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多梳蛋白与GAGA因子在负责维持同源异型基因表达的调控元件上的共定位。

Co-localization of Polycomb protein and GAGA factor on regulatory elements responsible for the maintenance of homeotic gene expression.

作者信息

Strutt H, Cavalli G, Paro R

机构信息

ZMBH, University of Heidelberg, Germany.

出版信息

EMBO J. 1997 Jun 16;16(12):3621-32. doi: 10.1093/emboj/16.12.3621.

Abstract

The Polycomb group and trithorax group genes of Drosophila are required for maintaining the differential expression state of developmental regulators, such as the homeotic genes, in a stable and heritable manner throughout development. The Polycomb group genes have been suggested to act by regulating higher order chromatin and packaging repressed chromosomal domains in a heterochromatin-like structure. We have mapped, at high resolution, the distribution of Polycomb protein on the bithorax complex of Drosophila tissue culture cells, using an improved formaldehyde cross-linking and immunoprecipitation technique. Polycomb protein is not distributed homogeneously on the regulatory regions of the repressed Ultrabithorax and abdominal-A genes, but is highly enriched at discrete sequence elements, many of which coincide with previously mapped Polycomb group response elements (PREs). Our results further suggest that Polycomb protein spreads locally over a few kilobases of DNA surrounding PREs, perhaps to stabilize silencing complexes. GAGA factor/Trithorax-like, a member of the trithorax group, is also bound at those PREs which contain GAGA consensus-binding sites. Two modes of binding can be distinguished: a high level binding to elements in the regulatory domain of the expressed Abdominal-B gene, and a low level of binding to Polycomb-bound PREs in the inactive domains of the bithorax complex. We propose that GAGA factor binds constitutively to regulatory elements in the bithorax complex, which function both as PREs and as trithorax group response elements.

摘要

果蝇的多梳蛋白家族和三胸蛋白家族基因对于在整个发育过程中以稳定且可遗传的方式维持发育调控因子(如实变态基因)的差异表达状态是必需的。多梳蛋白家族基因被认为是通过调控高阶染色质并以异染色质样结构包装被抑制的染色体结构域来发挥作用的。我们使用改进的甲醛交联和免疫沉淀技术,以高分辨率绘制了果蝇组织培养细胞双胸复合体上多梳蛋白的分布。多梳蛋白并非均匀地分布在被抑制的超双胸基因和腹部-A基因的调控区域上,而是在离散的序列元件处高度富集,其中许多元件与先前绘制的多梳蛋白家族反应元件(PREs)重合。我们的结果进一步表明,多梳蛋白在PREs周围的几千个碱基的DNA上局部扩散,可能是为了稳定沉默复合体。三胸蛋白家族成员GAGA因子/类三胸蛋白也结合在那些含有GAGA共有结合位点的PREs上。可以区分出两种结合模式:一种是与表达的腹部-B基因调控域中的元件的高水平结合,另一种是与双胸复合体非活性域中多梳蛋白结合的PREs的低水平结合。我们提出,GAGA因子组成性地结合在双胸复合体的调控元件上,这些元件既作为PREs发挥作用,也作为三胸蛋白家族反应元件发挥作用。

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