Wang Qian, Tao Chenqi, Wu Yihua, Anderson Karen E, Hannan Abdul, Lin Chyuan-Sheng, Hawkins Phillip, Stephens Len, Zhang Xin
bioRxiv. 2024 Jul 2:2024.06.28.601066. doi: 10.1101/2024.06.28.601066.
Although the regulation of branching morphogenesis by spatially distributed cues is well established, the role of intracellular signaling in determining the branching pattern remains poorly understood. In this study, we investigated the regulation and function of phospholipase C gamma (PLCγ) in Fibroblast Growth Factor (FGF) signaling in lacrimal gland development. We showed that deletion of in the lacrimal gland epithelium leads to ectopic branching and acinar hyperplasia, which was phenocopied by either mutating the PLCγ1 binding site on Fgfr2 or disabling any of its SH2 domains. inactivation did not change the level of Fgfr2 or affect MAPK signaling, but instead led to sustained AKT phosphorylation due to increased PIP3 production. Consistent with this, mutant phenotype can be reproduced by elevation of PI3K signaling in knockout and attenuated by blocking AKT signaling. This study demonstrated that PLCγ modulates PI3K signaling by shifting phosphoinositide metabolism, revealing an important role of signaling dynamics in conjunction with spatial cues in shaping branching morphogenesis.
尽管空间分布线索对分支形态发生的调控已得到充分证实,但细胞内信号传导在决定分支模式中的作用仍知之甚少。在本研究中,我们研究了磷脂酶Cγ(PLCγ)在泪腺发育过程中对成纤维细胞生长因子(FGF)信号传导的调控及其功能。我们发现,泪腺上皮中PLCγ的缺失会导致异位分支和腺泡增生,通过突变Fgfr2上的PLCγ1结合位点或使其任何一个SH2结构域失活均可模拟该表型。PLCγ失活不会改变Fgfr2的水平,也不会影响MAPK信号传导,而是由于PIP3生成增加导致AKT持续磷酸化。与此一致的是,在PLCγ敲除小鼠中通过提高PI3K信号传导可重现PLCγ突变体表型,而通过阻断AKT信号传导可使其减弱。本研究表明,PLCγ通过改变磷酸肌醇代谢来调节PI3K信号传导,揭示了信号动力学与空间线索在塑造分支形态发生中的重要作用。