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Hypoxic priming of mESCs accelerates vascular-lineage differentiation through HIF1-mediated inverse regulation of Oct4 and VEGF

  • Sae Won Lee
    ,
  • Han Kyul Jeong
    ,
  • Ji Young Lee
    ,
  • Jimin Yang
    ,
  • Eun Ju Lee
    ,
  • Su Yeon Kim
*Corresponding author for this work
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Abstract

Hypoxic microenvironment plays an important role in determining stem cell fates. However, it is controversial to which direction between self-renewal and differentiation the hypoxia drives the stem cells. Here, we investigated whether a short exposure to hypoxia (termed 'hypoxic-priming') efficiently directed and promoted mouse embryonic stem cells (mESCs) to differentiate into vascular-lineage. During spontaneous differentiation of embryoid bodies (EBs), hypoxic region was observed inside EB spheroids even under normoxic conditions. Indeed, hypoxia-primed EBs more efficiently differentiated into cells of vascular-lineage, than normoxic EBs did. We found that hypoxia suppressed Oct4 expression via direct binding of HIF-1 to reverse hypoxia-responsive elements (rHREs) in the Oct4 promoter. Furthermore, vascular endothelial growth factor (VEGF) was highly upregulated in hypoxia-primed EBs, which differentiated towards endothelial cells in the absence of exogenous VEGF. Interestingly, this differentiation was abolished by the HIF-1 or VEGF blocking. In vivo transplantation of hypoxia-primed EBs into mice ischemic limb elicited enhanced vessel differentiation. Collectively, our findings identify that hypoxia enhanced ESC differentiation by HIF-1-mediated inverse regulation of Oct4 and VEGF, which is a novel pathway to promote vascular-lineage differentiation.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 924-938 (15 pages)

Journal (Volume, Issue Number)

EMBO Molecular Medicine (Volume 4, Issue 9)

Publication milestones

  • Published - 09/2012

Publication status

Published - 09/2012

ISSN

1757-4676

Publication IDs

  • Scopus: 84865798238
  • PubMed: 22821840

Publication metrics

Metrics

SciVal
citations
45
Scopus
citations
SciVal
FWCI
1.31
SciVal
Author count
14
SciVal
Paper percentile
91
SciVal
Top percentile
10
Fractional count
1
Fractional count
0.07
Fractional count
13
Fractional count
0.93
Fractional count
1
Fractional count
1

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Captures
74
Citation count
58