Blimp1 regulates development of the posterior forelimb, caudal pharyngeal arches, heart and sensory vibrissae in mice

Author:

Robertson Elizabeth J.1,Charatsi Iphigenie1,Joyner Clive J.1,Koonce Chad H.1,Morgan Marc1,Islam Ayesha1,Paterson Carol1,Lejsek Emily1,Arnold Sebastian J.1,Kallies Axel2,Nutt Stephen L.2,Bikoff Elizabeth K.1

Affiliation:

1. Sir William Dunn School of Pathology, University of Oxford, South Parks Road,Oxford OX1 3RE, UK.

2. The Walter and Eliza Hall Institute of Medical Research, Parkville, Victoria,3050, Australia.

Abstract

The zinc-finger transcriptional repressor Blimp1 (Prdm1) controls gene expression patterns during differentiation of B lymphocytes and regulates epigenetic changes required for specification of primordial germ cells. Blimp1 is dynamically expressed at diverse tissue sites in the developing mouse embryo, but its functional role remains unknown because Blimp1 mutant embryos arrest at E10.5 due to placental insufficiency. To explore Blimp1 activities at later stages in the embryo proper,here we used a conditional inactivation strategy. A Blimp1-Cretransgenic strain was also exploited to generate a fate map of Blimp1-expressing cells. Blimp1 plays essential roles in multipotent progenitor cell populations in the posterior forelimb, caudal pharyngeal arches, secondary heart field and sensory vibrissae and maintains key signalling centres at these diverse tissues sites. Interestingly, embryos carrying a hypomorphic Blimp1gfp reporter allele survive to late gestation and exhibit similar, but less severe developmental abnormalities, whereas transheterozygous Blimp1gfp/-embryos with further reduced expression levels, display exacerbated defects. Collectively, the present experiments demonstrate that Blimp1requirements in diverse cell types are exquisitely dose dependent.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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