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The Chromatin-Remodeling Protein Osa Interacts With CyclinE in Drosophila Eye Imaginal Discs

机译:染色质重塑蛋白Osa与果蝇眼想象盘中的CyclinE相互作用。

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摘要

Coordinating cell proliferation and differentiation is essential during organogenesis. In Drosophila, the photoreceptor, pigment, and support cells of the eye are specified in an orchestrated wave as the morphogenetic furrow passes across the eye imaginal disc. Cells anterior of the furrow are not yet differentiated and remain mitotically active, while most cells in the furrow arrest at G1 and adopt specific ommatidial fates. We used microarray expression analysis to monitor changes in transcription at the furrow and identified genes whose expression correlates with either proliferation or fate specification. Some of these are members of the Polycomb and Trithorax families that encode epigenetic regulators. Osa is one; it associates with components of the Drosophila SWI/SNF chromatin-remodeling complex. Our studies of this Trithorax factor in eye development implicate Osa as a regulator of the cell cycle: Osa overexpression caused a small-eye phenotype, a reduced number of M- and S-phase cells in eye imaginal discs, and a delay in morphogenetic furrow progression. In addition, we present evidence that Osa interacts genetically and biochemically with CyclinE. Our results suggest a dual mechanism of Osa function in transcriptional regulation and cell cycle control.
机译:协调细胞增殖和分化在器官发生过程中至关重要。在果蝇中,当形态发生犁沟穿过眼睛的视盘时,眼中的感光细胞,色素和支持细胞被指定为协调波。犁沟前的细胞尚未分化并保持有丝分裂活性,而犁沟中的大多数细胞在G1处停滞并采取特定的ommatidial命运。我们使用微阵列表达分析来监测犁沟转录的变化,并鉴定了其表达与增殖或命运相关的基因。其中一些是Polycomb和Trithorax家族的成员,它们编码表观遗传调控因子。奥萨是一个;它与果蝇SWI / SNF染色质重塑复合物的成分相关。我们对眼发育中的Trithorax因子的研究暗示Osa可能是细胞周期的调节剂:Osa过表达导致小眼表型,眼视盘中M相和S相细胞数量减少以及形态发生犁沟延迟进展。另外,我们提供了Osa与CyclinE发生遗传和生化相互作用的证据。我们的结果表明Osa功能在转录调控和细胞周期控制中的双重机制。

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