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Heterochromatic deposition of centromeric histone H3-like proteins

机译:着丝粒组蛋白H3样蛋白的异色沉积

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摘要

Centromeres of most organisms are embedded within constitutive heterochromatin, the condensed regions of chromosomes that account for a large fraction of complex genomes. The functional significance of this centromere–heterochromatin relationship, if any, is unknown. One possibility is that heterochromatin provides a suitable environment for assembly of centromere components, such as special centromeric nucleosomes that contain distinctive histone H3-like proteins. We describe a Drosophila H3-like protein, Cid (for centromere identifier) that localizes exclusively to fly centromeres. When the cid upstream region drives expression of H3 and H2B histone–green fluorescent protein fusion genes in Drosophila cells, euchromatin-specific deposition results. Remarkably, when the cid upstream region drives expression of yeast, worm, and human centromeric histone–green fluorescent protein fusion proteins, localization is preferentially within Drosophila pericentric heterochromatin. Heterochromatin-specific localization also was seen for yeast and worm centromeric proteins constitutively expressed in human cells. Preferential localization to heterochromatin in heterologous systems is unexpected if centromere-specific or site-specific factors determine H3-like protein localization to centromeres. Rather, the heterochromatic state itself may help localize centromeric components.
机译:大多数生物体的着丝粒都嵌入组成型异染色质中,组成异染色质是染色体的浓缩区域,占复杂基因组的很大一部分。这种着丝粒-异染色质关系的功能意义(如果有的话)是未知的。一种可能性是异染色质为着丝粒组分的装配提供了合适的环境,着丝粒组分例如含有独特的组蛋白H3样蛋白的特殊着丝粒核小体。我们描述了果蝇H3样蛋白,Cid(着丝粒标识符),专门定位于飞行着丝粒。当cid上游区域驱动果蝇细胞中H3和H2B组蛋白-绿色荧光蛋白融合基因的表达时,就产生了常染色质特异性沉积。值得注意的是,当cid上游区域驱动酵母,蠕虫和人着丝粒组蛋白-绿色荧光蛋白融合蛋白的表达时,本地化优先位于果蝇周缘异染色质中。还观察到在人类细胞中组成型表达的酵母和蠕虫着丝粒蛋白的异染色质特异性定位。如果着丝粒特异性或位点特异性因素决定了类似H3的蛋白质着丝粒定位,异源系统中异染色质的优先定位是出乎意料的。相反,异色状态本身可以帮助定位着丝粒成分。

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