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Prickle1 mutation causes planar cell polarity and directional cell migration defects associated with cardiac outflow tract anomalies and other structural birth defects

机译:Prickle1突变导致与心脏流出道异常和其他结构性出生缺陷相关的平面细胞极性和定向细胞迁移缺陷

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Planar cell polarity (PCP) is controlled by a conserved pathway that regulates directional cell behavior. Here, we show that mutant mice harboring a newly described mutation termed Beetlejuice ( Bj ) in Prickle1 ( Pk1 ), a PCP component, exhibit developmental phenotypes involving cell polarity defects, including skeletal, cochlear and congenital cardiac anomalies. Bj mutants die neonatally with cardiac outflow tract (OFT) malalignment. This is associated with OFT shortening due to loss of polarized cell orientation and failure of second heart field cell intercalation mediating OFT lengthening. OFT myocardialization was disrupted with cardiomyocytes failing to align with the direction of cell invasion into the outflow cushions. The expression of genes mediating Wnt signaling was altered. Also noted were shortened but widened bile ducts and disruption in canonical Wnt signaling. Using an in vitro wound closure assay, we showed Bj mutant fibroblasts cannot establish polarized cell morphology or engage in directional cell migration, and their actin cytoskeleton failed to align with the direction of wound closure. Unexpectedly, Pk1 mutants exhibited primary and motile cilia defects. Given Bj mutant phenotypes are reminiscent of ciliopathies, these findings suggest Pk1 may also regulate ciliogenesis. Together these findings show Pk1 plays an essential role in regulating cell polarity and directional cell migration during development.
机译:平面细胞极性(PCP)由调节方向性细胞行为的保守途径控制。在这里,我们显示突变小鼠在PCP组件Prickle1(Pk1)中具有一个新描述的称为Beetlejuice(Bj)的突变,表现出涉及细胞极性缺陷的发育表型,包括骨骼,耳蜗和先天性心脏异常。 Bj突变新生儿死于心脏流出道(OFT)排列不良。这与由于极化细胞取向的丧失和介导OFT延长的第二心脏场细胞插层的失败而导致的OFT缩短有关。由于心肌细胞未能与细胞侵入流出垫的方向一致,因此OFT的心肌化被破坏。介导Wnt信号转导的基因的表达发生了变化。还注意到缩短但加宽的胆管和经典Wnt信号的破坏。使用体外伤口闭合试验,我们显示Bj突变型成纤维细胞无法建立极化细胞形态或参与定向细胞迁移,并且它们的肌动蛋白细胞骨架未能与伤口闭合的方向一致。出乎意料的是,Pk1突变体表现出原发性和运动性纤毛缺陷。鉴于Bj突变表型让人想起纤毛病,这些发现表明Pk1也可能调节纤毛发生。这些发现共同表明,Pk1在发育过程中在调节细胞极性和定向细胞迁移中起着至关重要的作用。

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