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Growth stimulation of primary B cell precursors by the anti-phosphatase Sbf1
1Department of Pathology, Stanford University Medical Center, Stanford, CA 94305, USA.
Abstract:
SET binding factor 1 (Sbf1) was originally discovered by virtue of its interaction with a highly conserved motif (the SET domain) of unknown function in the protooncoprotein homolog of Drosophila trithorax, Hrx. Sbf1 shares extensive sequence similarity with myotubularin, a dual specificity phosphatase (dsPTPase) that is mutated in a subset of patients with inherited myopathies. Both Sbf1 and myotubularin interact with the SET domains of Hrx and other epigenetic regulatory proteins, but Sbf1 lacks phosphatase activity due to several evolutionarily conserved amino acid changes in its structurally preserved catalytic pocket. Thus, Sbf1 has features of an anti-phosphatase that could competitively antagonize dsPTPases; however the in vivo role for such factors remains unknown. Given its ability to physically interact with Hrx, a developmental regulator subject to translocation-induced mutations in B cell precursor leukemias, the current studies were undertaken to assess the effects of Sbf1 on lymphopoiesis. After infection with recombinant Sbf1 retroviruses, bone marrow cells were plated under Whitlock-Witte conditions for long-term culture of B lineage cells. Sbf1-expressing cells rapidly dominated the cultures resulting in clonal outgrowths of B cell progenitors that retained a dependence on their primary bone marrow-derived stroma for continuous growth in vitro. Structure/function analyses demonstrated that the SET interaction domain of Sbf1 was necessary and sufficient for growth alterations of B cell progenitors. These observations support a model in which Sbf1 functions as a SET domain-dependent positive regulator of growth-inducing kinase signaling pathways that impinge on SET domain proteins. SET domain-dsPTPase interactions appear to be critically important for regulating the growth properties of B cell progenitors.
Insights
SET binding factor 1 (Sbf1) promotes B cell progenitor growth by interacting with SET domains, potentially regulating kinase pathways. This finding sheds light on SET domain-dsPTPase interactions in lymphopoiesis.
Area of Science:
- Molecular Biology
- Cell Biology
- Hematology
Background:
- SET binding factor 1 (Sbf1) interacts with SET domains of epigenetic regulators like Hrx.
- Sbf1 is structurally similar to myotubularin, a dual specificity phosphatase (dsPTPase), but lacks phosphatase activity.
- Sbf1 may act as an anti-phosphatase, antagonizing dsPTPases.
Purpose of the Study:
- To investigate the role of Sbf1 in lymphopoiesis, particularly its effect on B cell progenitors.
- To determine the functional significance of Sbf1's interaction with SET domain proteins in the context of B cell development.
Main Methods:
- Retroviral infection of bone marrow cells with Sbf1.
- Long-term B lineage cell culture under Whitlock-Witte conditions.
- Structure/function analyses of Sbf1 domains.
Main Results:
- Sbf1 expression led to rapid dominance of B cell progenitors in culture, forming clonal outgrowths.
- Sbf1-expressing progenitors required stromal support for continuous in vitro growth.
- The SET interaction domain of Sbf1 was essential for altering B cell progenitor growth.
Conclusions:
- Sbf1 acts as a positive regulator of growth-promoting kinase signaling pathways that involve SET domain proteins.
- SET domain-dsPTPase interactions are crucial for regulating the growth properties of B cell progenitors.
- Sbf1's function in regulating B cell progenitor growth highlights the importance of SET domain interactions in lymphopoiesis.