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PMID: 17761519 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Self-renewal of human embryonic stem cells requires insulin-like growth factor-1 receptor and ERBB2 receptor signaling.

Blood ·Vol. 110 ·No. 12 ·2007-12-01 ·Pages 4111-9

Wang L, Schulz TC, Sherrer ES, Dauphin DS, Shin S, Nelson AM, Ware CB, Zhan M, Song CZ, Chen X, Brimble SN, McLean A, Galeano MJ, Uhl EW, D'Amour KA, Chesnut JD, Rao MS, Blau CA, Robins AJ

Abstract

Despite progress in developing defined conditions for human embryonic stem cell (hESC) cultures, little is known about the cell-surface receptors that are activated under conditions supportive of hESC self-renewal. A simultaneous interrogation of 42 receptor tyrosine kinases (RTKs) in hESCs following stimulation with mouse embryonic fibroblast (MEF) conditioned medium (CM) revealed rapid and prominent tyrosine phosphorylation of insulin receptor (IR) and insulin-like growth factor-1 receptor (IGF1R); less prominent tyrosine phosphorylation of epidermal growth factor receptor (EGFR) family members, including ERBB2 and ERBB3; and trace phosphorylation of fibroblast growth factor receptors. Intense IGF1R and IR phosphorylation occurred in the absence of MEF conditioning (NCM) and was attributable to high concentrations of insulin in the proprietary KnockOut Serum Replacer (KSR). Inhibition of IGF1R using a blocking antibody or lentivirus-delivered shRNA reduced hESC self-renewal and promoted differentiation, while disruption of ERBB2 signaling with the selective inhibitor AG825 severely inhibited hESC proliferation and promoted apoptosis. A simple defined medium containing an IGF1 analog, heregulin-1beta (a ligand for ERBB2/ERBB3), fibroblast growth factor-2 (FGF2), and activin A supported long-term growth of multiple hESC lines. These studies identify previously unappreciated RTKs that support hESC proliferation and self-renewal, and provide a rationally designed medium for the growth and maintenance of pluripotent hESCs.

MeSH Terms
Animals Antibodies, Monoclonal/pharmacology Apoptosis/drug effects,physiology Benzothiazoles/pharmacology Cell Differentiation/drug effects,physiology Cell Line Cell Proliferation/drug effects Culture Media, Conditioned Embryonic Stem Cells/cytology,metabolism Fibroblast Growth Factor 2/pharmacology Fibroblasts/cytology,metabolism Humans Mice Neuregulin-1/pharmacology Phosphorylation/drug effects Pluripotent Stem Cells/cytology,metabolism Receptor, ErbB-2/antagonists & inhibitors,metabolism Receptor, ErbB-3/antagonists & inhibitors,metabolism Receptor, IGF Type 2/antagonists & inhibitors,metabolism Receptor, Insulin/antagonists & inhibitors,metabolism Signal Transduction/drug effects,physiology Tyrphostins/pharmacology
Chemicals
Antibodies, Monoclonal Benzothiazoles Culture Media, Conditioned Neuregulin-1 Receptor, IGF Type 2 Tyrphostins tyrphostin AG825 Fibroblast Growth Factor 2 heregulin beta1 ERBB2 protein, human Erbb2 protein, mouse Receptor, ErbB-2 Receptor, ErbB-3 Receptor, Insulin
Authors & Affiliations
19 authors, click to expand affiliations / ORCID
Wang Linlin
Division of Hematology, Department of Medicine, Institute for Stem Cell and Regenerative Medicine, University of Washington, Seattle, 98195, USA.
Schulz Thomas C
Sherrer Eric S
Dauphin Derek S
Shin Soojung
Nelson Angelique M
Ware Carol B
Zhan Mei
Song Chao-Zhong
Chen Xiaoji
Brimble Sandii N
McLean Amanda
Galeano Maria J
Uhl Elizabeth W
D'Amour Kevin A
Chesnut Jonathan D
Rao Mahendra S
Blau C Anthony
Robins Allan J
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Article Info
Journal
Blood
Abbr.
Blood
ISSN
0006-4971
Published
2007-12-01
Epub
2007-00-29
Pages
4111-9
Language
English
Region
United States
NLM ID
7603509
PMCID
PMC2190616
Subset
IM
Grants
NIGMS NIH HHS · P01 GM081619 · United States
NCRR NIH HHS · R24 RR021313 · United States
NIGMS NIH HHS · 1P01GM081691-01 · United States
NCRR NIH HHS · 9R24RR021313-04 · United States
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