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活性小鼠红白血病细胞核染色质的亲和分离:泛素化组蛋白H2A在活性和非活性组分间的均匀分布

Affinity isolation of active murine erythroleukemia cell chromatin: uniform distribution of ubiquitinated histone H2A between active and inactive fractions.

作者信息

Dawson B A, Herman T, Haas A L, Lough J

机构信息

Department of Anatomy and Cellular Biology, Medical College of Wisconsin, Milwaukee 53226.

出版信息

J Cell Biochem. 1991 Jun;46(2):166-73. doi: 10.1002/jcb.240460210.

Abstract

This laboratory recently reported the development of a biotin-cellulose/streptavidin affinity chromatography method based on the DNase I sensitivity of active chromatin to isolate a DNA fraction from murine erythroleukemia (MEL) cells that is more than 15-fold enriched in active genes (Dawson et al.: Journal of Biological Chemistry 264:12830-12837, 1989). We now report the extension of this technique to isolate and characterize chromatin that is enriched in active genes. In this approach, DNA in nuclei isolated from MEL cells was nicked with DNase I at a concentration that does not digest the active beta-globin gene, followed by repair of the nicks with a cleavable biotinylated nucleotide analog, 5-[(N-biotin-amido)hexanoamido-ethyl-1,3'-dithiopropionyl-3- aminoallyl]-2'- deoxyuridine 5'-triphosphate (Bio-19-SS-dUTP), during a nick-translation reaction. After shearing and sonication of the nuclei to solubilize chromatin, chromatin fragments containing biotin were separated from non-biotinylated fragments by sequential binding to streptavidin and biotin cellulose. The bound complex contained approximately 10% of the bulk DNA. Reduction of the disulfide bond in the biotinylated nucleotide eluted approximately one-half of the affinity isolated chromatin. Hybridization analysis of DNA revealed that whereas inactive albumin sequences were equally distributed among the chromatin fractions, virtually all of the active beta-globin sequences were associated with chromatin fragments which had bound to the affinity complex. Western blot assessment for ubiquitinate histones revealed that ubiquitinated histone H2A (uH2A) was uniformly distributed among active (bound) and inactive (unbound) chromatin fractions.

摘要

本实验室最近报道了一种基于活性染色质对DNase I敏感性的生物素 - 纤维素/链霉亲和素亲和层析方法的开发,用于从小鼠红白血病(MEL)细胞中分离出一个DNA组分,该组分在活性基因中富集超过15倍(道森等人:《生物化学杂志》264:12830 - 12837,1989)。我们现在报告将该技术扩展用于分离和表征富含活性基因的染色质。在这种方法中,从MEL细胞分离的细胞核中的DNA用不会消化活性β - 珠蛋白基因的浓度的DNase I进行切口,随后在切口平移反应期间用可裂解的生物素化核苷酸类似物5 - [(N - 生物素 - 酰胺基)己酰胺基 - 乙基 - 1,3' - 二硫代丙酰基 - 3 - 氨基烯丙基] - 2' - 脱氧尿苷5' - 三磷酸(Bio - 19 - SS - dUTP)修复切口。在对细胞核进行剪切和超声处理以溶解染色质后,通过依次与链霉亲和素和生物素纤维素结合,将含有生物素的染色质片段与非生物素化片段分离。结合的复合物包含大约10%的总DNA。生物素化核苷酸中二硫键的还原洗脱了大约一半的亲和分离染色质。DNA的杂交分析表明,虽然无活性的白蛋白序列在染色质组分中均匀分布,但几乎所有活性β - 珠蛋白序列都与已结合到亲和复合物的染色质片段相关。对泛素化组蛋白的蛋白质印迹评估显示,泛素化组蛋白H2A(uH2A)在活性(结合)和非活性(未结合)染色质组分中均匀分布。

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