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Transcriptional Regulation

Chromosomal Proteins HMGN3a and HMGN3b Regulate the Expression of Glycine Transporter 1

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Pages 3747-3756 | Received 23 Jan 2004, Accepted 16 Feb 2004, Published online: 27 Mar 2023
 

Abstract

HMGN proteins promote chromatin unfolding, enhance access to nucleosomes, and modulate transcription from chromatin templates. It is not known whether they act indiscriminately as general modulators of transcription or whether they regulate specific gene expression. Here, we investigated the role of HMGN3, a recently discovered HMGN family member, in transcription in vivo. We created cell lines overexpressing HMGN3a or its splice variant, HMGN3b, and analyzed their gene expression profiles using microarrays and reverse transcriptase PCR. We found that ectopic expression of HMGN3a alters the expression of approximately 0.8% of genes. Both HMGN3a and HMGN3b upregulate the expression of the glycine transporter 1 gene (Glyt1). Glyt1 encodes a membrane transporter that regulates the glycine concentration in synaptic junctions. Both GLYT1 and HMGN3 are highly expressed in glia cells and the eye, and we show that both proteins are coexpressed in the retina. Chromatin immunoprecipitation assays showed that HMGN3 protein is recruited to a region of the Glyt1 gene encompassing the Glyt1a transcriptional start site. These results suggest that HMGN3 regulates Glyt1 expression and demonstrate that members of the HMGN family can regulate the transcription of specific genes.

We are grateful to David Pow (University of Queensland, Brisbane, Australia) for providing one of the GLYT1 antibodies, to Gary Felsenfeld (NIH, Bethesda, Md.) for providing plasmid pBAW3, containing the HS4 insulator, and to Adam West (University of Glasgow) for providing protocols and advice concerning ChIP assays.

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