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D M Allman

Publications and source records attributed to D M Allman.

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xid mice reveal the interplay of homeostasis and Bruton's tyrosine kinase-mediated selection at multiple stages of B cell development.

Human X-linked agammaglobulinemia (XLA) and murine X-linked immune defect (XID) are both immunodeficiencies mediated by mutations in Bruton's tyrosine kinase (Btk), yet the developmental stage(s) affected remain controversial. To further refine the placement of the XID defect(s), we used bromodeoxyuridine labeling to determine turnover, production and transition rates of developing B cell subsets in normal, xid and xid mice expressing a human Bcl-2 transgene (xid/bcl-2). We find the xid mutation manifest at two stages of B cell development. The first is early, reducing pre-B cell production by restricting pro-B to pre-B cell transit. Surprisingly, this impairment is offset by increased survival of cells progressing from the pre- to immature B cell pool, suggesting that Btk-independent homeostatic mechanisms act to maintain this compartment. The second point of action is late, substantially reducing mature B cell production. Together, these findings reconcile apparent discrepancies in the developmental stage affected by the murine versus human lesions and suggest previously unappreciated homeostatic processes that act at the pre-B to immature B cell transition. Finally, Btk likely functions differently at these two checkpoints, since ectopic Bcl-2 expression fails to directly complement the early xid lesion, yet reverses the defect impeding final B cell maturation.

Agammaglobulinaemia Tyrosine Kinase↗

B cell production and turnover in CBA/Ca, CBA/N and CBA/N-bcl-2 transgenic mice: xid-mediated failure among pre B cells is unaltered by bcl-2 overexpression.

The CBA/N strain carries xid, a murine btk missense mutation that reduces peripheral B cell numbers. Using in vivo BrdU labeling and cytofluorimetry, we have compared the magnitude, production rates, and turnover rates of each B lineage subset in the marrow and periphery of CBA/Ca and CBA/N mice. Our results show the pro-B compartment is largely unaffected by xid. In contrast, the pre-B cell pool is markedly reduced, reflecting a diminished production rate and unaltered turnover time. Despite diminished pre-B cell formation, the size of the immature B cell pool is relatively normal in CBA/N mice, due to increased proportional survival of pre-B cells. In addition, we have assessed the marrow and peripheral B cell subsets of CBA/N mice transgenic for bcl-2. These results indicate that while the bcl-2 transgene promotes lengthened survival in most B cell subsets, the pro/pre-B cell losses mediated by xid are not abrogated by bcl-2 overexpression. Taken together, these findings suggest that the initial [not readable: see text] from the pro- to pre-B cell pools, and that anomalies in subsequent compartments likely reflects the action of homeostatic mechanisms compensating for compromised pre-B cell production.

Agammaglobulinaemia Tyrosine Kinase↗

Expression of the Bcl-2 family member A1 is developmentally regulated in T cells.

During T cell development, cells that fail to meet stringent selection criteria undergo programmed cell death. Thymocyte and peripheral T cell susceptibility to apoptosis is influenced by expression of Bcl-2 family members, some of which are expressed in a developmentally patterned manner. We previously showed developmentally regulated expression of A1, an anti-apoptotic Bcl-2 family member, among B cell developmental subsets. Here we show that cells of the T lineage also express A1 in a developmentally regulated manner. Both A1 mRNA and A1 protein are readily detectable in the thymus, and while present among DN cells, A1 mRNA is up-regulated to very high levels among double-positive (DP) thymocytes. It is then down-regulated to moderate levels among single-positive (SP) thymocytes, and finally expressed at approximately 25-fold lower levels among mature SP CD4(+) and CD8(+) lymph node T cells than among DP thymocytes. Furthermore, we find that in vitro TCR ligation up-regulates A1 expression among both DP and SP thymocytes. Together, these data show that A1 expression is developmentally regulated in T lymphocytes and is responsive to TCR signaling, suggesting that A1 may play a role in maintaining the viability of DP thymocytes.

Actins↗

B cell maturation and selection at the marrow-periphery interface.

More than 95% of newly formed B cells die in the short interval spanning sIgM acquisition in the bone marrow and entry into the long-lived pool, suggesting that selective events dictating B cell longevity occur at this stage. These likely include both ligand-induced deletion as well as discrete events that mediate recruitment to the long-lived recirculating pool. We are probing these events through the examination of normal B cell differentiation during this critical period: the characterization of a natural mutation that blocks late maturation, an irradiation/autoreconstitution model of marrow-derived B cell differentiation, and the identification of life span regulatory genes whose expression changes within this window.

Animals↗

Peripheral B cell maturation. II. Heat-stable antigen(hi) splenic B cells are an immature developmental intermediate in the production of long-lived marrow-derived B cells.

HSAhi B cells comprise 5 to 10% of adult mouse splenic B cells and are phenotypically and functionally immature. To assess their origin and relationship to mature, heat-stable Ag (HSA)lo B cells, we determined HSA and surface IgD phenotype among splenic B cells throughout development, as well as during reconstitution of lethally irradiated adults given adult B-depleted bone marrow. In each case, HSAhi splenic B cells predominate during the earliest stages of B cell genesis. Furthermore, 5-bromo-2'-deoxyuridine labeling experiments indicate rapid turnover within both the marrow and peripheral HSAhi pools, and adoptive transfer studies show that peripheral HSAhi splenic B cells differentiate to HSAlo within 4 days. Finally, splenic HSAhi B cells reconstitute both primary and memory humoral responses. Together, these data indicate that splenic B cells in the HSAhi subset are an intermediate maturational stage in the adult periphery.

Animals↗

Peripheral B cell maturation. I. Immature peripheral B cells in adults are heat-stable antigenhi and exhibit unique signaling characteristics.

Whether recently generated peripheral B cells in adults are functionally equivalent to immature B cells in the neonatal spleen is unknown. We have identified a splenic B cell subpopulation in adults whose phenotypic and in vitro characteristics closely resemble those of neonatal B cells. These cells are defined by the cell surface phenotype heat-stable Aghi (HSAhi), and make up 10 to 15% of the adult splenic B cell pool. HSAhi B cells in adults bear the immature phenotype B220lo sIgMhi, and are 50% sIgD+. Furthermore, after sublethal irradiation, the initial wave of newly generated splenic B cells in self-reconstituting adults express a similar phenotype. In keeping with previous data on neonatal B cells, HSAhi cells from either normal or self-reconstituting mice are refractory to stimulation with anti-IgM antibodies, yet proliferate upon LPS stimulation, and generate primary antibody responses if given appropriate T cell help. In contrast to neonatal cells, HSAhi adult B cells are refractory to stimulation with PMA plus ionomycin. Together, these data suggest that peripheral HSAhi B cells in adults correspond to recently generated B cells, whose signaling characteristics are distinct from previously described B cell subsets.

Animals↗