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Effects of Extracellular Signaling on the Endogenous Expression of Self-Renewal-Stimulating Factor Genes in Mouse Embryonic Stem Cells  

Gong, Seung-Pyo (Department of Marine Biomaterials and Aquaculture, Pukyong National University)
Lee, Seung-Tae (Department of Animal Biotechnology, Kangwon National University)
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Abstract
In order to provide the basis for developing practical mouse embryonic stem cells (mESCs) culture method, how the endogenous level of self-renewal-stimulating factor genes was altered in the mESCs by different extracellular signaling was investigated in this study. For different extracellular signaling, mESCs were cultured in 2 dimension (D), 3D and integrin-stimulating 3D culture system in the presence or absence of leukemia inhibitory factor (LIF) and transcriptional level of $Lif$, $Bmp4$ and $Wnt3a$ was evaluated in the mESCs cultured in each system. The expression of three genes was significantly increased in 3D system relative to 2D system under LIF-containing condition, while only $Wnt3a$ expression was increased by 3D culture under LIF-free condition. Stimulation of integrin signaling in mESCs within 3D system with exogenous LIF significantly up-regulated transcriptional level of $Bmp4$, but did not induce transcriptional regulation of $Lif$ and $Wnt3a$. In the absence of LIF inside 3D system, the expression of $Lif$ and $Bmp4$ was significantly increased by integrin signaling, while it significantly decreased $Wnt3a$ expression. Finally, the signal from exogenous LIF significantly caused increased expression of $Lif$ in 2D system, decreased expression of $Bmp4$ in both 2D and 3D system, and decreased expression of $Wnt3a$ in integrin-stimulating 3D system. From these results, we identified that endogenous expression level of self-renewal-stimulating factor genes in mESCs could be effectively regulated through artificial and proper manipulation of extracellular signaling. Moreover, synthetic 3D niche stimulating endogenous secretion of self-renewal-stimulating factors will be able to help develop growth factor-free maintenance system of mESCs.
Keywords
Mouse Embryonic stem cells; Self-renewal-stimulating factor; Endogenous gene expression; Extracellular signaling;
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1 Boeuf H, Hauss C, Graeve FD, Baran N, Kedinger C (1997): Leukemia inhibitory factor-dependent transcriptional activation in embryonic stem cells. J Cell Biol 138:1207-1217.   DOI
2 Lee ST, Yun, JI, Jo YS, Mochizuki M, van der Vlies AJ, Kontos S, Ihm JE, Lim JM, Hubbell JA (2010): Engineering integrin signaling for promoting embryonic stem cell self-renewal in a precisely defined niche. Biomaterials 31:1219-1226.   DOI
3 Lutolf MP, Hubbell JA (2003): Synthesis and physicochemical characterization of end-linked poly(ethylene glycol)-co-peptide hydrogels formed by Michael- type addition. Biomacromolecules 4:713-722.   DOI
4 Lutolf MP, Tirelli N, Cerritelli S, Cavalli L, Hubbell JA (2001): Systematic modulation of Michael-type reactivity of thiols through the use of charged amino acids. Bioconjug Chem 12:1051-1056.   DOI
5 Ying QL, Nichols J, Chambers I, Smith A (2003): BMP induction of Id proteins suppresses differentiation and sustains embryonic stem cell self-renewal in collaboration with STAT3. Cell 115:281-292.   DOI
6 Qi X, Li TG, Hao J, Hu J, Wang J, Simmons H, Miura S, Mishina Y, Zhao GQ (2004): BMP4 supports self-renewal of embryonic stem cells by inhibiting mitogen-activated protein kinase pathways. Proc Natl Acad Sci USA 101:6027-6032.   DOI
7 Matsuda T, Nakamura T, Nakao K, Arai T, Katsuki M, Heike T, Yokota T (1999): STAT3 activation is sufficient to maintain an undifferentiated state of mouse embryonic stem cells. EMBO J 18:4261-4269.   DOI
8 Miyabayashi T, Teo JL, Yamamoto M, McMillan M, Nguyen C, Kahn M (2007): Wnt/beta-catenin/CBP signaling maintains long-term murine embryonic stem cell pluripotency. Proc Natl Acad Sci USA 104:5668-5673.   DOI
9 Niwa H, Burdon T, Chambers I, Smith A (1998): Self-renewal of pluripotent embryonic stem cells is mediated via activation of STAT3. Genes Dev 12: 2048-2060.   DOI
10 Ruzinova MB, Benezra R (2003): Id proteins in development, cell cycle and cancer. Trends Cell Biol 13: 410-418.   DOI
11 Sato N, Meijer L, Skaltsounis L, Greengard P, Brivanlou AH (2004): Maintenance of pluripotency in human and mouse embryonic stem cells through activation of Wnt signaling by a pharmacological GSK-3-specific inhibitor. Nat Med 10:55-63.   DOI
12 Singla DK, Schneider DJ, LeWinter MM, Sobel BE (2006): wnt3a but not wnt11 supports self-renewal of embryonic stem cells. Biochem Biophys Res Commun 345:789-795.   DOI
13 Smith AG, Heath JK, Donaldson DD, Wong GG, Moreau J, Stahl M, Rogers D (1988): Inhibition of pluripotential embryonic stem cell differentiation by purified polypeptides. Nature 336:688-690.   DOI
14 Williams RL, Hilton DJ, Pease S, Willson TA, Stewart CL, Gearing DP, Wagner EF, Metcalf D, Nicola NA, Gough NM (1988): Myeloid leukaemia inhibitory factor maintains the developmental potential of embryonic stem cells. Nature 336:684-687.   DOI