YAP maintains the dynamics of TDP-43 condensates and antagonizes TDP-43 pathological aggregates

IF 17.3 1区 生物学 Q1 CELL BIOLOGY
Jiaqi Zhang, Jiaojiao Hu, Ruogu Liu, Tian Zhou, Xuewei Luo, Peigang Liang, Zaichao Xie, Qinyue Zhao, Yan Chen, Dan Du, Cong Liu, Yiming Zheng, Dan Li, Bo Wang
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Abstract

Recent studies exploring the underlying pathomechanisms of amyotrophic lateral sclerosis (ALS), a fatal motor neuron disorder, have focused on biomolecular condensates. Here we reveal an unexpected function for YAP, a central component of the Hippo pathway, in regulating the dynamic behaviour of stress granules and TDP-43 condensates, a role that is independent of its transcriptional activity in the Hippo pathway. YAP directly binds to TDP-43. This interaction directly promotes the homotypic multimerization and phase separation of TDP-43 while inhibiting its hyperphosphorylation and solidification under stress conditions. Remarkably, YAP, whose messenger RNA levels are reduced in patients with ALS, is found to co-localize with pathological hyperphosphorylated TDP-43 aggregates in the brains of patients with ALS. In addition, elevation of YAP/Yorkie (a fly homologue of mammalian YAP) expression substantially reduces TDP-43 toxicity in primary neuron and transgenic fly models of ALS. Our findings highlight an unexpected role of YAP in managing ALS-associated biomolecular condensates, presenting important implications for potential ALS treatments.

Abstract Image

YAP维持TDP-43凝聚体的动力学,并拮抗TDP-43病理聚集体
肌萎缩性侧索硬化症(ALS)是一种致命的运动神经元疾病,最近的研究主要集中在生物分子凝聚体上。在这里,我们揭示了Hippo通路的核心成分YAP在调节应激颗粒和TDP-43凝聚物的动态行为方面的一个意想不到的功能,这一作用独立于其在Hippo通路中的转录活性。YAP直接与TDP-43结合。这种相互作用直接促进了TDP-43的同型多聚和相分离,同时抑制了其在应力条件下的过度磷酸化和凝固。值得注意的是,在ALS患者中信使RNA水平降低的YAP,在ALS患者的大脑中被发现与病理性高磷酸化的TDP-43聚集体共定位。此外,YAP/Yorkie(一种哺乳动物YAP的果蝇同源物)表达的升高可显著降低TDP-43在原代神经元和ALS转基因果蝇模型中的毒性。我们的研究结果突出了YAP在管理ALS相关生物分子凝聚中的意想不到的作用,为潜在的ALS治疗提供了重要的意义。
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来源期刊
Nature Cell Biology
Nature Cell Biology 生物-细胞生物学
CiteScore
28.40
自引率
0.90%
发文量
219
审稿时长
3 months
期刊介绍: Nature Cell Biology, a prestigious journal, upholds a commitment to publishing papers of the highest quality across all areas of cell biology, with a particular focus on elucidating mechanisms underlying fundamental cell biological processes. The journal's broad scope encompasses various areas of interest, including but not limited to: -Autophagy -Cancer biology -Cell adhesion and migration -Cell cycle and growth -Cell death -Chromatin and epigenetics -Cytoskeletal dynamics -Developmental biology -DNA replication and repair -Mechanisms of human disease -Mechanobiology -Membrane traffic and dynamics -Metabolism -Nuclear organization and dynamics -Organelle biology -Proteolysis and quality control -RNA biology -Signal transduction -Stem cell biology
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