Institute of Zoology, National Taiwan University, 1 Roosevelt Road, Sec. 4, Taipei 10617, Taiwan, Republic of China.
Development. 2012 Dec 1;139(23):4439-48. doi: 10.1242/dev.081745. Epub 2012 Oct 24.
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 protein-coupled 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.
左右(L-R)模式对于器官形态发生和功能至关重要。已知背侧前体细胞(DFC)中的钙通量调节 Kupffer 泡(KV)的形成,KV 是建立斑马鱼左右不对称的中心器官。在这里,我们确定了脂质介体溶血磷脂酸(LPA)作为斑马鱼胚胎左右不对称的调节剂。LPA 由 Autotaxin(Atx)产生,Atx 是一种分泌型溶血磷脂酶 D,通过激活特定的 G 蛋白偶联受体(Lpar1-6)触发各种细胞反应。用 morpholino 寡核苷酸敲低 Atx 或 LPA 受体 3(Lpar3)会扰乱侧中胚层的不对称基因表达,并破坏器官的左右不对称,而过表达 lpar3 则部分挽救了 atx 和 lpar3 突变体中的这些缺陷。在 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。敲低 Atx 或 Lpar3 会损害中胚层伸展阶段 DFC 中的钙通量,并损害 DFC 的粘着迁移、KV 的形成和纤毛发生。向 DFC 施加 LPA 可挽救 atx 突变体中的钙信号和左右不对称缺陷。这种 LPA 依赖性左右不对称是通过 Wnt 信号传导介导的,因为在 atx 和 lpar3 突变体的背侧细胞核中β-连环蛋白积累。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、纤毛发生和左右不对称方面发挥主要作用。