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SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling

The loss of contact inhibition is a key step during carcinogenesis. The Hippo–Yes-associated protein (Hippo/YAP) pathway is an important regulator of cell growth in a cell density–dependent manner. However, how Hippo signaling senses cell density in this context remains elusive. Here, we report that...

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Autores principales: Su, Dongxue, Li, Yuxi, Zhang, Weiji, Gao, Huan, Cheng, Yao, Hou, Yongqiang, Li, Junhong, Ye, Yi, Lai, Zhangjian, Li, Zhe, Huang, Haitao, Li, Jiaxin, Li, Jinhuan, Cheng, Mengyu, Nian, Cheng, Wu, Na, Zhou, Zhien, Xing, Yunzhi, Zhao, Yu, Liu, He, Tang, Jiayu, Chen, Qinghua, Hong, Lixin, Li, Wengang, Peng, Zhihai, Zhao, Bin, Johnson, Randy L., Liu, Pingguo, Hong, Wanjin, Chen, Lanfen, Zhou, Dawang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10575737/
https://www.ncbi.nlm.nih.gov/pubmed/37843276
http://dx.doi.org/10.1172/JCI168888
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author Su, Dongxue
Li, Yuxi
Zhang, Weiji
Gao, Huan
Cheng, Yao
Hou, Yongqiang
Li, Junhong
Ye, Yi
Lai, Zhangjian
Li, Zhe
Huang, Haitao
Li, Jiaxin
Li, Jinhuan
Cheng, Mengyu
Nian, Cheng
Wu, Na
Zhou, Zhien
Xing, Yunzhi
Zhao, Yu
Liu, He
Tang, Jiayu
Chen, Qinghua
Hong, Lixin
Li, Wengang
Peng, Zhihai
Zhao, Bin
Johnson, Randy L.
Liu, Pingguo
Hong, Wanjin
Chen, Lanfen
Zhou, Dawang
author_facet Su, Dongxue
Li, Yuxi
Zhang, Weiji
Gao, Huan
Cheng, Yao
Hou, Yongqiang
Li, Junhong
Ye, Yi
Lai, Zhangjian
Li, Zhe
Huang, Haitao
Li, Jiaxin
Li, Jinhuan
Cheng, Mengyu
Nian, Cheng
Wu, Na
Zhou, Zhien
Xing, Yunzhi
Zhao, Yu
Liu, He
Tang, Jiayu
Chen, Qinghua
Hong, Lixin
Li, Wengang
Peng, Zhihai
Zhao, Bin
Johnson, Randy L.
Liu, Pingguo
Hong, Wanjin
Chen, Lanfen
Zhou, Dawang
author_sort Su, Dongxue
collection PubMed
description The loss of contact inhibition is a key step during carcinogenesis. The Hippo–Yes-associated protein (Hippo/YAP) pathway is an important regulator of cell growth in a cell density–dependent manner. However, how Hippo signaling senses cell density in this context remains elusive. Here, we report that high cell density induced the phosphorylation of spectrin α chain, nonerythrocytic 1 (SPTAN1), a plasma membrane–stabilizing protein, to recruit NUMB endocytic adaptor protein isoforms 1 and 2 (NUMB1/2), which further sequestered microtubule affinity–regulating kinases (MARKs) in the plasma membrane and rendered them inaccessible for phosphorylation and inhibition of the Hippo kinases sterile 20–like kinases MST1 and MST2 (MST1/2). WW45 interaction with MST1/2 was thereby enhanced, resulting in the activation of Hippo signaling to block YAP activity for cell contact inhibition. Importantly, low cell density led to SPTAN1 dephosphorylation and NUMB cytoplasmic location, along with MST1/2 inhibition and, consequently, YAP activation. Moreover, double KO of NUMB and WW45 in the liver led to appreciable organ enlargement and rapid tumorigenesis. Interestingly, NUMB isoforms 3 and 4, which have a truncated phosphotyrosine-binding (PTB) domain and are thus unable to interact with phosphorylated SPTAN1 and activate MST1/2, were selectively upregulated in liver cancer, which correlated with YAP activation. We have thus revealed a SPTAN1/NUMB1/2 axis that acts as a cell density sensor to restrain cell growth and oncogenesis by coupling external cell-cell contact signals to intracellular Hippo signaling.
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spelling pubmed-105757372023-10-16 SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling Su, Dongxue Li, Yuxi Zhang, Weiji Gao, Huan Cheng, Yao Hou, Yongqiang Li, Junhong Ye, Yi Lai, Zhangjian Li, Zhe Huang, Haitao Li, Jiaxin Li, Jinhuan Cheng, Mengyu Nian, Cheng Wu, Na Zhou, Zhien Xing, Yunzhi Zhao, Yu Liu, He Tang, Jiayu Chen, Qinghua Hong, Lixin Li, Wengang Peng, Zhihai Zhao, Bin Johnson, Randy L. Liu, Pingguo Hong, Wanjin Chen, Lanfen Zhou, Dawang J Clin Invest Research Article The loss of contact inhibition is a key step during carcinogenesis. The Hippo–Yes-associated protein (Hippo/YAP) pathway is an important regulator of cell growth in a cell density–dependent manner. However, how Hippo signaling senses cell density in this context remains elusive. Here, we report that high cell density induced the phosphorylation of spectrin α chain, nonerythrocytic 1 (SPTAN1), a plasma membrane–stabilizing protein, to recruit NUMB endocytic adaptor protein isoforms 1 and 2 (NUMB1/2), which further sequestered microtubule affinity–regulating kinases (MARKs) in the plasma membrane and rendered them inaccessible for phosphorylation and inhibition of the Hippo kinases sterile 20–like kinases MST1 and MST2 (MST1/2). WW45 interaction with MST1/2 was thereby enhanced, resulting in the activation of Hippo signaling to block YAP activity for cell contact inhibition. Importantly, low cell density led to SPTAN1 dephosphorylation and NUMB cytoplasmic location, along with MST1/2 inhibition and, consequently, YAP activation. Moreover, double KO of NUMB and WW45 in the liver led to appreciable organ enlargement and rapid tumorigenesis. Interestingly, NUMB isoforms 3 and 4, which have a truncated phosphotyrosine-binding (PTB) domain and are thus unable to interact with phosphorylated SPTAN1 and activate MST1/2, were selectively upregulated in liver cancer, which correlated with YAP activation. We have thus revealed a SPTAN1/NUMB1/2 axis that acts as a cell density sensor to restrain cell growth and oncogenesis by coupling external cell-cell contact signals to intracellular Hippo signaling. American Society for Clinical Investigation 2023-10-16 /pmc/articles/PMC10575737/ /pubmed/37843276 http://dx.doi.org/10.1172/JCI168888 Text en © 2023 Su et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Su, Dongxue
Li, Yuxi
Zhang, Weiji
Gao, Huan
Cheng, Yao
Hou, Yongqiang
Li, Junhong
Ye, Yi
Lai, Zhangjian
Li, Zhe
Huang, Haitao
Li, Jiaxin
Li, Jinhuan
Cheng, Mengyu
Nian, Cheng
Wu, Na
Zhou, Zhien
Xing, Yunzhi
Zhao, Yu
Liu, He
Tang, Jiayu
Chen, Qinghua
Hong, Lixin
Li, Wengang
Peng, Zhihai
Zhao, Bin
Johnson, Randy L.
Liu, Pingguo
Hong, Wanjin
Chen, Lanfen
Zhou, Dawang
SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling
title SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling
title_full SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling
title_fullStr SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling
title_full_unstemmed SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling
title_short SPTAN1/NUMB axis senses cell density to restrain cell growth and oncogenesis through Hippo signaling
title_sort sptan1/numb axis senses cell density to restrain cell growth and oncogenesis through hippo signaling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10575737/
https://www.ncbi.nlm.nih.gov/pubmed/37843276
http://dx.doi.org/10.1172/JCI168888
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