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果蝇剂量补偿复合体与多线染色体结合,独立于转录过程中的发育变化。

The Drosophila dosage compensation complex binds to polytene chromosomes independently of developmental changes in transcription.

作者信息

Kotlikova I V, Demakova O V, Semeshin V F, Shloma V V, Boldyreva L V, Kuroda M I, Zhimulev I F

机构信息

Institute of Cytology and Genetics, Siberian Branch of Russian Academy of Sciences, Novosibirsk, Russia.

出版信息

Genetics. 2006 Feb;172(2):963-74. doi: 10.1534/genetics.105.045286. Epub 2005 Aug 3.

Abstract

In Drosophila, the dosage compensation complex (DCC) mediates upregulation of transcription from the single male X chromosome. Despite coating the polytene male X, the DCC pattern looks discontinuous and probably reflects DCC dynamic associations with genes active at a given moment of development in a salivary gland. To test this hypothesis, we compared binding patterns of the DCC and of the elongating form of RNA polymerase II (PolIIo). We found that, unlike PolIIo, the DCC demonstrates a stable banded pattern throughout larval development and escapes binding to a subset of transcriptionally active areas, including developmental puffs. Moreover, these proteins are not completely colocalized at the electron microscopy level. These data combined imply that simple recognition of PolII machinery or of general features of active chromatin is either insufficient or not involved in DCC recruitment to its targets. We propose that DCC-mediated site-specific upregulation of transcription is not the fate of all active X-linked genes in males. Additionally, we found that DCC subunit MLE associates dynamically with developmental and heat-shock-induced puffs and, surprisingly, with those developing within DCC-devoid regions of the male X, thus resembling the PolIIo pattern. These data imply that, independently of other MSL proteins, the RNA-helicase MLE might participate in general transcriptional regulation or RNA processing.

摘要

在果蝇中,剂量补偿复合体(DCC)介导雄性单条X染色体转录的上调。尽管DCC覆盖了多线化的雄性X染色体,但其模式看起来是不连续的,这可能反映了DCC与唾液腺发育特定时刻活跃基因的动态关联。为了验证这一假设,我们比较了DCC和RNA聚合酶II延伸形式(PolIIo)的结合模式。我们发现,与PolIIo不同,DCC在整个幼虫发育过程中呈现出稳定的带状模式,并且不与包括发育性胀泡在内的一部分转录活跃区域结合。此外,在电子显微镜水平上,这些蛋白质并非完全共定位。这些数据综合起来表明,简单识别PolII机制或活性染色质的一般特征,对于DCC募集到其靶标来说要么是不够的,要么是不涉及的。我们提出,DCC介导的转录位点特异性上调并非雄性中所有活跃的X连锁基因的命运。此外,我们发现DCC亚基MLE与发育性和热休克诱导的胀泡动态关联,令人惊讶的是,还与雄性X染色体缺乏DCC区域内正在形成的胀泡相关联,因此类似于PolIIo模式。这些数据表明,独立于其他MSL蛋白,RNA解旋酶MLE可能参与一般转录调控或RNA加工。

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