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miR-124a Is Important for Migratory Cell Fate Transition During Gastrulation of Human Embryonic Stem Cellsopen access

Authors
Lee, Man RyulKim, Jong SooKim, Kye-Seong
Issue Date
Sep-2010
Publisher
WILEY-BLACKWELL
Keywords
Human embryonic stemcells; microRNA; Cell migration; SLUG; IQGAP1
Citation
STEM CELLS, v.28, no.9, pp.1550 - 1559
Indexed
SCIE
SCOPUS
Journal Title
STEM CELLS
Volume
28
Number
9
Start Page
1550
End Page
1559
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/174150
DOI
10.1002/stem.490
ISSN
1066-5099
Abstract
Precise control of gene expression is of paramount importance for proper embryonic development. Although a number of microRNAs (miRNAs) has been implicated in fine-tuning mRNA translation during development, their exact roles for gastrulation, particularly in connection with functional targets, have yet to be clarified, with regard to stage-specific cell migration to form three embryonic germ layers. We found that miR-124a is expressed in human embryonic stem cells (hESC), but is gradually downregulated during embryoid body (EB) formation in vitro. We also provide evidence that SLUG and IQGAP1, which modulates rearrangement of the migratory cytoskeleton, are specific targets for miR-124a during EB forma-tion. Furthermore, we show that the beginning of cell migration, a hallmark event in gastrulation, is tightly coupled with downregulation of miR-124a during EB formation and induction of SLUG and IQGAP1. Overexpressed miR-124a in hESC reduced expression of SLUG and IQGAP1 and blocked migratory cell behavior in EB. An expression level of MIXL1, associated with gastulation process, was also inversely correlated with expression of miR-124a. Taken together, our results strongly suggest that miR-124a may play an active role in inhibiting hESCs from differentiation into EB by downregulating expression of SLUG and IQGAP1, thereby maintaining stemness.
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GRADUATE SCHOOL OF BIOMEDICAL SCIENCE AND ENGINEERING (DEPARTMENT OF BIOMEDICAL SCIENCE)
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