Department of Molecular Biology, Umeå University, SE-90187 Umeå, Sweden.
Cells. 2020 Jan 30;9(2):323. doi: 10.3390/cells9020323.
Chromosome-specific regulatory mechanisms provide a model to understand the coordinated regulation of genes on entire chromosomes or on larger genomic regions. In fruit flies, two chromosome-wide systems have been characterized: The male-specific lethal (MSL) complex, which mediates dosage compensation and primarily acts on the male X-chromosome, and Painting of fourth (POF), which governs chromosome-specific regulation of genes located on the 4th chromosome. How targeting of one specific chromosome evolves is still not understood; but repeated sequences, in forms of satellites and transposable elements, are thought to facilitate the evolution of chromosome-specific targeting. The highly repetitive 1.688 satellite has been functionally connected to both these systems. Considering the rapid evolution and the necessarily constant adaptation of regulatory mechanisms, such as dosage compensation, we hypothesised that POF and/or 1.688 may still show traces of dosage-compensation functions. Here, we test this hypothesis by transcriptome analysis. We show that loss of decreases not only chromosome 4 expression but also reduces the X-chromosome expression in males. The 1.688 repeat deletion, ), does not affect male dosage compensation detectably; however, in females causes a stimulatory effect on X-linked genes with a strong binding affinity to the MSL complex (genes close to high-affinity sites). Lack of pericentromeric 1.688 also affected 1.688 expression in and was linked to the differential expression of genes involved in eggshell formation. We discuss our results with reference to the connections between POF, the 1.688 satellite and dosage compensation, and the role of the 1.688 satellite in hybrid lethality.
染色体特异性调控机制为理解整个染色体或更大基因组区域上基因的协调调控提供了模型。在果蝇中,已经描述了两个染色体范围的系统:雄性特异性致死(MSL)复合物,介导剂量补偿,主要作用于雄性 X 染色体,以及第四染色质特异性调控(POF),它调控位于第 4 号染色体上的基因的染色体特异性调控。然而,针对特定染色体的靶向如何进化仍不清楚;但是重复序列,以卫星和转座元件的形式,被认为有助于染色体特异性靶向的进化。高度重复的 1.688 卫星与这两个系统都有功能联系。考虑到快速进化和剂量补偿等调节机制的必然持续适应,我们假设 POF 和/或 1.688 可能仍然显示出剂量补偿功能的痕迹。在这里,我们通过转录组分析来检验这一假设。我们表明,缺失减少了不仅是第 4 号染色体的表达,而且还降低了雄性的 X 染色体表达。1.688 重复缺失(),在雄性中不能明显影响剂量补偿;然而,在雌性中,它对与 MSL 复合物(靠近高亲和力位点的基因)具有强结合亲和力的 X 连锁基因产生了刺激作用。缺乏着丝粒周围的 1.688 也影响了和中的 1.688 表达,并与参与卵壳形成的基因的差异表达有关。我们将我们的结果与 POF、1.688 卫星和剂量补偿之间的联系以及 1.688 卫星在杂种致死中的作用联系起来进行讨论。