Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axis

The crosstalk between the BM microenvironment (niche) and hematopoietic stem cells (HSCs) is critical for HSC regeneration. Here, we show that in mice, deletion of the Fanconi anemia (FA) genes Fanca and Fancc dampened HSC regeneration through direct effects on HSCs and indirect effects on BM niche...

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Main Authors: Qiqi Lin, Limei Wu, Srinivas Chatla, Fabliha A. Chowdhury, Neha Atale, Jonathan Joseph, Wei Du
Format: Article
Language:English
Published: American Society for Clinical Investigation 2022-06-01
Series:The Journal of Clinical Investigation
Subjects:
Online Access:https://doi.org/10.1172/JCI155914
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author Qiqi Lin
Limei Wu
Srinivas Chatla
Fabliha A. Chowdhury
Neha Atale
Jonathan Joseph
Wei Du
author_facet Qiqi Lin
Limei Wu
Srinivas Chatla
Fabliha A. Chowdhury
Neha Atale
Jonathan Joseph
Wei Du
author_sort Qiqi Lin
collection DOAJ
description The crosstalk between the BM microenvironment (niche) and hematopoietic stem cells (HSCs) is critical for HSC regeneration. Here, we show that in mice, deletion of the Fanconi anemia (FA) genes Fanca and Fancc dampened HSC regeneration through direct effects on HSCs and indirect effects on BM niche cells. FA HSCs showed persistent upregulation of the Wnt target Prox1 in response to total body irradiation (TBI). Accordingly, lineage-specific deletion of Prox1 improved long-term repopulation of the irradiated FA HSCs. Forced expression of Prox1 in WT HSCs mimicked the defective repopulation phenotype of FA HSCs. WT mice but not FA mice showed significant induction by TBI of BM stromal Wnt5a protein. Mechanistically, FA proteins regulated stromal Wnt5a expression, possibly through modulating the Wnt5a transcription activator Pax2. Wnt5a treatment of irradiated FA mice enhanced HSC regeneration. Conversely, Wnt5a neutralization inhibited HSC regeneration after TBI. Wnt5a secreted by LepR+CXCL12+ BM stromal cells inhibited β-catenin accumulation, thereby repressing Prox1 transcription in irradiated HSCs. The detrimental effect of deregulated Wnt5a/Prox1 signaling on HSC regeneration was also observed in patients with FA and aged mice. Irradiation induced upregulation of Prox1 in the HSCs of aged mice, and deletion of Prox1 in aged HSCs improved HSC regeneration. Treatment of aged mice with Wnt5a enhanced hematopoietic repopulation. Collectively, these findings identified the paracrine Wnt5a/Prox1 signaling axis as a regulator of HSC regeneration under conditions of injury and aging.
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spelling doaj.art-83950534593345a58e32f79ea910a4372022-12-22T00:24:52ZengAmerican Society for Clinical InvestigationThe Journal of Clinical Investigation1558-82382022-06-0113212Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axisQiqi LinLimei WuSrinivas ChatlaFabliha A. ChowdhuryNeha AtaleJonathan JosephWei DuThe crosstalk between the BM microenvironment (niche) and hematopoietic stem cells (HSCs) is critical for HSC regeneration. Here, we show that in mice, deletion of the Fanconi anemia (FA) genes Fanca and Fancc dampened HSC regeneration through direct effects on HSCs and indirect effects on BM niche cells. FA HSCs showed persistent upregulation of the Wnt target Prox1 in response to total body irradiation (TBI). Accordingly, lineage-specific deletion of Prox1 improved long-term repopulation of the irradiated FA HSCs. Forced expression of Prox1 in WT HSCs mimicked the defective repopulation phenotype of FA HSCs. WT mice but not FA mice showed significant induction by TBI of BM stromal Wnt5a protein. Mechanistically, FA proteins regulated stromal Wnt5a expression, possibly through modulating the Wnt5a transcription activator Pax2. Wnt5a treatment of irradiated FA mice enhanced HSC regeneration. Conversely, Wnt5a neutralization inhibited HSC regeneration after TBI. Wnt5a secreted by LepR+CXCL12+ BM stromal cells inhibited β-catenin accumulation, thereby repressing Prox1 transcription in irradiated HSCs. The detrimental effect of deregulated Wnt5a/Prox1 signaling on HSC regeneration was also observed in patients with FA and aged mice. Irradiation induced upregulation of Prox1 in the HSCs of aged mice, and deletion of Prox1 in aged HSCs improved HSC regeneration. Treatment of aged mice with Wnt5a enhanced hematopoietic repopulation. Collectively, these findings identified the paracrine Wnt5a/Prox1 signaling axis as a regulator of HSC regeneration under conditions of injury and aging.https://doi.org/10.1172/JCI155914Cell biologyHematology
spellingShingle Qiqi Lin
Limei Wu
Srinivas Chatla
Fabliha A. Chowdhury
Neha Atale
Jonathan Joseph
Wei Du
Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axis
The Journal of Clinical Investigation
Cell biology
Hematology
title Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axis
title_full Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axis
title_fullStr Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axis
title_full_unstemmed Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axis
title_short Hematopoietic stem cell regeneration through paracrine regulation of the Wnt5a/Prox1 signaling axis
title_sort hematopoietic stem cell regeneration through paracrine regulation of the wnt5a prox1 signaling axis
topic Cell biology
Hematology
url https://doi.org/10.1172/JCI155914
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