The higher structure of chromatin in the LCR of the beta-globin locus changes during development.

Journal of Molecular Biology
Xiangdong FangQiliang Li

Abstract

The beta-globin locus control region (LCR) is able to enhance the expression of all globin genes throughout the course of development. However, the chromatin structure of the LCR at the different developmental stages is not well defined. We report DNase I and micrococcal nuclease hypersensitivity, chromatin immunoprecipitation analyses for histones H2A, H2B, H3, and H4, and 3C (chromatin conformation capture) assays of the normal and mutant beta-globin loci, which demonstrate that nucleosomes at the DNase I hypersensitive sites of the LCR could be either depleted or retained depending on the stages of development. Furthermore, MNase sensitivity and 3C assays suggest that the LCR chromatin is more open in embryonic erythroblasts than in definitive erythroblasts at the primary- and secondary-structure levels; however, the LCR chromatin is packaged more tightly in embryonic erythroblasts than in definitive erythroblasts at the tertiary chromatin level. Our study provides the first evidence that the occupancy of nucleosomes at a DNase I hypersensitive site is a developmental stage-related event and that embryonic and adult cells possess distinct chromatin structures of the LCR.

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Dec 3, 2003·The Journal of Biological Chemistry·Xiangdong FangQiliang Li

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Citations

Nov 26, 2010·Biochemistry and Cell Biology = Biochimie Et Biologie Cellulaire·Michèle Amouyal
Dec 31, 2011·Yi chuan = Hereditas·He-Yuan QiXiang-Dong Fang
Dec 20, 2011·The International Journal of Biochemistry & Cell Biology·Seoyeon KimAeri Kim
Mar 31, 2016·The International Journal of Biochemistry & Cell Biology·Yea Woon KimAeRi Kim
May 24, 2013·Nucleic Acids Research·Justin MalinSridhar Hannenhalli
Jun 8, 2013·Journal of Cellular Biochemistry·Marcela StuardoSoraya Gutierrez
Jul 27, 2021·FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology·Yujin KangAeRi Kim

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