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Publication : Signals transduced by Ca(2+)/calcineurin and NFATc3/c4 pattern the developing vasculature.

First Author  Graef IA Year  2001
Journal  Cell Volume  105
Issue  7 Pages  863-75
PubMed ID  11439183 Mgi Jnum  J:70266
Mgi Id  MGI:2136698 Doi  10.1016/s0092-8674(01)00396-8
Citation  Graef IA, et al. (2001) Signals transduced by Ca(2+)/calcineurin and NFATc3/c4 pattern the developing vasculature. Cell 105(7):863-75
abstractText  Vascular development requires an orderly exchange of signals between growing vessels and their supporting tissues, but little is known of the intracellular signaling pathways underlying this communication. We find that mice with disruptions of both NFATc4 and the related NFATc3 genes die around E11 with generalized defects in vessel assembly as well as excessive and disorganized growth of vessels into the neural tube and somites. Since calcineurin is thought to control nuclear localization of NFATc proteins, we introduced a mutation into the calcineurin B gene that prevents phosphatase activation by Ca(2+) signals. These CnB mutant mice exhibit vascular developmental abnormalities similar to the NFATc3/c4 null mice. We show that calcineurin function is transiently required between E7.5 and E8.5. Hence, early calcineurin/NFAT signaling initiates the later cross-talk between vessels and surrounding tissues that pattern the vasculature.
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