Cargando…

RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis

Therapeutics targeting osteoclasts are commonly used treatments for bone metastasis; however, whether and how osteoclasts regulate premetastatic niche and bone tropism are largely unknown. In this study, we report that osteoclast precursors (OPs) can function as a premetastatic niche component that...

Descripción completa

Detalles Bibliográficos
Autores principales: Yue, Zhiying, Niu, Xin, Yuan, Zengjin, Qin, Qin, Jiang, Wenhao, He, Liang, Gao, Jingduo, Ding, Yi, Liu, Yanxi, Xu, Ziwei, Li, Zhenxi, Yang, Zhengfeng, Li, Rong, Xue, Xiwen, Gao, Yankun, Yue, Fei, Zhang, Xiang H.-F., Hu, Guohong, Wang, Yi, Li, Yi, Chen, Geng, Siwko, Stefan, Gartland, Alison, Wang, Ning, Xiao, Jianru, Liu, Mingyao, Luo, Jian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8759794/
https://www.ncbi.nlm.nih.gov/pubmed/34847079
http://dx.doi.org/10.1172/JCI144579
_version_ 1784633179177484288
author Yue, Zhiying
Niu, Xin
Yuan, Zengjin
Qin, Qin
Jiang, Wenhao
He, Liang
Gao, Jingduo
Ding, Yi
Liu, Yanxi
Xu, Ziwei
Li, Zhenxi
Yang, Zhengfeng
Li, Rong
Xue, Xiwen
Gao, Yankun
Yue, Fei
Zhang, Xiang H.-F.
Hu, Guohong
Wang, Yi
Li, Yi
Chen, Geng
Siwko, Stefan
Gartland, Alison
Wang, Ning
Xiao, Jianru
Liu, Mingyao
Luo, Jian
author_facet Yue, Zhiying
Niu, Xin
Yuan, Zengjin
Qin, Qin
Jiang, Wenhao
He, Liang
Gao, Jingduo
Ding, Yi
Liu, Yanxi
Xu, Ziwei
Li, Zhenxi
Yang, Zhengfeng
Li, Rong
Xue, Xiwen
Gao, Yankun
Yue, Fei
Zhang, Xiang H.-F.
Hu, Guohong
Wang, Yi
Li, Yi
Chen, Geng
Siwko, Stefan
Gartland, Alison
Wang, Ning
Xiao, Jianru
Liu, Mingyao
Luo, Jian
author_sort Yue, Zhiying
collection PubMed
description Therapeutics targeting osteoclasts are commonly used treatments for bone metastasis; however, whether and how osteoclasts regulate premetastatic niche and bone tropism are largely unknown. In this study, we report that osteoclast precursors (OPs) can function as a premetastatic niche component that facilitates breast cancer (BCa) bone metastasis at early stages. At the molecular level, unbiased GPCR ligand/agonist screening in BCa cells suggested that R-spondin 2 (RSPO2) and RANKL, through interaction with their receptor LGR4, promoted osteoclastic premetastatic niche formation and enhanced BCa bone metastasis. This was achieved by RSPO2/RANKL-LGR4 signal modulating the WNT inhibitor DKK1 through Gα(q) and β-catenin signaling. DKK1 directly facilitated OP recruitment through suppression of its receptor LDL receptor–related protein 5 (LRP5) but not LRP6, upregulating Rnasek expression via inhibition of canonical WNT signaling. In clinical samples, RSPO2, LGR4, and DKK1 expression showed a positive correlation with BCa bone metastasis. Furthermore, soluble LGR4 extracellular domain (ECD) protein, acting as a decoy receptor for RSPO2 and RANKL, significantly alleviated bone metastasis and osteolytic lesions in a mouse bone metastasis model. These findings provide unique insights into the functional role of OPs as key components of the premetastatic niche for BCa bone metastasis and identify RSPO2/RANKL-LGR4 signaling as a promising target for inhibiting BCa bone metastasis.
format Online
Article
Text
id pubmed-8759794
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Clinical Investigation
record_format MEDLINE/PubMed
spelling pubmed-87597942022-01-19 RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis Yue, Zhiying Niu, Xin Yuan, Zengjin Qin, Qin Jiang, Wenhao He, Liang Gao, Jingduo Ding, Yi Liu, Yanxi Xu, Ziwei Li, Zhenxi Yang, Zhengfeng Li, Rong Xue, Xiwen Gao, Yankun Yue, Fei Zhang, Xiang H.-F. Hu, Guohong Wang, Yi Li, Yi Chen, Geng Siwko, Stefan Gartland, Alison Wang, Ning Xiao, Jianru Liu, Mingyao Luo, Jian J Clin Invest Research Article Therapeutics targeting osteoclasts are commonly used treatments for bone metastasis; however, whether and how osteoclasts regulate premetastatic niche and bone tropism are largely unknown. In this study, we report that osteoclast precursors (OPs) can function as a premetastatic niche component that facilitates breast cancer (BCa) bone metastasis at early stages. At the molecular level, unbiased GPCR ligand/agonist screening in BCa cells suggested that R-spondin 2 (RSPO2) and RANKL, through interaction with their receptor LGR4, promoted osteoclastic premetastatic niche formation and enhanced BCa bone metastasis. This was achieved by RSPO2/RANKL-LGR4 signal modulating the WNT inhibitor DKK1 through Gα(q) and β-catenin signaling. DKK1 directly facilitated OP recruitment through suppression of its receptor LDL receptor–related protein 5 (LRP5) but not LRP6, upregulating Rnasek expression via inhibition of canonical WNT signaling. In clinical samples, RSPO2, LGR4, and DKK1 expression showed a positive correlation with BCa bone metastasis. Furthermore, soluble LGR4 extracellular domain (ECD) protein, acting as a decoy receptor for RSPO2 and RANKL, significantly alleviated bone metastasis and osteolytic lesions in a mouse bone metastasis model. These findings provide unique insights into the functional role of OPs as key components of the premetastatic niche for BCa bone metastasis and identify RSPO2/RANKL-LGR4 signaling as a promising target for inhibiting BCa bone metastasis. American Society for Clinical Investigation 2022-01-18 2022-01-18 /pmc/articles/PMC8759794/ /pubmed/34847079 http://dx.doi.org/10.1172/JCI144579 Text en © 2022 Yue 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
Yue, Zhiying
Niu, Xin
Yuan, Zengjin
Qin, Qin
Jiang, Wenhao
He, Liang
Gao, Jingduo
Ding, Yi
Liu, Yanxi
Xu, Ziwei
Li, Zhenxi
Yang, Zhengfeng
Li, Rong
Xue, Xiwen
Gao, Yankun
Yue, Fei
Zhang, Xiang H.-F.
Hu, Guohong
Wang, Yi
Li, Yi
Chen, Geng
Siwko, Stefan
Gartland, Alison
Wang, Ning
Xiao, Jianru
Liu, Mingyao
Luo, Jian
RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis
title RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis
title_full RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis
title_fullStr RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis
title_full_unstemmed RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis
title_short RSPO2 and RANKL signal through LGR4 to regulate osteoclastic premetastatic niche formation and bone metastasis
title_sort rspo2 and rankl signal through lgr4 to regulate osteoclastic premetastatic niche formation and bone metastasis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8759794/
https://www.ncbi.nlm.nih.gov/pubmed/34847079
http://dx.doi.org/10.1172/JCI144579
work_keys_str_mv AT yuezhiying rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT niuxin rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT yuanzengjin rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT qinqin rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT jiangwenhao rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT heliang rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT gaojingduo rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT dingyi rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT liuyanxi rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT xuziwei rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT lizhenxi rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT yangzhengfeng rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT lirong rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT xuexiwen rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT gaoyankun rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT yuefei rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT zhangxianghf rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT huguohong rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT wangyi rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT liyi rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT chengeng rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT siwkostefan rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT gartlandalison rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT wangning rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT xiaojianru rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT liumingyao rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis
AT luojian rspo2andranklsignalthroughlgr4toregulateosteoclasticpremetastaticnicheformationandbonemetastasis