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Novel non-coding FOXP3 transcript isoform associated to potential transcriptional interference in human regulatory T cells

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Item Type:Article
Title:Novel non-coding FOXP3 transcript isoform associated to potential transcriptional interference in human regulatory T cells
Creators Name:Cases, M., Ritter, N., Rincon-Arevalo, H., Kroh, S., Adam, A., Kirchner, M., Moradian, H., Gossen, M., Dzamukova, M., Manukyan, A., Landthaler, M., Kressler, C., Hauser, A.E., Depledge, D.P., Polansky, J.K. and Chang, H.D.
Abstract:CD4+ regulatory T cells (T(REGS)) are critical for immune tolerance and the transcription factor Forkhead Box P3 (FOXP3) plays a crucial role in their differentiation and function. Recently, an alternative promoter has been reported for FOXP3, which is active only in T(REGS) and could have profound implications for the output of the locus, and therefore, for the functionality of these cells. By direct RNA sequencing we identified multiple novel FOXP3 transcriptional products, including one relatively abundant isoform with an extended 5’ UTR that we named ‘longFOXP3’. Western blotting, analysis of public mass spectrometry data, and transfection of in vitro transcribed RNA suggested that longFOXP3 is not coding. Furthermore, we show using two distinct RNA single-molecule fluorescence in situ hybridization technologies that transcription from the upstream promoter correlates with decreased levels of FOXP3 at the mRNA and protein levels. Together, we provide compelling evidence that the transcriptional output of the human FOXP3 locus is far more complex than that of the current annotation and warrants a more detailed analysis to identify coding and non-coding transcript isoforms. Furthermore, the alternative promoter may interfere with the activity of the canonical promoter, evoking intragenic transcriptional interference, and in this way, fine-tune the levels of FOXP3 in human T(REGS).
Keywords:FOXP3, T(REG), Alternative Promoter, Transcript Isoform, Transcriptional Interference
Source:RNA Biology
ISSN:1547-6286
Publisher:Taylor & Francis
Volume:22
Number:1
Page Range:1-20
Date:2 July 2025
Official Publication:https://doi.org/10.1080/15476286.2025.2502719
PubMed:View item in PubMed

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