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J Cell Biochem ; 120(10): 17208-17218, 2019 10.
Article in English | MEDLINE | ID: mdl-31106442

ABSTRACT

Neuronal tracing is a modern technology that is based on the expression of fluorescent proteins under the control of cell type-specific promoters. However, random genomic integration of the reporter construct often leads to incorrect spatial and temporal expression of the marker protein. Targeted integration (or knock-in) of the reporter coding sequence is supposed to provide better expression control by exploiting endogenous regulatory elements. Here we describe the generation of two fluorescent reporter systems: enhanced green fluorescent protein (EGFP) under pan-neural marker class III ß-tubulin (Tubb3) promoter and mEos2 under serotonergic neuron-specific tryptophan hydroxylase 2 (Tph2) promoter. Differentiation of Tubb3-EGFP embryonic stem (ES) cells into neurons revealed that though Tubb3-positive cells express EGFP, its expression level is not sufficient for the neuronal tracing by routine fluorescent microscopy. Similarly, the expression levels of mEos2-TPH2 in differentiated ES cells was very low and could be detected only on messenger RNA level using polymerase chain reaction-based methods. Our data shows that the use of endogenous regulatory elements to control transgene expression is not always beneficial compared with the random genomic integration.


Subject(s)
Green Fluorescent Proteins/metabolism , Luminescent Proteins/metabolism , Mouse Embryonic Stem Cells/metabolism , Neurons/metabolism , Promoter Regions, Genetic , Tryptophan Hydroxylase/genetics , Tubulin/genetics , Animals , Cell Differentiation , Cells, Cultured , Genetic Vectors , Green Fluorescent Proteins/genetics , Luminescent Proteins/genetics , Mice , Mouse Embryonic Stem Cells/cytology , Neurons/cytology , Recombination, Genetic , Transgenes
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