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Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment

Bone marrow mesenchymal lineage cells are a heterogeneous cell population involved in bone homeostasis and diseases such as osteoporosis. While it is long postulated that they originate from mesenchymal stem cells, the true identity of progenitors and their in vivo bifurcated differentiation routes...

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Autores principales: Zhong, Leilei, Yao, Lutian, Tower, Robert J, Wei, Yulong, Miao, Zhen, Park, Jihwan, Shrestha, Rojesh, Wang, Luqiang, Yu, Wei, Holdreith, Nicholas, Huang, Xiaobin, Zhang, Yejia, Tong, Wei, Gong, Yanqing, Ahn, Jaimo, Susztak, Katalin, Dyment, Nathanial, Li, Mingyao, Long, Fanxin, Chen, Chider, Seale, Patrick, Qin, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7220380/
https://www.ncbi.nlm.nih.gov/pubmed/32286228
http://dx.doi.org/10.7554/eLife.54695
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author Zhong, Leilei
Yao, Lutian
Tower, Robert J
Wei, Yulong
Miao, Zhen
Park, Jihwan
Shrestha, Rojesh
Wang, Luqiang
Yu, Wei
Holdreith, Nicholas
Huang, Xiaobin
Zhang, Yejia
Tong, Wei
Gong, Yanqing
Ahn, Jaimo
Susztak, Katalin
Dyment, Nathanial
Li, Mingyao
Long, Fanxin
Chen, Chider
Seale, Patrick
Qin, Ling
author_facet Zhong, Leilei
Yao, Lutian
Tower, Robert J
Wei, Yulong
Miao, Zhen
Park, Jihwan
Shrestha, Rojesh
Wang, Luqiang
Yu, Wei
Holdreith, Nicholas
Huang, Xiaobin
Zhang, Yejia
Tong, Wei
Gong, Yanqing
Ahn, Jaimo
Susztak, Katalin
Dyment, Nathanial
Li, Mingyao
Long, Fanxin
Chen, Chider
Seale, Patrick
Qin, Ling
author_sort Zhong, Leilei
collection PubMed
description Bone marrow mesenchymal lineage cells are a heterogeneous cell population involved in bone homeostasis and diseases such as osteoporosis. While it is long postulated that they originate from mesenchymal stem cells, the true identity of progenitors and their in vivo bifurcated differentiation routes into osteoblasts and adipocytes remain poorly understood. Here, by employing large scale single cell transcriptome analysis, we computationally defined mesenchymal progenitors at different stages and delineated their bi-lineage differentiation paths in young, adult and aging mice. One identified subpopulation is a unique cell type that expresses adipocyte markers but contains no lipid droplets. As non-proliferative precursors for adipocytes, they exist abundantly as pericytes and stromal cells that form a ubiquitous 3D network inside the marrow cavity. Functionally they play critical roles in maintaining marrow vasculature and suppressing bone formation. Therefore, we name them marrow adipogenic lineage precursors (MALPs) and conclude that they are a newly identified component of marrow adipose tissue.
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spelling pubmed-72203802020-05-15 Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment Zhong, Leilei Yao, Lutian Tower, Robert J Wei, Yulong Miao, Zhen Park, Jihwan Shrestha, Rojesh Wang, Luqiang Yu, Wei Holdreith, Nicholas Huang, Xiaobin Zhang, Yejia Tong, Wei Gong, Yanqing Ahn, Jaimo Susztak, Katalin Dyment, Nathanial Li, Mingyao Long, Fanxin Chen, Chider Seale, Patrick Qin, Ling eLife Cell Biology Bone marrow mesenchymal lineage cells are a heterogeneous cell population involved in bone homeostasis and diseases such as osteoporosis. While it is long postulated that they originate from mesenchymal stem cells, the true identity of progenitors and their in vivo bifurcated differentiation routes into osteoblasts and adipocytes remain poorly understood. Here, by employing large scale single cell transcriptome analysis, we computationally defined mesenchymal progenitors at different stages and delineated their bi-lineage differentiation paths in young, adult and aging mice. One identified subpopulation is a unique cell type that expresses adipocyte markers but contains no lipid droplets. As non-proliferative precursors for adipocytes, they exist abundantly as pericytes and stromal cells that form a ubiquitous 3D network inside the marrow cavity. Functionally they play critical roles in maintaining marrow vasculature and suppressing bone formation. Therefore, we name them marrow adipogenic lineage precursors (MALPs) and conclude that they are a newly identified component of marrow adipose tissue. eLife Sciences Publications, Ltd 2020-04-14 /pmc/articles/PMC7220380/ /pubmed/32286228 http://dx.doi.org/10.7554/eLife.54695 Text en © 2020, Zhong et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Zhong, Leilei
Yao, Lutian
Tower, Robert J
Wei, Yulong
Miao, Zhen
Park, Jihwan
Shrestha, Rojesh
Wang, Luqiang
Yu, Wei
Holdreith, Nicholas
Huang, Xiaobin
Zhang, Yejia
Tong, Wei
Gong, Yanqing
Ahn, Jaimo
Susztak, Katalin
Dyment, Nathanial
Li, Mingyao
Long, Fanxin
Chen, Chider
Seale, Patrick
Qin, Ling
Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment
title Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment
title_full Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment
title_fullStr Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment
title_full_unstemmed Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment
title_short Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment
title_sort single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7220380/
https://www.ncbi.nlm.nih.gov/pubmed/32286228
http://dx.doi.org/10.7554/eLife.54695
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