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Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB?

We recently provided the first description of a nuclear mechanism used by Protein Kinase C-theta (PKC-θ) to mediate T cell gene expression. In this mode, PKC-θ tethers to chromatin to form an active nuclear complex by interacting with proteins including RNA polymerase II, the histone kinase MSK-1, t...

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Autores principales: Sutcliffe, Elissa L., Li, Jasmine, Zafar, Anjum, Hardy, Kristine, Ghildyal, Reena, McCuaig, Robert, Norris, Nicole C., Lim, Pek Siew, Milburn, Peter J., Casarotto, Marco G., Denyer, Gareth, Rao, Sudha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3428636/
https://www.ncbi.nlm.nih.gov/pubmed/22969762
http://dx.doi.org/10.3389/fimmu.2012.00260
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author Sutcliffe, Elissa L.
Li, Jasmine
Zafar, Anjum
Hardy, Kristine
Ghildyal, Reena
McCuaig, Robert
Norris, Nicole C.
Lim, Pek Siew
Milburn, Peter J.
Casarotto, Marco G.
Denyer, Gareth
Rao, Sudha
author_facet Sutcliffe, Elissa L.
Li, Jasmine
Zafar, Anjum
Hardy, Kristine
Ghildyal, Reena
McCuaig, Robert
Norris, Nicole C.
Lim, Pek Siew
Milburn, Peter J.
Casarotto, Marco G.
Denyer, Gareth
Rao, Sudha
author_sort Sutcliffe, Elissa L.
collection PubMed
description We recently provided the first description of a nuclear mechanism used by Protein Kinase C-theta (PKC-θ) to mediate T cell gene expression. In this mode, PKC-θ tethers to chromatin to form an active nuclear complex by interacting with proteins including RNA polymerase II, the histone kinase MSK-1, the demethylase LSD1, and the adaptor molecule 14-3-3ζ at regulatory regions of inducible immune response genes. Moreover, our genome-wide analysis identified many novel PKC-θ target genes and microRNAs implicated in T cell development, differentiation, apoptosis, and proliferation. We have expanded our ChIP-on-chip analysis and have now identified a transcription factor motif containing NF-κB binding sites that may facilitate recruitment of PKC-θ to chromatin at coding genes. Furthermore, NF-κB association with chromatin appears to be a prerequisite for the assembly of the PKC-θ active complex. In contrast, a distinct NF-κB-containing module appears to operate at PKC-θ targeted microRNA genes, and here NF-κB negatively regulates microRNA gene transcription. Our efforts are also focusing on distinguishing between the nuclear and cytoplasmic functions of PKCs to ascertain how these kinases may synergize their roles as both cytoplasmic signaling proteins and their functions on the chromatin template, together enabling rapid induction of eukaryotic genes. We have identified an alternative sequence within PKC-θ that appears to be important for nuclear translocation of this kinase. Understanding the molecular mechanisms used by signal transduction kinases to elicit specific and distinct transcriptional programs in T cells will enable scientists to refine current therapeutic strategies for autoimmune diseases and cancer.
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spelling pubmed-34286362012-09-11 Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB? Sutcliffe, Elissa L. Li, Jasmine Zafar, Anjum Hardy, Kristine Ghildyal, Reena McCuaig, Robert Norris, Nicole C. Lim, Pek Siew Milburn, Peter J. Casarotto, Marco G. Denyer, Gareth Rao, Sudha Front Immunol Immunology We recently provided the first description of a nuclear mechanism used by Protein Kinase C-theta (PKC-θ) to mediate T cell gene expression. In this mode, PKC-θ tethers to chromatin to form an active nuclear complex by interacting with proteins including RNA polymerase II, the histone kinase MSK-1, the demethylase LSD1, and the adaptor molecule 14-3-3ζ at regulatory regions of inducible immune response genes. Moreover, our genome-wide analysis identified many novel PKC-θ target genes and microRNAs implicated in T cell development, differentiation, apoptosis, and proliferation. We have expanded our ChIP-on-chip analysis and have now identified a transcription factor motif containing NF-κB binding sites that may facilitate recruitment of PKC-θ to chromatin at coding genes. Furthermore, NF-κB association with chromatin appears to be a prerequisite for the assembly of the PKC-θ active complex. In contrast, a distinct NF-κB-containing module appears to operate at PKC-θ targeted microRNA genes, and here NF-κB negatively regulates microRNA gene transcription. Our efforts are also focusing on distinguishing between the nuclear and cytoplasmic functions of PKCs to ascertain how these kinases may synergize their roles as both cytoplasmic signaling proteins and their functions on the chromatin template, together enabling rapid induction of eukaryotic genes. We have identified an alternative sequence within PKC-θ that appears to be important for nuclear translocation of this kinase. Understanding the molecular mechanisms used by signal transduction kinases to elicit specific and distinct transcriptional programs in T cells will enable scientists to refine current therapeutic strategies for autoimmune diseases and cancer. Frontiers Research Foundation 2012-08-28 /pmc/articles/PMC3428636/ /pubmed/22969762 http://dx.doi.org/10.3389/fimmu.2012.00260 Text en Copyright © 2012 Sutcliffe, Li, Zafar, Hardy, Ghildyal, McCuaig, Norris, Lim, Milburn, Casarotto, Denyer and Rao. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and subject to any copyright notices concerning any third-party graphics etc.
spellingShingle Immunology
Sutcliffe, Elissa L.
Li, Jasmine
Zafar, Anjum
Hardy, Kristine
Ghildyal, Reena
McCuaig, Robert
Norris, Nicole C.
Lim, Pek Siew
Milburn, Peter J.
Casarotto, Marco G.
Denyer, Gareth
Rao, Sudha
Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB?
title Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB?
title_full Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB?
title_fullStr Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB?
title_full_unstemmed Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB?
title_short Chromatinized Protein Kinase C-θ: Can It Escape the Clutches of NF-κB?
title_sort chromatinized protein kinase c-θ: can it escape the clutches of nf-κb?
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3428636/
https://www.ncbi.nlm.nih.gov/pubmed/22969762
http://dx.doi.org/10.3389/fimmu.2012.00260
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