Embryonic development is a time- and space-ordered series of gene interactions, each in turn designating polarity, germ-layer identity, and individual cell type differentiation. Critical to our study is to determine how these time- and space-restricted instructions are signaled and received during morphogenesis of different phenotypes derived from the first branchial arch. Our previous studies on the regulation of first branchial arch morphogenesis have identical critical components of a well-accepted hierarchy of growth factors and their downstream transcription factors, which regulates the expression of genes responsible for determining cell phenotypes during embryogenesis. Here, we propose to test the hypothesis that TGF-beta signals converge on specific Smads which may alter the expression of transcription factors Msx1, Msx2 and Lef1 resulting in particular phenotypes during the morphogenesis of first branchial arch. TGF-beta ligands are expressed in a time- and tissue-specific manner and are important in regulation of tooth and Meckel's cartilage formation. Both time- and tissue-specific manner and are important in regulation of tooth and Meckel's cartilage formation. Both TGF-beta type I and type II (IR & IIR) receptors as well as their downstream intracellular mediators S Smad2, 3, 4 and 7 are required constituents of the TGF-beta signaling pathway. Activated Smads may regulate transcription factor expression, affecting target-gene transcriptional status. Our preliminary data show that TGF-beta cognate receptors, TGF-beta signaling pathway specific Smads and transcriptional factors Msx1, Msx2 & Lef1 are critical components in regulating first branchial arch morphogenesis.
Our specific aims are: (1) to determine and compare the temporal and spatial expression of TGF-beta, IR, IIR, Smad2, Smad3, Smad4, Smad7 and transcription factors (Msx1,2 and Lef1) during the formation of tooth and Meckel's cartilage both in vivo and in vitro. (2) to test the function of TGF-beta IR, IIR, Smad2, Smad3 and Smad4 signaling in regulating first branchial arch morphogenesis using gain-of-function and loss of function experiments. (3) to determine the impact of TGF-beta signaling on the expression of Msx1, Msx2 and Lef1 using implantation of beads being different TGF-beta isoforms, assess the morphological changes, and evaluate the expression of Msx1, Msx2 and Lef1, using both wild type and readily available Msx1, Msx1 transgenic animals. The molecular mechanism of TGF-beta down-regulation of Msx1 and 2 expression will also be explored. (4) to define the function of TGF- beta signaling inhibitory molecule Smad7 and its regulatory effect on the expression of Msx1, Msx2 and Lef1 as well as other growth factors (EGF, PDGF-AA and FGF). Ultimately , this study will advance our understanding of how the TGF-beta signaling cascade guides normal craniofacial development and his disruption in the TGF-beta signaling pathway can lead to craniofacial malformations.

Project Start
1999-08-01
Project End
2000-07-31
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
1
Fiscal Year
1999
Total Cost
Indirect Cost
Name
University of Southern California
Department
Type
DUNS #
041544081
City
Los Angeles
State
CA
Country
United States
Zip Code
90089
Nakajima, Akira; Ito, Yoshihiro; Tanaka, Eiji et al. (2014) Functional role of TGF-? receptors during palatal fusion in vitro. Arch Oral Biol 59:1192-204
Nakajima, Akira; Tanaka, Eiji; Ito, Yoshihiro et al. (2010) The expression of TGF-?3 for epithelial-mesenchyme transdifferentiated MEE in palatogenesis. J Mol Histol 41:343-55
Ting, Man-Chun; Wu, Nancy L; Roybal, Paul G et al. (2009) EphA4 as an effector of Twist1 in the guidance of osteogenic precursor cells during calvarial bone growth and in craniosynostosis. Development 136:855-64
Zhuang, Fengfeng; Nguyen, Manuel P; Shuler, Charles et al. (2009) Analysis of Msx1 and Msx2 transactivation function in the context of the heat shock 70 (Hspa1b) gene promoter. Biochem Biophys Res Commun 381:241-6
Zhuang, Fengfeng; Yen, Philip; Zhao, Jiangyue et al. (2008) Dynamic intracellular distribution of Eaf2 and its potential involvement in UV-Induced DNA damage response. DNA Cell Biol 27:649-56
Maxson, Robert; Ishii, Mamoru (2008) The Bmp pathway in skull vault development. Front Oral Biol 12:197-208
Fu, Hualin; Ishii, Mamoru; Gu, Ying et al. (2007) Conditional alleles of Msx1 and Msx2. Genesis 45:477-81
Nakajima, Akira; Ito, Yoshihiro; Asano, Masatake et al. (2007) Functional role of transforming growth factor-beta type III receptor during palatal fusion. Dev Dyn 236:791-801
Chen, Yi-Hui; Ishii, Mamoru; Sun, Jingjing et al. (2007) Msx1 and Msx2 regulate survival of secondary heart field precursors and post-migratory proliferation of cardiac neural crest in the outflow tract. Dev Biol 308:421-37
Kong, Kimi Y; Kedes, Larry (2006) Leucine 135 of tropomodulin-1 regulates its association with tropomyosin, its cellular localization, and the integrity of sarcomeres. J Biol Chem 281:9589-99

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