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Chromatin domain boundaries: insulators and beyond
作者姓名:Wei GH  Liu DP  Liang CC
作者单位:NationalLaboratoryofMedicalMolecularBiology,InstituteofBasicMedicalSciences,ChineseAcademyofMedicalSciencesandPekingUnionMedicalCollege,5DongDanSanTiao,Beijing100005,China
摘    要:The eukaryotic genome is organized into functionally and structurally distinct domains, representing regulatory units for gene expression and chromosome behavior. DNA sequences that mark the border between adjacent domains are the insulators or boundary elements, which are required in maintenance of the function of different domains. Some insulators need others enable to play insulation activity. Chromatin domains are defined by distinct sets of post-translationally modified histones. Recent studies show that these histone modifications are also involved in establishment of sharp chromatin boundaries in order to prevent the spreading of distinct domains. Additionally, in some loci, the high-order chromatin structures for long-range looping interactions also have boundary activities, suggesting a correlation between insulators and chromatin loop domains. In this review, we will discuss recent progress in the field of chromatin domain boundaries.

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Chromatin domain boundaries: insulators and beyond
Wei GH,Liu DP,Liang CC.Chromatin domain boundaries: insulators and beyond[J].Cell Research,2005,15(4):292-300.
Authors:Wei Gong Hong  Liu De Pei  Liang Chih Chuan
Institution:National Laboratory of Medical Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Abstract:The eukaryotic genome is organized into functionally and structurally distinct domains, representing regulatory unitsfor gene expression and chromosome behavior. DNA sequences that mark the border between adjacent domains are theinsulators or boundary elements, which are required in maintenance of the function of different domains. Some insula-tors need others enable to play insulation activity. Chromatin domains are defined by distinct sets of post-translationallymodified histones. Recent studies show that these histone modifications are also involved in establishment of sharpchromatin boundaries in order to prevent the spreading of distinct domains. Additionally, in some loci, the high-orderchromatin structures for long-range looping interactions also have boundary activities, suggesting a correlation betweeninsulators and chromatin loop domains. In this review, we will discuss recent progress in the field of chromatin domainboundaries.
Keywords:insulator  chromatin domain boundary  histone code  chromatin loop domain  
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