作者
Yangqing Shao, Xin Shu, Yi Lu, Wenxuan Zhu, Ran Li, Huanyi Fu, Chengyu Li, Wei Sun, Zhuo Li, Yitong Zhang, Xiaolei Cao, Xifu Ye, Emmanuel Ajiboye, Bin Zhao, Long Zhang, Haifan Wu, Xin-Hua Feng, Bing Yang, Huasong Lu
发表日期
2024/1
期刊
Nature Cell Biology
卷号
26
期号
1
页码范围
86-99
出版商
Nature Publishing Group UK
简介
The Hippo pathway has important roles in organ development, tissue homeostasis and tumour growth. Its downstream effector TAZ is a transcriptional coactivator that promotes target gene expression through the formation of biomolecular condensates. However, the mechanisms that regulate the biophysical properties of TAZ condensates to enable Hippo signalling are not well understood. Here using chemical crosslinking combined with an unbiased proteomics approach, we show that FUS associates with TAZ condensates and exerts a chaperone-like effect to maintain their proper liquidity and robust transcriptional activity. Mechanistically, the low complexity sequence domain of FUS targets the coiled-coil domain of TAZ in a phosphorylation-regulated manner, which ensures the liquidity and dynamicity of TAZ condensates. In cells lacking FUS, TAZ condensates transition into gel-like or solid-like assembles with …
学术搜索中的文章
Y Shao, X Shu, Y Lu, W Zhu, R Li, H Fu, C Li, W Sun… - Nature Cell Biology, 2024