Grove Matthew, Kim Hyukmin, Pang Shuhuan, Amaya José Paz, Hu Guoqing, Zhou Jiliang, Lemay Michel, Son Young-Jin
bioRxiv. 2024 Jan 17:2023.02.27.530298. doi: 10.1101/2023.02.27.530298.
Previously we showed that the hippo pathway transcriptional effectors, YAP and TAZ, are essential for Schwann cells (SCs) to develop, maintain and regenerate myelin (Grove et al., 2017; Grove, Lee, Zhao, & Son, 2020). Although TEAD1 has been implicated as a partner transcription factor, the mechanisms by which it mediates YAP/TAZ regulation of SC myelination are unclear. Here, using conditional and inducible knockout mice, we show that TEAD1 is crucial for SCs to develop and regenerate myelin. It promotes myelination by both positively and negatively regulating SC proliferation, enabling Krox20/Egr2 to upregulate myelin proteins, and upregulating the cholesterol biosynthetic enzymes FDPS and IDI1. We also show stage-dependent redundancy of TEAD1 and that non-myelinating SCs have a unique requirement for TEAD1 to enwrap nociceptive axons in Remak bundles. Our findings establish TEAD1 as a major partner of YAP/TAZ in developmental myelination and functional nerve regeneration and as a novel transcription factor regulating Remak bundle integrity.
此前我们发现,河马通路转录效应因子YAP和TAZ对雪旺细胞(SCs)发育、维持和再生髓鞘至关重要(Grove等人,2017年;Grove、Lee、Zhao和Son,2020年)。尽管TEAD1被认为是一种协同转录因子,但其介导YAP/TAZ对SCs髓鞘形成调控的机制尚不清楚。在此,我们利用条件性和诱导性基因敲除小鼠,证明TEAD1对SCs发育和再生髓鞘至关重要。它通过正向和负向调节SCs增殖来促进髓鞘形成,使Krox20/Egr2上调髓鞘蛋白,并上调胆固醇生物合成酶FDPS和IDI1。我们还展示了TEAD1的阶段依赖性冗余,并且无髓鞘SCs对TEAD1有独特需求,以便在Remak束中包裹伤害性轴突。我们的研究结果确立了TEAD1作为YAP/TAZ在发育性髓鞘形成和功能性神经再生中的主要协同因子,以及作为调节Remak束完整性的新型转录因子的地位。