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July 15, 2000Blood249 citations

Insertion of enhanced green fluorescent protein into the lysozyme gene creates mice with green fluorescent granulocytes and macrophages

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NFNicole FaustFVFlorencio VarasLKLouise Kelly

Key Points

  • To establish a live-imaging mouse model for tracking myelomonocytic lineage differentiation by targeting enhanced green fluorescent protein into the endogenous lysozyme M locus.
  • Constructed a gene-targeting vector containing EGFP and a loxP-flanked neomycin resistance cassette with splinked ends to target the murine lysozyme M (lys) locus.
  • Bred targeted lys-EGFP mice with a Cre-deleter strain to excise the neomycin cassette and evaluated fluorescence in blood and bone marrow.
  • Fluorescence expression was restricted to myelomonocytic cells, with mature neutrophil granulocytes exhibiting strong positive signals while non-myelomonocytic lineages remained non-fluorescent.
  • Cre-mediated excision of the neomycin selection cassette significantly increased EGFP fluorescence intensity without impairing normal development or fertility in homozygous lys-deficient mice.

Abstract

Pluripotent hematopoietic stem cells have been studied extensively, but the events that occur during their differentiation remain largely uncharted. To develop a system that allows the differentiation of cultured multipotent progenitors by time-lapse fluorescence microscopy, myelomonocytic cells were labeled with green fluorescent protein (GFP) in vivo. This was achieved by knocking the enhanced GFP (EGFP) gene into the murine lysozyme M (lys) locus and using a targeting vector, which contains a neomycin resistant (neo) gene flanked by LoxP sites and “splinked” ends, to increase the frequency of homologous recombination. Analysis of the blood and bone marrow of thelys-EGFP mice revealed that most myelomonocytic cells, especially mature neutrophil granulocytes, were fluorescence-positive, while cells from other lineages were not. Removal of the neogene through breeding of the mice with the Cre-deleter strain led to an increased fluorescence intensity. Mice with an inactivation of both copies of the lys gene developed normally and were fertile.

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Faust et al. (2000) studied this question.

synapsesocial.com/papers/69a013dcf77ac6a3e20b5f42https://doi.org/10.1182/blood.v96.2.719.014k29_719_726
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