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Merck

Cre recombinase microinjection for single-cell tracing and localised gene targeting.

Development (Cambridge, England) (2023-02-04)
Miquel Sendra, Juan de Dios Hourcade, Susana Temiño, Antonio J Sarabia, Oscar H Ocaña, Jorge N Domínguez, Miguel Torres
RESUMEN

Tracing and manipulating cells in embryos are essential to understand development. Lipophilic dye microinjections, viral transfection and iontophoresis have been key to map the origin of the progenitor cells that form the different organs in the post-implantation mouse embryo. These techniques require advanced manipulation skills and only iontophoresis, a demanding approach of limited efficiency, has been used for single-cell labelling. Here, we perform lineage tracing and local gene ablation using cell-permeant Cre recombinase (TAT-Cre) microinjection. First, we map the fate of undifferentiated progenitors to the different heart chambers. Then, we achieve single-cell recombination by titrating the dose of TAT-Cre, which allows clonal analysis of nascent mesoderm progenitors. Finally, injecting TAT-Cre to Mycnflox/flox embryos in the primitive heart tube revealed that Mycn plays a cell-autonomous role in maintaining cardiomyocyte proliferation. This tool will help researchers identify the cell progenitors and gene networks involved in organ development, helping to understand the origin of congenital defects.

MATERIALES
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Descripción del producto

Sigma-Aldrich
Anticuerpo anti-fosfo-histona H3 (Ser10), marcador de mitosis, Upstate®, from rabbit
Sigma-Aldrich
TAT-recombinasa Cre, TAT-CRE Recombinase is a recombinant cell-permeant fusion cre-recombinase protein consisting of TAT sequence, a nuclear localization sequence (NLS) and it is known to catalyze the site specific recombination event between two loxP DNA sites.
Sigma-Aldrich
Anti-polihistidina monoclonal, clone HIS-1, purified from hybridoma cell culture