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果蝇吉普赛染色质绝缘子的遗传与分子分析

Genetic and molecular analysis of the gypsy chromatin insulator of Drosophila.

作者信息

Gdula D A, Gerasimova T I, Corces V G

机构信息

Department of Biology, Johns Hopkins University, Baltimore, MD 21218, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Sep 3;93(18):9378-83. doi: 10.1073/pnas.93.18.9378.

Abstract

Boundary or insulator elements set up independent territories of gene activity by establishing higher order domains of chromatin structure. The gypsy retrotransposon of Drosophila contains an insulator element that represses enhancer-promoter interactions and is responsible for the mutant phenotypes caused by insertion of this element. The gypsy insulator inhibits the interaction of promoter-distal enhancers with the transcription complex without affecting the functionality of promoter-proximal enhancers; in addition, these sequences can buffer a transgene from chromosomal position effects. Two proteins have been identified that bind gypsy insulator sequences and are responsible for their effects on transcription. The suppressor of Hairy-wing [su(Hw)] protein affects enhancer function both upstream and downstream of its binding site by causing a silencing effect similar to that of heterochromatin. The modifier of mdg4 [mod(mdg4)] protein interacts with su(Hw) to transform this bi-directional repression into the polar effect characteristic of insulators. These effects seem to be modulated by changes in chromatin structure.

摘要

边界元件或绝缘子元件通过建立染色质结构的高阶结构域来构建基因活性的独立区域。果蝇的gypsy逆转座子包含一个绝缘子元件,该元件可抑制增强子-启动子相互作用,并导致因该元件插入而产生的突变表型。gypsy绝缘子可抑制启动子远端增强子与转录复合物的相互作用,而不影响启动子近端增强子的功能;此外,这些序列可以缓冲转基因免受染色体位置效应的影响。已鉴定出两种与gypsy绝缘子序列结合并负责其对转录作用的蛋白质。毛翅抑制蛋白[su(Hw)]通过产生类似于异染色质的沉默效应,影响其结合位点上游和下游的增强子功能。mdg4修饰蛋白[mod(mdg4)]与su(Hw)相互作用,将这种双向抑制转化为绝缘子特有的极性效应。这些效应似乎受到染色质结构变化的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e116/38435/00eea942e28d/pnas01522-0091-a.jpg

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