| Literature DB >> 26759825 |
Ryan M Bradley1, Emily B Mardian1, Phillip M Marvyn1, Maryam S Vasefi2, Michael A Beazely2, John G Mielke3, Robin E Duncan1.
Abstract
Whole mouse embryos at three developmental timepoints, embryonic (E) day E10.5, E14.5, and E18.5, were analyzed for Agpat4 mRNA expression. Primary cortical mouse cultures prepared from E18.5 mouse brains were used for immunohistochemistry. Our data show that Agpat4 is differentially expressed at three timepoints in murine embryogenesis and is immunodetectable in both neurons and glial cells derived from the developing mouse brain. This paper contains data related to research concurrently published in Bradley et al. (2015) [1].Entities:
Year: 2015 PMID: 26759825 PMCID: PMC4683321 DOI: 10.1016/j.dib.2015.11.033
Source DB: PubMed Journal: Data Brief ISSN: 2352-3409
Fig. 1AGPAT4 is detected in both neurons and glial cells. Representative images showing immunodetection of AGPAT4 (in red, first column) in a mixed culture of primary cortical neurons and glial cells. Neurons were identified by co-staining with green fluorophore-labeled Nissl stain (Neurotrace®, top row), or by detection of the neuron-specific protein NESTIN (also in green, middle row). Glial cells were identified by detection of the glial marker GFAP (green, bottom row). Nuclei were stained blue with DAPI (second column). Merged wells (last column) show overlap of neuronal or glial cell markers in green with immunoreactive AGPAT4 in red.
Fig. 2Agpat4 mRNA is regulated during murine embryogenesis.Agpat4 mRNA expression in whole mouse embryos harvested at embryonic (E) developmental day 10.5, 14.5, and 18.5 (n=4–6). Data are mean±S.E.M. P<0.001; P<0.05.
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