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Autotaxin/Lpar3 signaling regulates Kupffer's vesicle formation and left-right asymmetry in zebrafish

机译:Autotaxin / Lpar3信号传导调节斑马鱼中Kupffer的囊泡形成和左右不对称

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Left-right (L-R) patterning is essential for proper organ morphogenesis and function. Calcium fluxes in dorsal forerunner cells (DFCs) are known to regulate the formation of Kupffer's vesicle (KV), a central organ for establishing L-R asymmetry in zebrafish. Here, we identify the lipid mediator lysophosphatidic acid (LPA) as a regulator of L-R asymmetry in zebrafish embryos. LPA is produced by Autotaxin (Atx), a secreted lysophospholipase D, and triggers various cellular responses through activation of specific G proteincoupled receptors (Lpar1-6). Knockdown of Atx or LPA receptor 3 (Lpar3) by morpholino oligonucleotides perturbed asymmetric gene expression in lateral plate mesoderm and disrupted organ L-R asymmetries, whereas overexpression of lpar3 partially rescued those defects in both atx and lpar3 morphants. Similar defects were observed in embryos treated with the Atx inhibitor HA130 and the Lpar1-3 inhibitor Ki16425. Knockdown of either Atx or Lpar3 impaired calcium fluxes in DFCs during mid-epiboly stage and compromised DFC cohesive migration, KV formation and ciliogenesis. Application of LPA to DFCs rescued the calcium signal and laterality defects in atx morphants. This LPA-dependent L-R asymmetry is mediated via Wnt signaling, as shown by the accumulation of β-catenin in nuclei at the dorsal side of both atx and lpar3 morphants. Our results suggest a major role for the Atx/Lpar3 signaling axis in regulating KV formation, ciliogenesis and L-R asymmetry via a Wnt-dependent pathway.
机译:左右(L-R)图案对于正确的器官形态发生和功能至关重要。众所周知,背前体细胞(DFC)中的钙通量可调节库普弗囊泡(KV)的形成,该库珀是在斑马鱼中建立L-R不对称性的中央器官。在这里,我们确定脂质介质溶血磷脂酸(LPA)作为斑马鱼胚胎中L-R不对称的调节剂。 LPA由分泌的溶血磷脂酶D Autotaxin(Atx)产生,并通过激活特定的G蛋白偶联受体(Lpar1-6)触发各种细胞应答。吗啉代寡核苷酸敲低Atx或LPA受体3(Lpar3)扰乱了侧板中胚层的不对称基因表达并破坏了器官L-R不对称性,而lpar3的过表达部分挽救了atx和lpar3 morphant中的那些缺陷。在用Atx抑制剂HA130和Lpar1-3抑制剂Ki16425处理的胚胎中观察到类似的缺陷。击倒Atx或Lpar3会损害上表皮期中DFC中的钙通量,并损害DFC内聚迁移,KV形成和纤毛发生。 LPA在DFC中的应用挽救了atx吗啡药中的钙信号和侧偏缺陷。这种LPA依赖的L-R不对称性是通过Wnt信号传导介导的,如atx和lpar3 morphant的背侧核中β-catenin的积累所表明的。我们的结果表明,Atx / Lpar3信号轴在通过Wnt依赖性途径调节KV形成,纤毛生成和L-R不对称中起主要作用。

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