BMP7 promotes proliferation of nephron progenitor cells via a JNK-dependent mechanism
Author:
Blank Ulrika1, Brown Aaron1, Adams Derek C.1, Karolak Michele J.1, Oxburgh Leif1
Affiliation:
1. Department of Molecular Medicine, Maine Medical Center Research Institute, 81 Research Drive, Scarborough, ME 04074, USA.
Abstract
The iterative formation of nephrons during embryonic development relies on continual replenishment of progenitor cells throughout nephrogenesis. Defining molecular mechanisms that maintain and regulate this progenitor pool is essential to understanding nephrogenesis in developmental and regenerative contexts. Maintenance of nephron progenitors is absolutely dependent on BMP7 signaling, and Bmp7-null mice exhibit rapid loss of progenitors. However, the signal transduction machinery operating downstream of BMP7 as well as the precise target cell remain undefined. Using a novel primary progenitor isolation system, we have investigated signal transduction and biological outcomes elicited by BMP7. We find that BMP7 directly and rapidly activates JNK signaling in nephron progenitors resulting in phosphorylation of Jun and ATF2 transcription factors. This signaling results in the accumulation of cyclin D3 and subsequent proliferation of PAX2+ progenitors,inversely correlating with the loss of nephron progenitors seen in the Bmp7-null kidney. Activation of Jun and ATF2 is severely diminished in Bmp7-null kidneys, providing an important in vivo correlate. BMP7 thus promotes proliferation directly in nephron progenitors by activating the JNK signaling circuitry.
Publisher
The Company of Biologists
Subject
Developmental Biology,Molecular Biology
Reference45 articles.
1. Bakiri, L., Lallemand, D., Bossy-Wetzel, E. and Yaniv, M.(2000). Cell cycle-dependent variations in c-Jun and JunB phosphorylation: a role in the control of cyclin D1 expression. EMBO J.19,2056-2068. 2. Behrens, A., Sibilia, M., David, J. P., Mohle-Steinlein, U.,Tronche, F., Schutz, G. and Wagner, E. F. (2002). Impaired postnatal hepatocyte proliferation and liver regeneration in mice lacking c-jun in the liver. EMBO J.21,1782-1790. 3. Blank, U., Seto, M. L., Adams, D. C., Wojchowski, D. M.,Karolak, M. J. and Oxburgh, L. (2008). An in vivo reporter of BMP signaling in organogenesis reveals targets in the developing kidney. BMC Dev. Biol.8,86. 4. Blonska, M., Shambharkar, P. B., Kobayashi, M., Zhang, D.,Sakurai, H., Su, B. and Lin, X. (2005). TAK1 is recruited to the tumor necrosis factor-alpha (TNF-alpha) receptor 1 complex in a receptor-interacting protein (RIP)-dependent manner and cooperates with MEKK3 leading to NF-kappaB activation. J. Biol. Chem.280,43056-43063. 5. Brunskill, E. W., Aronow, B. J., Georgas, K., Rumballe, B.,Valerius, M. T., Aronow, J., Kaimal, V., Jegga, A. G., Grimmond, S., McMahon,A. P. et al. (2008). Atlas of gene expression in the developing kidney at microanatomic resolution. Dev. Cell15,781-791.
Cited by
111 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|