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多类MSL结合位点将剂量补偿作用靶向于果蝇的X染色体。

Multiple classes of MSL binding sites target dosage compensation to the X chromosome of Drosophila.

作者信息

Oh Hyangyee, Bone James R, Kuroda Mitzi I

机构信息

Interdepartmental Program in Cell and Molecular Biology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

Curr Biol. 2004 Mar 23;14(6):481-7. doi: 10.1016/j.cub.2004.03.004.

Abstract

MSL complexes bind hundreds of sites along the single male X chromosome to achieve dosage compensation in Drosophila. Previously, we proposed that approximately 35 "high-affinity" or "chromatin entry" sites (CES) might nucleate spreading of MSL complexes in cis to paint the X chromosome. This was based on analysis of the first characterized sites roX1 and roX2. roX transgenes attract MSL complex to autosomal locations where it can spread long distances into flanking chromatin. roX1 and roX2 also produce noncoding RNA components of the complex. Here we identify a third site from the 18D10 region of the X chromosome. Like roX genes, 18D binds full and partial MSL complexes in vivo and encompasses a male-specific DNase I hypersensitive site (DHS). Unlike roX genes, the 510 bp 18D site is apparently not transcribed and shows high affinity for MSL complex and spreading only as a multimer. While mapping 18D, we discovered MSL binding to X cosmids that do not carry one of the approximately 35 high-affinity sites. Based on additional analyses of chromosomal transpositions, we conclude that spreading in cis from the roX genes or the approximately 35 originally proposed "entry sites" cannot be the sole mechanism for MSL targeting to the X chromosome.

摘要

雄性特异性致死(MSL)复合物沿着果蝇的单条雄性X染色体结合数百个位点,以实现剂量补偿。此前,我们提出大约35个“高亲和力”或“染色质进入”位点(CES)可能会引发MSL复合物在顺式方向上的扩散,从而标记X染色体。这是基于对最初鉴定的位点roX1和roX2的分析得出的。roX转基因会将MSL复合物吸引到常染色体位置,在那里它可以扩散到侧翼染色质的远距离区域。roX1和roX2还产生该复合物的非编码RNA成分。在这里,我们从X染色体的18D10区域鉴定出第三个位点。与roX基因一样,18D在体内结合完整和部分MSL复合物,并包含一个雄性特异性的DNA酶I超敏位点(DHS)。与roX基因不同的是,510 bp的18D位点显然不转录,并且对MSL复合物显示出高亲和力,并且仅作为多聚体时才会扩散。在定位18D的过程中,我们发现MSL与不携带大约35个高亲和力位点之一的X黏粒结合。基于对染色体转座的进一步分析,我们得出结论,从roX基因或最初提出的大约35个“进入位点”在顺式方向上的扩散不可能是MSL靶向X染色体的唯一机制。

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