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A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis

Leptin Receptor(+) (LepR(+)) stromal cells in adult bone marrow are a critical source of growth factors, including Stem Cell Factor (SCF), for the maintenance of hematopoietic stem cells (HSCs) and early restricted progenitors(1–6). LepR(+) cells are heterogeneous, including skeletal stem cells, ost...

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Autores principales: Shen, Bo, Tasdogan, Alpaslan, Ubellacker, Jessalyn M., Zhang, Jingzhu, Nosyreva, Elena D, Du, Liming, Murphy, Malea M., Hu, Shuiqing, Yi, Yating, Kara, Nergis, Liu, Xin, Guela, Shay, Jia, Yuemeng, Ramesh, Vijayashree, Embree, Claire, Mitchell, Evann C., Zhao, Yunduo C., Ju, Lining A., Hu, Zhao, Crane, Genevieve M., Zhao, Zhiyu, Syeda, Ruhma, Morrison, Sean J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7979521/
https://www.ncbi.nlm.nih.gov/pubmed/33627868
http://dx.doi.org/10.1038/s41586-021-03298-5
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author Shen, Bo
Tasdogan, Alpaslan
Ubellacker, Jessalyn M.
Zhang, Jingzhu
Nosyreva, Elena D
Du, Liming
Murphy, Malea M.
Hu, Shuiqing
Yi, Yating
Kara, Nergis
Liu, Xin
Guela, Shay
Jia, Yuemeng
Ramesh, Vijayashree
Embree, Claire
Mitchell, Evann C.
Zhao, Yunduo C.
Ju, Lining A.
Hu, Zhao
Crane, Genevieve M.
Zhao, Zhiyu
Syeda, Ruhma
Morrison, Sean J.
author_facet Shen, Bo
Tasdogan, Alpaslan
Ubellacker, Jessalyn M.
Zhang, Jingzhu
Nosyreva, Elena D
Du, Liming
Murphy, Malea M.
Hu, Shuiqing
Yi, Yating
Kara, Nergis
Liu, Xin
Guela, Shay
Jia, Yuemeng
Ramesh, Vijayashree
Embree, Claire
Mitchell, Evann C.
Zhao, Yunduo C.
Ju, Lining A.
Hu, Zhao
Crane, Genevieve M.
Zhao, Zhiyu
Syeda, Ruhma
Morrison, Sean J.
author_sort Shen, Bo
collection PubMed
description Leptin Receptor(+) (LepR(+)) stromal cells in adult bone marrow are a critical source of growth factors, including Stem Cell Factor (SCF), for the maintenance of hematopoietic stem cells (HSCs) and early restricted progenitors(1–6). LepR(+) cells are heterogeneous, including skeletal stem cells, osteogenic, and adipogenic progenitors(7–12), though few markers have been available to distinguish these subsets or to compare their functions. Here we show expression of an osteogenic growth factor, Osteolectin(13,14), distinguishes peri-arteriolar LepR(+) cells poised to undergo osteogenesis from peri-sinusoidal LepR(+) cells poised to undergo adipogenesis (but retaining osteogenic potential). Peri-arteriolar LepR(+)Osteolectin(+) cells are rapidly dividing, short-lived, osteogenic progenitors that increase in number after fracture and are depleted during aging. Deletion of Scf from adult Osteolectin(+) cells did not affect the maintenance of HSCs or most restricted progenitors but depleted common lymphoid progenitors (CLPs), impairing lymphopoiesis, bacterial clearance, and survival after acute bacterial infection. Peri-arteriolar Osteolectin(+) cell maintenance required mechanical stimulation. Voluntary running increased, while hindlimb unloading decreased, the frequencies of peri-arteriolar Osteolectin(+) cells and CLPs. Deletion of the mechanosensitive ion channel, Piezo1, from Osteolectin(+) cells depleted Osteolectin(+) cells and CLPs. A peri-arteriolar niche for osteogenesis and lymphopoiesis in bone marrow is maintained by mechanical stimulation and depleted during aging.
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spelling pubmed-79795212021-08-24 A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis Shen, Bo Tasdogan, Alpaslan Ubellacker, Jessalyn M. Zhang, Jingzhu Nosyreva, Elena D Du, Liming Murphy, Malea M. Hu, Shuiqing Yi, Yating Kara, Nergis Liu, Xin Guela, Shay Jia, Yuemeng Ramesh, Vijayashree Embree, Claire Mitchell, Evann C. Zhao, Yunduo C. Ju, Lining A. Hu, Zhao Crane, Genevieve M. Zhao, Zhiyu Syeda, Ruhma Morrison, Sean J. Nature Article Leptin Receptor(+) (LepR(+)) stromal cells in adult bone marrow are a critical source of growth factors, including Stem Cell Factor (SCF), for the maintenance of hematopoietic stem cells (HSCs) and early restricted progenitors(1–6). LepR(+) cells are heterogeneous, including skeletal stem cells, osteogenic, and adipogenic progenitors(7–12), though few markers have been available to distinguish these subsets or to compare their functions. Here we show expression of an osteogenic growth factor, Osteolectin(13,14), distinguishes peri-arteriolar LepR(+) cells poised to undergo osteogenesis from peri-sinusoidal LepR(+) cells poised to undergo adipogenesis (but retaining osteogenic potential). Peri-arteriolar LepR(+)Osteolectin(+) cells are rapidly dividing, short-lived, osteogenic progenitors that increase in number after fracture and are depleted during aging. Deletion of Scf from adult Osteolectin(+) cells did not affect the maintenance of HSCs or most restricted progenitors but depleted common lymphoid progenitors (CLPs), impairing lymphopoiesis, bacterial clearance, and survival after acute bacterial infection. Peri-arteriolar Osteolectin(+) cell maintenance required mechanical stimulation. Voluntary running increased, while hindlimb unloading decreased, the frequencies of peri-arteriolar Osteolectin(+) cells and CLPs. Deletion of the mechanosensitive ion channel, Piezo1, from Osteolectin(+) cells depleted Osteolectin(+) cells and CLPs. A peri-arteriolar niche for osteogenesis and lymphopoiesis in bone marrow is maintained by mechanical stimulation and depleted during aging. 2021-02-24 2021-03 /pmc/articles/PMC7979521/ /pubmed/33627868 http://dx.doi.org/10.1038/s41586-021-03298-5 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Shen, Bo
Tasdogan, Alpaslan
Ubellacker, Jessalyn M.
Zhang, Jingzhu
Nosyreva, Elena D
Du, Liming
Murphy, Malea M.
Hu, Shuiqing
Yi, Yating
Kara, Nergis
Liu, Xin
Guela, Shay
Jia, Yuemeng
Ramesh, Vijayashree
Embree, Claire
Mitchell, Evann C.
Zhao, Yunduo C.
Ju, Lining A.
Hu, Zhao
Crane, Genevieve M.
Zhao, Zhiyu
Syeda, Ruhma
Morrison, Sean J.
A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis
title A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis
title_full A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis
title_fullStr A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis
title_full_unstemmed A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis
title_short A mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis
title_sort mechanosensitive peri-arteriolar niche for osteogenesis and lymphopoiesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7979521/
https://www.ncbi.nlm.nih.gov/pubmed/33627868
http://dx.doi.org/10.1038/s41586-021-03298-5
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