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在果蝇整个发育过程中,维持转录抑制需要一个沉默子。

A silencer is required for maintenance of transcriptional repression throughout Drosophila development.

作者信息

Busturia A, Wightman C D, Sakonju S

机构信息

Department of Human Genetics, Institute of Human Genetics, University of Utah, Salt Lake City 84112, USA.

出版信息

Development. 1997 Nov;124(21):4343-50. doi: 10.1242/dev.124.21.4343.

Abstract

Transcriptional silencing by the Polycomb Group of genes maintains the position-specific repression of homeotic genes throughout Drosophila development. The Polycomb Group of genes characterized to date encode chromatin-associated proteins that have been suggested to form heterochromatin-like structures. By studying the expression of reporter genes, we have identified a 725 bp fragment, called MCP725, in the homeotic gene Abdominal-B, that accurately maintains position-specific silencing during proliferation of imaginal cells. Silencing by MCP725 requires the Polycomb and the Polycomblike genes, indicating that it contains a Polycomb response element To investigate the mechanisms of transcriptional silencing by MCP725, we have studied its temporal requirements by removing MCP725 from the transgene at various times during development. We have discovered that excision of MCP725 during larval stages leads to loss of silencing. Our findings indicate that the silencer is required for the maintenance of the repressed state throughout cell proliferation. They also suggest that propagation of the silenced state does not occur merely by templating of a heterochromatin structure by virtue of protein-protein interactions. Rather, they suggest that silencers play an active role in the maintenance of the position-specific repression throughout development.

摘要

在果蝇的整个发育过程中,多梳基因家族介导的转录沉默维持了同源异型基因的位置特异性抑制。迄今为止所鉴定的多梳基因家族编码与染色质相关的蛋白质,有人认为这些蛋白质可形成异染色质样结构。通过研究报告基因的表达,我们在同源异型基因腹部B中鉴定出一个725bp的片段,称为MCP725,它在成虫盘细胞增殖过程中能精确维持位置特异性沉默。MCP725介导的沉默需要多梳基因和类多梳基因,这表明它含有一个多梳反应元件。为了研究MCP725介导转录沉默的机制,我们通过在发育的不同时间从转基因中去除MCP725来研究其时间需求。我们发现,在幼虫阶段切除MCP725会导致沉默的丧失。我们的研究结果表明,沉默子在整个细胞增殖过程中对于维持抑制状态是必需的。它们还表明,沉默状态的传播不仅仅是通过蛋白质-蛋白质相互作用对异染色质结构进行模板化来实现的。相反,它们表明沉默子在整个发育过程中对维持位置特异性抑制起着积极作用。

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