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The Journal of Immunology, Vol 144, Issue 4 1396-1403, Copyright © 1990 by American Association of Immunologists


ARTICLES

Loss of a major idiotype (CRIA) after repopulation of irradiated mice

F Willems, G Vansanten-Urbain, D De Wit, M Slaoui and J Urbain
Laboratoire de Physiologie Animale, Universite Libre de Bruxelles, Belgium.

The normal immune response of A/J mice against arsonate coupled to hemocyanin is characterized by a major recurrent cross-reactive Id, the CRIA. This Id is encoded by a single gene segment combination: VHidcr11- DFL16.1e-JH2 for the H chain and Vkidcr-Jk1 for the L chain. In this report, we show that lethal irradiation of A/J mice followed by reconstitution with autologous or syngeneic lymphoid cells results in loss of major CRIA Id expression in the response to arsonate. Different protocols were performed to repopulate the irradiated mice. First, lethally irradiated A/J mice were reconstituted by the transfer of syngeneic bone marrow cells. Second, A/J mice were lethally irradiated while their hind limbs were partially shielded. Third, lethally irradiated A/J mice received a transfer of syngeneic spleen cells. The three groups of mice produce high titers of antiarsonate antibodies completely devoid of CRIA DH-JH related idiotopes expression. Moreover, a lack of affinity maturation is observed in the secondary antiarsonate response of all irradiated and reconstituted mice. A transfer of syngeneic peritoneal cells or a transfer of primed T cells in irradiated and reconstituted A/J mice do not restore in a significant manner either the recurrent CRIA expression or the affinity maturation of the antiarsonate response. Our data suggest that the choice of this Id is not solely dictated by the Igh locus.


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J. Ismaili, D. Razanajaona, A. Van Acker, C. Wuilmart, I. Mancini, E. Heinen, O. Leo, S. Lebecque, J. Urbain, and M. Brait
Molecular and cellular basis of the altered immune response against arsonate in irradiated A/J mice autologously reconstituted
Int. Immunol., July 1, 1999; 11(7): 1157 - 1167.
[Abstract] [Full Text] [PDF]




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