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Publication : Ablation of a specific cell population by the replacement of a uniquely expressed gene with a toxin gene.

First Author  Arase K Year  1999
Journal  Proc Natl Acad Sci U S A Volume  96
Issue  16 Pages  9264-8
PubMed ID  10430931 Mgi Jnum  J:56645
Mgi Id  MGI:1342139 Doi  10.1073/pnas.96.16.9264
Citation  Arase K, et al. (1999) Ablation of a specific cell population by the replacement of a uniquely expressed gene with a toxin gene. Proc Natl Acad Sci U S A 96(16):9264-8
abstractText  The transgenic expression of a toxin gene or a thymidine kinase gene under the control of cell type-specific promoter/enhancer has been shown to be useful for removing a specific cell population in mice. However, this approach requires extensive analysis of the control elements for gene expression in the preparation of the transgenic constructs, and furthermore, the toxin gene might be expressed ectopically because of random integration, resulting in aberrant depletion of unrelated cells. To avoid such difficulties with the transgenic approach, we established a method for the specific depletion of a cell population by replacing a uniquely expressed gene in the population with the diphtheria toxin gene by using homologous recombination. The NKR-P1 gene, a specific cell surface marker of natural killer (NK) cells, was selected as the target gene for depleting NK cells. In chimeric mice reconstituted with embryonic stem cells in which the NKR-P1 gene was replaced by the toxin gene, NKR-P1(+) cells were almost completely depleted, and NK cell function was abrogated in the embryonic stem cell-derived lymphoid cells. Other cell lineages developed normally. These results show that all NK cells express NKR-P1, that NKR-P1(+) cells do not influence the development of T and B cells, and further, that this technology of cell targeting is a fast and powerful method of generating mice lacking any chosen cell population.
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