center for Epigenetics, Johns Hopkins University, Baltimore, MD, USA.

出版信息

Methods Enzymol. 2016;569:433-53. doi: 10.1016/bs.mie.2015.09.028. Epub 2015 Nov 4.

Abstract

The three-dimensional (3D) organization of the genome is important for chromatin regulation. This organization is nonrandom and appears to be tightly correlated with or regulated by chromatin state and scaffolding proteins. To understand how specific DNA and chromatin elements contribute to the functional organization of the genome, we developed a new tool-the tagged chromosomal insertion site (TCIS) system-to identify and study minimal DNA sequences that drive nuclear compartmentalization and applied this system to specifically study the role of cis elements in targeting DNA to the nuclear lamina. The TCIS system allows Cre-recombinase-mediated site-directed integration of any DNA fragment into a locus tagged with lacO arrays, thus enabling both functional molecular studies and positional analysis of the altered locus. This system can be used to study the minimal DNA sequences that target the nuclear periphery (or other nuclear compartments), allowing researchers to understand how genome-wide results obtained, for example, by DNA adenine methyltransferase identification, chromosome conformation capture (HiC), or related methods, connect to the actual organization of DNA and chromosomes at the single-cell level. Finally, TCIS allows one to test roles for specific proteins in chromatin reorganization and to determine how changes in nuclear environment affect chromatin state and gene regulation at a single locus.

摘要

基因组的三维(3D)组织对于染色质调控至关重要。这种组织是非随机的,并且似乎与染色质状态和支架蛋白紧密相关或受其调控。为了了解特定的DNA和染色质元件如何促进基因组的功能组织,我们开发了一种新工具——标记染色体插入位点(TCIS)系统——以识别和研究驱动核区室化的最小DNA序列,并应用该系统专门研究顺式元件在将DNA靶向核纤层中的作用。TCIS系统允许Cre重组酶介导的任何DNA片段定点整合到用lacO阵列标记的位点,从而实现对改变位点的功能分子研究和定位分析。该系统可用于研究靶向核周边(或其他核区室)的最小DNA序列,使研究人员能够了解例如通过DNA腺嘌呤甲基转移酶鉴定、染色体构象捕获(HiC)或相关方法获得的全基因组结果如何与单细胞水平上DNA和染色体的实际组织相联系。最后,TCIS使人们能够测试特定蛋白质在染色质重组中的作用,并确定核环境的变化如何影响单个位点的染色质状态和基因调控。

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