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MicroRNA miR-7 Contributes to the Control of Drosophila Wing Growth

机译:MicroRNA miR-7有助于控制果蝇的翅膀生长

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Background: The control of organ growth is critical for correct animal development. From flies to mammals, the mechanisms regulating growth are conserved and the role of microRNAs in this process is emerging. The conserved miR-7 has been described to control several aspects of development. Results: Here, we have analyzed the function of miR-7 during Drosophila wing development. We found that loss of miR-7 function results in a reduction of wing size and produces wing cells that are smaller than wild type cells. We also found that loss of miR-7 function interferes with the cell cycle by affecting the G1 to S phase transition. Further, we present evidence that miR-7 is expressed in the wing imaginal discs and that the inactivation of miR-7 increases the expression of Cut and Senseless proteins in wing discs. Finally, our results show that the simultaneous inactivation of miR-7 and either cut, Notch, or dacapo rescues miR-7 loss of function wing size reduction phenotype. Conclusions: The results from this work reveal, for the first time, that miR-7 functions to regulate Drosophila wing growth by controlling cell cycle phasing and cell mass through its regulation of the expression of dacapo and the Notch signaling pathway. Developmental Dynamics 244: 21-30, 2015. VC 2014 Wiley Periodicals, Inc.
机译:背景:控制器官的生长对于正确的动物发育至关重要。从苍蝇到哺乳动物,调节生长的机制得以保留,microRNA在此过程中的作用正在兴起。已经描述了保守的miR-7可控制发育的几个方面。结果:在这里,我们分析了果蝇翅膀发育过程中miR-7的功能。我们发现,miR-7功能的丧失导致机翼尺寸减小,并产生比野生型细胞小的机翼细胞。我们还发现,miR-7功能的丧失会通过影响G1到S的相变而干扰细胞周期。此外,我们目前提供的证据表明,miR-7在机翼假想盘中表达,并且miR-7的失活增加了机翼盘中Cut和Senseless蛋白的表达。最后,我们的结果表明,miR-7的同时失活以及cut,Notch或dacapo都可以挽救miR-7丧失机翼大小的表型。结论:这项工作的结果首次揭示了miR-7通过调节dacapo的表达和Notch信号通路来控制细胞周期的阶段和细胞质量,从而调节果蝇的翅膀生长。 Developmental Dynamics 244:2015年21月30日。VC2014 Wiley Periodicals,Inc.

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