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The palmitoyltransferase Approximated promotes growth via the Hippo pathway by palmitoylation of Fat

机译:棕榈酰转移酶近似值通过脂肪的棕榈酰化作用通过河马途径促进生长

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摘要

The large protocadherin Fat functions to promote Hippo pathway activity in restricting tissue growth. Loss of Fat leads to accumulation of the atypical myosin Dachs at the apical junctional region, which in turn promotes growth by inhibiting Warts. We previously identified Approximated (App), a DHHC domain palmitoyltransferase, as a negative regulator of Fat signaling in growth control. We show here that App promotes growth by palmitoylating the intracellular domain of Fat, and that palmitoylation negatively regulates Fat function. Independently, App also recruits Dachs to the apical junctional region through protein–protein association, thereby stimulating Dachs’s activity in promoting growth. Further, we show that palmitoylation by App functions antagonistically to phosphorylation by Discs-overgrown, which activates Fat. Together, these findings suggest a model in which App promotes Dachs activity by simultaneously repressing Fat via posttranslational modification and recruiting Dachs to the apical junctional region, thereby promoting tissue growth.
机译:大的原钙粘蛋白脂肪在限制组织生长中起到促进Hippo途径活性的作用。脂肪的流失会导致非典型肌球蛋白Dachs堆积在根尖交界处,进而通过抑制疣促进生长。我们之前确定了DHHC域棕榈酰转移酶roximated(App)作为生长控制中Fat信号的负调节剂。我们在这里显示App通过棕榈酰化脂肪的胞内结构域促进生长,而棕榈酰化负调控脂肪的功能。独立地,App还通过蛋白质-蛋白质结合将Dachs招募到顶端连接区,从而刺激Dachs促进生长的活性。此外,我们显示App的棕榈酰化功能与Discs-长满的磷酸化作用相反,后者激活脂肪。在一起,这些发现提出了一个模型,其中App通过翻译后修饰同时抑制脂肪并将Dachs募集到顶端连接区,从而促进Dachs活性,从而促进组织生长。

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