Normal Immune System Development in Mice Lacking the Deltex-1 RING Finger Domain
- 1 February 2005
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 25 (4) , 1437-45
- https://doi.org/10.1128/mcb.25.4.1437-1445.2005
Abstract
The Notch signaling pathway controls several cell fate decisions during lymphocyte development, from T-cell lineage commitment to the peripheral differentiation of B and T lymphocytes. Deltex-1 is a RING finger ubiquitin ligase which is conserved from Drosophila to humans and has been proposed to be a regulator of Notch signaling. Its pattern of lymphoid expression as well as gain-of-function experiments suggest that Deltex-1 regulates both B-cell lineage and splenic marginal-zone B-cell commitment. Deltex-1 was also found to be highly expressed in germinal-center B cells. To investigate the physiological function of Deltex-1, we generated a mouse strain lacking the Deltex-1 RING finger domain, which is essential for its ubiquitin ligase activity. Deltex-1(Delta/Delta) mice were viable and fertile. A detailed histological analysis did not reveal any defects in major organs. T- and B-cell development was normal, as were humoral responses against T-dependent and T-independent antigens. These data indicate that the Deltex-1 ubiquitin ligase activity is dispensable for mouse development and immune function. Possible compensatory mechanisms, in particular those from a fourth Deltex gene identified during the course of this study, are also discussed.Keywords
This publication has 56 references indexed in Scilit:
- The BAL-binding Protein BBAP and Related Deltex Family Members Exhibit Ubiquitin-Protein Isopeptide Ligase ActivityJournal of Biological Chemistry, 2003
- Notch2 Is Preferentially Expressed in Mature B Cells and Indispensable for Marginal Zone B Lineage DevelopmentImmunity, 2003
- CSL-independent Notch signalling: a checkpoint in cell fate decisions during development?Current Opinion in Genetics & Development, 2002
- Notch–RBP-J signaling is involved in cell fate determination of marginal zone B cellsNature Immunology, 2002
- c-Cbl Binding and Ubiquitin-dependent Lysosomal Degradation of Membrane-associated Notch1Journal of Biological Chemistry, 2002
- Role of Deltex-1 as a Transcriptional Regulator Downstream of the Notch ReceptorJournal of Biological Chemistry, 2001
- Novel Notch alleles reveal a Deltex-dependent pathway repressing neural fateCurrent Biology, 2001
- Notch 1–Deficient Common Lymphoid Precursors Adopt a B Cell Fate in the ThymusThe Journal of Experimental Medicine, 2001
- Contact-Dependent Inhibition of Cortical Neurite Growth Mediated by Notch SignalingScience, 1999
- Notch Signaling: Cell Fate Control and Signal Integration in DevelopmentScience, 1999