4.4 Article

Olig2-astrocytes express neutral amino acid transporter SLC7A10 (Asc-1) in the adult brain

Journal

MOLECULAR BRAIN
Volume 14, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13041-021-00874-8

Keywords

-

Categories

Funding

  1. JSPS KAKENHI [JP19K06928, JP19K23952, JP19K16480, JP19K06958, JP19K07827, JP20H03199, JP18K06836]
  2. Naito Foundation [J181100037]
  3. AMED [JP21wm0425004]
  4. Nakatomi Foundation [J181100037]

Ask authors/readers for more resources

Olig2-astrocytes express transporter-related genes, with SLC7A10 being a representative gene. Through laser microdissection, it was confirmed that Olig2-astrocytes express significantly higher levels of SLC7A10 mRNA compared to GFAP-astrocytes, suggesting a specific role of SLC7A10 in Olig2-astrocytes in the adult brain.
We have reported that the transcription factor Olig2 labels a subpopulation of astrocytes (Olig2-astrocytes), which show distribution patterns different from those of GFAP-expressing astrocytes (GFAP-astrocytes) in the adult brain. Here, to uncover the specific functions of Olig2-astrocytes, we first analyzed public single-cell RNA-seq databases of adult mouse brains. Unbiased classification of gene expression profiles and subsequent gene ontology analyses revealed that the majority of Olig2-astrocytes belonged to an astrocytic cluster that is enriched for transporter-related genes. SLC7A10 (also known as ASC-1) was one of the representative neutral amino acid transporter genes in the cluster. To complement the in silico data analyses, we differentially isolated Olig2- and GFAP-astrocytes from the same frozen section of the lateral globus pallidus using laser microdissection and compared their gene expression by quantitative reverse transcription PCR. We confirmed that Olig2 and GFAP mRNAs were preferentially expressed in the Olig2- and GFAP-astrocytes, respectively, indicating that the laser microdissection method yielded minimal cross-contamination between two types of cells. The Olig2-astrocytes expressed significantly higher levels of SLC7A10 mRNA than the GFAP-astrocytes, corroborating the in silico data. We next localized SLC7A10 protein by immunohistochemistry in the lateral globus pallidus, which was also genetically labeled for Olig2. SLC7A10 co-localized with Olig2-genetic labeling, especially on the fine processes of Olig2-astrocytes. These results are consistent with the recent discovery that SLC7A10 is expressed not only in neurons but also in a subset of astrocytes. Taken together, our findings suggest that SLC7A10 exerts specific functions in Olig2-astrocytes of the adult brain.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.4
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available