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Dystroglycan and perlecan provide a basal cue required for epithelial polarity during energetic stress.

机译:dystroglycan和perlecan提供了在精力充沛的压力下上皮极性所需的基础提示。

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Dystroglycan localizes to the basal domain of epithelial cells and has been reported to play a role in apical-basal polarity. Here, we show that Dystroglycan null mutant follicle cells have normal apical-basal polarity, but lose the planar polarity of their basal actin stress fibers, a phenotype it shares with Dystrophin mutants. However, unlike Dystrophin mutants, mutants in Dystroglycan or in its extracellular matrix ligand Perlecan lose polarity under energetic stress. The maintenance of epithelial polarity under energetic stress requires the activation of Myosin II by the cellular energy sensor AMPK. Starved Dystroglycan or Perlecan null cells activate AMPK normally, but do not activate Myosin II. Thus, Perlecan signaling through Dystroglycan may determine where Myosin II can be activated by AMPK, thereby providing the basal polarity cue for the low-energy epithelial polarity pathway. Since Dystroglycan is often downregulated in tumors, loss of this pathway may play a role in cancer progression.
机译:dystroglycan定位于上皮细胞的基础结构域,据报道在顶端基极极性中起作用。在这里,我们显示Dystroglycan null突变的卵泡细胞具有正常的顶基极极性,但失去了其基础肌动蛋白应激纤维的平面极性,这是与Dystrophin突变体共有的表型。但是,与Dystrophin突变体不同,Dystroglycan或其细胞外基质配体Perlecan中的突变体在高能胁迫下会失去极性。在高能压力下维持上皮极性需要细胞能量传感器AMPK激活肌球蛋白II。饥饿的dystroglycan或Perlecan空细胞正常激活AMPK,但不激活肌球蛋白II。因此,通过dystroglycan的Perlecan信号传导可以确定肌球蛋白II可以被AMPK激活,从而为低能上皮极性途径提供基础极性提示。由于dystroglycan通常在肿瘤中被下调,因此该途径的缺失可能在癌症进展中起作用。

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