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Differential Regulation of Cyclin E by Yorkie-Scalloped Signaling in Organ Development

机译:Yorkie扇贝信号在器官发育中对细胞周期蛋白E的差异调节

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摘要

Tissue integrity and homeostasis are accomplished through strict spatial and temporal regulation of cell growth and proliferation during development. Various signaling pathways have emerged as major growth regulators across metazoans; yet, how differential growth within a tissue is spatiotemporally coordinated remains largely unclear. Here, we report a role of a growth modulator Yorkie (), the Drosophila homolog of Yes-associated protein (YAP), that differentially regulates its targets in Drosophila wing imaginal discs; whereby Yki interacts with its transcriptional partner, Scalloped (), the homolog of the TEAD/TEF family transcription factor in mammals, to control an essential cell cycle regulator Cyclin E (CycE). Interestingly, when Yki was coexpressed with Fizzy-related (), a Drosophila endocycle inducer and homolog of Cdh1 in mammals, surrounding hinge cells displayed larger nuclear size than distal pouch cells. The observed size difference is attributable to differential regulation of CycE, a target of Yki and Sd, the latter of which can directly bind to regulatory sequences, and is expressed only in the pouch region of the wing disc starting from the late second-instar larval stage. During earlier stages of larval development, when Sd expression was not detected in the wing disc, coexpression of Fzr and Yki did not cause size differences between cells along the proximal–distal axis of the disc. We show that ectopic CycE promoted cell proliferation and apoptosis, and inhibited transcriptional activity of Yki targets. These findings suggest that spatiotemporal expression of transcription factor Sd induces differential growth regulation by Yki during wing disc development, highlighting coordination between Yki and CycE to control growth and maintain homeostasis.
机译:组织的完整性和体内平衡是通过在发育过程中对细胞生长和增殖进行严格的时空调节来实现的。各种信号通路已成为跨子生动物的主要生长调节剂。然而,组织内的差异性生长如何在时空上协调尚不清楚。在这里,我们报道了一种生长调节剂Yorkie(),是果蝇相关蛋白(YAP)的果蝇同源物的作用,该果蝇在果蝇翅假想盘中有差异地调节其靶标;因此,Yki与它的转录伴侣Scalloped()(哺乳动物TEAD / TEF家族转录因子的同源物)相互作用,以控制必需的细胞周期调节剂Cyclin E(CycE)。有趣的是,当Yki与果蝇内循环诱导物Fizzy-related和哺乳动物中Cdh1的同系物共表达时,周围的铰链细胞显示出比远端囊细胞更大的核大小。观察到的大小差异归因于CycE的差异调节,CycE是Yki和Sd的靶标,后者可以直接与调节序列结合,并且仅在从第二龄幼虫幼虫开始的翅片囊区域表达。阶段。在幼体发育的早期阶段,当在翼盘中未检测到Sd表达时,Fzr和Yki的共表达不会引起沿盘近端-远端轴的细胞之间的大小差异。我们显示异位CycE促进细胞增殖和凋亡,并抑制Yki目标的转录活性。这些发现表明,转录因子Sd的时空表达在翼盘发育过程中诱导了Yki的差异性生长调节,突显了Yki和CycE之间的协调,以控制生长并维持体内稳态。

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