Protein Kinase C Theta Modulates PCMT1 through hnRNPL to Regulate FOXP3 Stability in Regulatory T Cells

T cell receptor signaling, together with cytokine-induced signals, can differentially regulate RNA processing to influence T helper versus regulatory T cell fate. Protein kinase C family members have been shown to function in alternative splicing and RNA processing in various cell types. T cell-spec...

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Veröffentlicht in:Molecular therapy 2020-10, Vol.28 (10), p.2220-2236
Hauptverfasser: Ozay, E. Ilker, Shanthalingam, Sudarvili, Torres, Joe A., Osborne, Barbara A., Tew, Gregory N., Minter, Lisa M.
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Sprache:eng
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Zusammenfassung:T cell receptor signaling, together with cytokine-induced signals, can differentially regulate RNA processing to influence T helper versus regulatory T cell fate. Protein kinase C family members have been shown to function in alternative splicing and RNA processing in various cell types. T cell-specific protein kinase C theta, a molecular regulator of T cell receptor downstream signaling, has been shown to phosphorylate splicing factors and affect post-transcriptional control of T cell gene expression. In this study, we explored how using a synthetic cell-penetrating peptide mimic for intracellular anti-protein kinase C theta delivery fine-tunes differentiation of induced regulatory T cells through its differential effects on RNA processing. We identified protein kinase C theta signaling as a critical modulator of two key RNA regulatory factors, heterogeneous nuclear ribonucleoprotein L (hnRNPL) and protein-l-isoaspartate O-methyltransferase-1 (PCMT1), and loss of protein kinase C theta function initiated a “switch” in post-transcriptional organization in induced regulatory T cells. More interestingly, we discovered that protein-l-isoaspartate O- methyltransferase-1 acts as an instability factor in induced regulatory T cells, by methylating the forkhead box P3 (FOXP3) promoter. Targeting protein-l-isoaspartate O-methyltransferase-1 using a cell-penetrating antibody revealed an efficient means of modulating RNA processing to confer a stable regulatory T cell phenotype. [Display omitted] Using cell-penetrating peptide mimics to deliver polyclonal anti-pPKCθ antibodies into human CD4 T cells reveals that the T cell-specific kinase PKCθ regulates alternative splicing and RNA export of the methyltransferase PCMT1 in induced regulatory T cells and modulates FOXP3 TSDR methylation.
ISSN:1525-0016
1525-0024
DOI:10.1016/j.ymthe.2020.06.012