Abstract

GATA1 is essential for the differentiation of erythroid cells and megakaryocytes. The Gata1 gene is composed of multiple untranslated first exons and five common coding exons. The erythroid first exon (IE exon) is important for Gata1 gene expression in hematopoietic lineages. Because previous IE exon knockdown analyses resulted in embryonic lethality, less is understood about the contribution of the IE exon to adult hematopoiesis. Here, we achieved specific deletion of the floxed IE exon in adulthood using an inducible Cre expression system. In this conditional knock-out mouse line, the Gata1 mRNA level was significantly down-regulated in the megakaryocyte lineage, resulting in thrombocytopenia with a marked proliferation of megakaryocytes. By contrast, in the erythroid lineage, Gata1 mRNA was expressed abundantly utilizing alternative first exons. Especially, the IEb/c and newly identified IEd exons were transcribed at a level comparable with that of the IE exon in control mice. Surprisingly, in the IE-null mouse, these transcripts failed to produce full-length GATA1 protein, but instead yielded GATA1 lacking the N-terminal domain inefficiently. With low level expression of the short form of GATA1, IE-null mice showed severe anemia with skewed erythroid maturation. Notably, the hematological phenotypes of adult IE-null mice substantially differ from those observed in mice harboring conditional ablation of the entire Gata1 gene. The present study demonstrates that the IE exon is instrumental to adult erythropoiesis by regulating the proper level of transcription and selecting the correct transcription start site of the Gata1 gene.

Highlights

  • Transcription factor GATA1 is critical for erythroid and megakaryocytic cell differentiation through its regulation of specific target genes [1, 2]

  • Gata1 IE Exon Is Indispensable for Embryonic Hematopoiesis— of the IE exon (Fig. 1A) attenuates expression of the Gata1 gene, We generated a mouse line harboring a neo-cassette sand- we removed the neo-cassette from the Gata1.05flox allele and wiched with the first and second loxP sequences in the 5Ј-re- generated two independent mouse lines harboring a condigion of the IE exon (Fig. 1A, Gata1.05flox)

  • We found firmed that hemizygous male mice harboring the IEflox allele that hemizygous Gata1.05flox male embryos (Gata1G1.05F/Y) (Gata1IEF/Y) but not harboring the neo-cassette were born died by E12.5, indicating that Gata1 gene according to the Mendelian inheritance and showed no expression from the Gata1.05flox allele was insufficient to sus- abnormal hematopoietic parameter

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Summary

Introduction

Transcription factor GATA1 is critical for erythroid and megakaryocytic cell differentiation through its regulation of specific target genes [1, 2]. Semi-quantitative RT-PCR revealed that the expression level of Gata1 mRNA in Gata1IECKO/Y mouse bone marrow is similar to that in control and wild-type mice (Fig. 4A).

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