Department of Cell and Molecular Biology, St. Jude Children's Research Hospital, Memphis, TN, USA.
Rhodes College Summer Plus Program , Memphis, TN, USA.
J Cell Biol. 2024 Sep 2;223(9). doi: 10.1083/jcb.202306002. Epub 2024 Jun 10.
Sonic Hedgehog (SHH) is a driver of embryonic patterning that, when corrupted, triggers developmental disorders and cancers. SHH effector responses are organized through primary cilia (PC) that grow and retract with the cell cycle and in response to extracellular cues. Disruption of PC homeostasis corrupts SHH regulation, placing significant pressure on the pathway to maintain ciliary fitness. Mechanisms by which ciliary robustness is ensured in SHH-stimulated cells are not yet known. Herein, we reveal a crosstalk circuit induced by SHH activation of Phospholipase A2α that drives ciliary E-type prostanoid receptor 4 (EP4) signaling to ensure PC function and stabilize ciliary length. We demonstrate that blockade of SHH-EP4 crosstalk destabilizes PC cyclic AMP (cAMP) equilibrium, slows ciliary transport, reduces ciliary length, and attenuates SHH pathway induction. Accordingly, Ep4-/- mice display shortened neuroepithelial PC and altered SHH-dependent neuronal cell fate specification. Thus, SHH initiates coordination between distinct ciliary receptors to maintain PC function and length homeostasis for robust downstream signaling.
Sonic Hedgehog (SHH) 是胚胎模式形成的驱动因素,当其受到破坏时,会引发发育障碍和癌症。SHH 效应器反应通过初级纤毛 (PC) 组织,PC 随细胞周期生长和收缩,并对外界信号做出反应。PC 动态平衡的破坏会破坏 SHH 的调节,对维持纤毛功能的途径施加巨大压力。在 SHH 刺激的细胞中,确保纤毛稳健性的机制尚不清楚。在此,我们揭示了一个由 SHH 激活磷脂酶 A2α诱导的串扰回路,该回路驱动纤毛 E 型前列腺素受体 4 (EP4) 信号传导,以确保 PC 功能并稳定纤毛长度。我们证明,阻断 SHH-EP4 串扰会破坏 PC 环磷酸腺苷 (cAMP) 平衡,减缓纤毛运输,缩短纤毛长度,并减弱 SHH 通路的诱导。因此,Ep4-/- 小鼠表现出缩短的神经上皮 PC 和改变的 SHH 依赖性神经元细胞命运特化。因此,SHH 启动了不同的纤毛受体之间的协调,以维持 PC 功能和长度的动态平衡,从而实现强大的下游信号传导。