Transcriptional Repression of Gata3 Is Essential for Early B Cell Commitment
The mechanisms underlying the silencing of alternative fate potentials in very early B cell precursors remain unclear. Using gain- and loss-of-function approaches together with a synthetic Zinc-finger polypeptide (6ZFP) engineered to prevent transcription factor binding to a defined cis element, we...
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Veröffentlicht in: | Immunity (Cambridge, Mass.) Mass.), 2013-05, Vol.38 (5), p.930-942 |
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Sprache: | eng |
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Zusammenfassung: | The mechanisms underlying the silencing of alternative fate potentials in very early B cell precursors remain unclear. Using gain- and loss-of-function approaches together with a synthetic Zinc-finger polypeptide (6ZFP) engineered to prevent transcription factor binding to a defined cis element, we show that the transcription factor EBF1 promotes B cell lineage commitment by directly repressing expression of the T-cell-lineage-requisite Gata3 gene. Ebf1-deficient lymphoid progenitors exhibited increased T cell lineage potential and elevated Gata3 transcript expression, whereas enforced EBF1 expression inhibited T cell differentiation and caused rapid loss of Gata3 mRNA. Notably, 6ZFP-mediated perturbation of EBF1 binding to a Gata3 regulatory region restored Gata3 expression, abrogated EBF1-driven suppression of T cell differentiation, and prevented B cell differentiation via a GATA3-dependent mechanism. Furthermore, EBF1 binding to Gata3 regulatory sites induced repressive histone modifications across this region. These data identify a transcriptional circuit critical for B cell lineage commitment.
•The essential T cell gene Gata3 is a direct repressive target of EBF1•Inhibiting repression of Gata3 by EBF1 enhances T cell differentiation•Inhibiting repression of Gata3 by EBF1 prevents B cell differentiation•Binding of EBF1 to Gata3 induces repressive histone modifications |
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ISSN: | 1074-7613 1097-4180 |
DOI: | 10.1016/j.immuni.2013.01.014 |