Transglutaminase 2<sup>-/-</sup>mice reveal a phagocytosis-associated crosstalk between macrophages and apoptotic cells

Zsuzsa Szondy(University of Rome Tor Vergata), Zsolt Sarang(University of Rome Tor Vergata), Péter Molnár(University of Rome Tor Vergata), Tamás Németh(University of Rome Tor Vergata), Mauro Piacentini(University of Rome Tor Vergata), Pier G. Mastroberardino(University of Rome Tor Vergata), Laura Falasca(University of Rome Tor Vergata), Daniel Aeschlimann(University of Rome Tor Vergata), Judit Kovács(University of Rome Tor Vergata), Ildikó Kiss(University of Rome Tor Vergata), Éva Szegezdi(University of Rome Tor Vergata), Gabriella Lakos(University of Rome Tor Vergata), Éva Rajnavölgyi(University of Rome Tor Vergata), Paul J. Birckbichler(University of Rome Tor Vergata), Gerry Melino(University of Rome Tor Vergata), László Fésüs(University of Rome Tor Vergata)
Proceedings of the National Academy of Sciences
June 16, 2003
Cited by 253Open Access
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Abstract

Tissue transglutaminase (TGase2) is a protein-crosslinking enzyme known to be associated with the in vivo apoptosis program. Here we report that apoptosis could be induced in TGase2-/- mice; however, the clearance of apoptotic cells was defective during the involution of thymus elicited by dexamethasone, anti-CD3 antibody, or gamma-irradiation, and in the liver after induced hyperplasia. The lack of TGase2 prevented the production of active transforming growth factor-beta1 in macrophages exposed to apoptotic cells, which is required for the up-regulation of TGase2 in the thymus in vivo, for accelerating deletion of CD4+CD8+ cells and for efficient phagocytosis of apoptotic bodies. The deficiency is associated with the development of splenomegaly, autoantibodies, and immune complex glomerulonephritis in TGase2-/- mice. These findings have broad implications not only for diseases linked to inflammation and autoimmunity but also for understanding the interrelationship between the apoptosis and phagocytosis process.


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