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果蝇无眼基因座自主调控域的基因组组织。

Genomic organization of the autonomous regulatory domain of eyeless locus in Drosophila melanogaster.

机构信息

Centre for Cellular and Molecular Biology, Council of Scientific and Industrial Research, Hyderabad 500007, India.

出版信息

G3 (Bethesda). 2021 Dec 8;11(12). doi: 10.1093/g3journal/jkab338.

Abstract

In Drosophila, expression of eyeless (ey) gene is restricted to the developing eyes and central nervous system. However, the flanking genes, myoglianin (myo), and bent (bt) have different temporal and spatial expression patterns as compared to the ey. How distinct regulation of ey is maintained is mostly unknown. Earlier, we have identified a boundary element intervening myo and ey genes (ME boundary) that prevents the crosstalk between the cis-regulatory elements of myo and ey genes. In the present study, we further searched for the cis-elements that define the domain of ey and maintain its expression pattern. We identify another boundary element between ey and bt, the EB boundary. The EB boundary separates the regulatory landscapes of ey and bt genes. The two boundaries, ME and EB, show a long-range interaction as well as interact with the nuclear architecture. This suggests functional autonomy of the ey locus and its insulation from differentially regulated flanking regions. We also identify a new Polycomb Response Element, the ey-PRE, within the ey domain. The expression state of the ey gene, once established during early development is likely to be maintained with the help of ey-PRE. Our study proposes a general regulatory mechanism by which a gene can be maintained in a functionally independent chromatin domain in gene-rich euchromatin.

摘要

在果蝇中,eyeless(ey)基因的表达仅限于发育中的眼睛和中枢神经系统。然而,侧翼基因 myoglianin(myo)和 bent(bt)的表达模式与 ey 不同,无论是时间上还是空间上。ey 基因的调节机制为何如此独特,目前仍知之甚少。此前,我们已经鉴定了一个位于 myo 和 ey 基因之间的边界元件(ME 边界),该元件可防止 myo 和 ey 基因的顺式调控元件之间的串扰。在本研究中,我们进一步寻找定义 ey 表达模式的顺式元件。我们在 ey 和 bt 之间发现了另一个边界元件,即 EB 边界。EB 边界分隔了 ey 和 bt 基因的调控景观。这两个边界,ME 和 EB,不仅具有长程相互作用,还与核架构相互作用。这表明 ey 基因座具有功能自主性,并与差异调控的侧翼区域隔离开来。我们还在 ey 基因座内鉴定了一个新的 Polycomb 反应元件,即 ey-PRE。ey 基因的表达状态一旦在早期发育过程中建立,就可能在 ey-PRE 的帮助下维持。我们的研究提出了一种普遍的调控机制,通过该机制,一个基因可以在富含 euchromatin 的功能独立染色质域中维持其功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a21f/8664461/395eb72f0e9b/jkab338f1.jpg

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