共 77 条
Single-cell transcriptomic reveals molecular diversity and developmental heterogeneity of human stem cell-derived oligodendrocyte lineage cells
被引:55
作者:
Chamling, Xitiz
[1
]
Kallman, Alyssa
[2
]
Fang, Weixiang
[3
]
Berlinicke, Cynthia A.
[1
]
Mertz, Joseph L.
[1
]
Devkota, Prajwal
[4
]
Pantoja, Itzy E. Morales
[5
]
Smith, Matthew D.
[5
]
Ji, Zhicheng
[3
]
Chang, Calvin
[6
]
Kaushik, Aniruddha
[7
]
Chen, Liben
[7
]
Whartenby, Katharine A.
[5
]
Calabresi, Peter A.
[5
,8
]
Mao, Hai-Quan
[6
,9
,10
]
Ji, Hongkai
[3
]
Wang, Tza-Huei
[6
,7
]
Zack, Donald J.
[1
,2
,8
,11
]
机构:
[1] Johns Hopkins Univ, Wilmer Eye Inst, Dept Ophthalmol, Sch Med, Baltimore, MD 21287 USA
[2] Johns Hopkins Univ, Dept Genet Med, Sch Med, Baltimore, MD 21287 USA
[3] Johns Hopkins Bloomberg Sch Publ Hlth, Dept Biostat, Baltimore, MD 21205 USA
[4] Univ Miami, Dept Comp Sci, Coral Gables, FL 33146 USA
[5] Johns Hopkins Univ, Dept Neurol, Sch Med, Baltimore, MD 21287 USA
[6] Johns Hopkins Sch Med, Dept Biomed Engn, Baltimore, MD 21205 USA
[7] Johns Hopkins Univ, Dept Mech Engn, Baltimore, MD 21218 USA
[8] Johns Hopkins Univ, Solomon H Snyder Dept Neurosci, Sch Med, Baltimore, MD 21205 USA
[9] Johns Hopkins Sch Med, Translat Tissue Engn Ctr, Baltimore, MD 21287 USA
[10] Johns Hopkins Univ, Whiting Sch Engn Baltimore, Inst NanoBioTechnol, Baltimore, MD 21218 USA
[11] Johns Hopkins Univ, Dept Mol Biol & Genet, Sch Med, Baltimore, MD 21287 USA
关键词:
PROGENITOR CELLS;
EFFICIENT GENERATION;
DIFFERENTIATION;
ASTROCYTES;
MYELIN;
BRAIN;
FATE;
ACTIVATION;
RECEPTOR;
BIOLOGY;
D O I:
10.1038/s41467-021-20892-3
中图分类号:
O [数理科学和化学];
P [天文学、地球科学];
Q [生物科学];
N [自然科学总论];
学科分类号:
07 ;
0710 ;
09 ;
摘要:
Injury and loss of oligodendrocytes can cause demyelinating diseases such as multiple sclerosis. To improve our understanding of human oligodendrocyte development, which could facilitate development of remyelination-based treatment strategies, here we describe time-course single-cell-transcriptomic analysis of developing human stem cell-derived oligodendrocyte-lineage-cells (hOLLCs). The study includes hOLLCs derived from both genome engineered embryonic stem cell (ESC) reporter cells containing an Identification-and-Purification tag driven by the endogenous PDGFR alpha promoter and from unmodified induced pluripotent (iPS) cells. Our analysis uncovers substantial transcriptional heterogeneity of PDGFR alpha -lineage hOLLCs. We discover sub-populations of human oligodendrocyte progenitor cells (hOPCs) including a potential cytokine-responsive hOPC subset, and identify candidate regulatory genes/networks that define the identity of these sub-populations. Pseudotime trajectory analysis defines developmental pathways of oligodendrocytes vs astrocytes from PDGFR alpha -expressing hOPCs and predicts differentially expressed genes between the two lineages. In addition, pathway enrichment analysis followed by pharmacological intervention of these pathways confirm that mTOR and cholesterol biosynthesis signaling pathways are involved in maturation of oligodendrocytes from hOPCs. Brain myelinating oligodendrocytes are rare and difficult to isolate, which has limited data on their development. Here the authors develop a reporter for scalable purification of human pluripotent stem cell derived oligodendrocyte lineage cells, and use this to map differentiation using single cell RNA-sequencing,
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