NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.

MHC class II (MHCII) genes are transactivated by the NOD-like receptor (NLR) family member CIITA, which is recruited to SXY enhancers of MHCII promoters via a DNA-binding "enhanceosome" complex. NLRC5, another NLR protein, was recently found to control transcription of MHC class I (MHCI) g...

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Main Authors: Kristina Ludigs, Queralt Seguín-Estévez, Sylvain Lemeille, Isabel Ferrero, Giorgia Rota, Sonia Chelbi, Chantal Mattmann, H Robson MacDonald, Walter Reith, Greta Guarda
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-03-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4374748?pdf=render
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spelling doaj-43e60c513221439798aebe7744bcb1a62020-11-25T00:02:54ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042015-03-01113e100508810.1371/journal.pgen.1005088NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.Kristina LudigsQueralt Seguín-EstévezSylvain LemeilleIsabel FerreroGiorgia RotaSonia ChelbiChantal MattmannH Robson MacDonaldWalter ReithGreta GuardaMHC class II (MHCII) genes are transactivated by the NOD-like receptor (NLR) family member CIITA, which is recruited to SXY enhancers of MHCII promoters via a DNA-binding "enhanceosome" complex. NLRC5, another NLR protein, was recently found to control transcription of MHC class I (MHCI) genes. However, detailed understanding of NLRC5's target gene specificity and mechanism of action remained lacking. We performed ChIP-sequencing experiments to gain comprehensive information on NLRC5-regulated genes. In addition to classical MHCI genes, we exclusively identified novel targets encoding non-classical MHCI molecules having important functions in immunity and tolerance. ChIP-sequencing performed with Rfx5(-/-) cells, which lack the pivotal enhanceosome factor RFX5, demonstrated its strict requirement for NLRC5 recruitment. Accordingly, Rfx5-knockout mice phenocopy Nlrc5 deficiency with respect to defective MHCI expression. Analysis of B cell lines lacking RFX5, RFXAP, or RFXANK further corroborated the importance of the enhanceosome for MHCI expression. Although recruited by common DNA-binding factors, CIITA and NLRC5 exhibit non-redundant functions, shown here using double-deficient Nlrc5(-/-)CIIta(-/-) mice. These paradoxical findings were resolved by using a "de novo" motif-discovery approach showing that the SXY consensus sequence occupied by NLRC5 in vivo diverges significantly from that occupied by CIITA. These sequence differences were sufficient to determine preferential occupation and transactivation by NLRC5 or CIITA, respectively, and the S box was found to be the essential feature conferring NLRC5 specificity. These results broaden our knowledge on the transcriptional activities of NLRC5 and CIITA, revealing their dependence on shared enhanceosome factors but their recruitment to distinct enhancer motifs in vivo. Furthermore, we demonstrated selectivity of NLRC5 for genes encoding MHCI or related proteins, rendering it an attractive target for therapeutic intervention. NLRC5 and CIITA thus emerge as paradigms for a novel class of transcriptional regulators dedicated for transactivating extremely few, phylogenetically related genes.http://europepmc.org/articles/PMC4374748?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kristina Ludigs
Queralt Seguín-Estévez
Sylvain Lemeille
Isabel Ferrero
Giorgia Rota
Sonia Chelbi
Chantal Mattmann
H Robson MacDonald
Walter Reith
Greta Guarda
spellingShingle Kristina Ludigs
Queralt Seguín-Estévez
Sylvain Lemeille
Isabel Ferrero
Giorgia Rota
Sonia Chelbi
Chantal Mattmann
H Robson MacDonald
Walter Reith
Greta Guarda
NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.
PLoS Genetics
author_facet Kristina Ludigs
Queralt Seguín-Estévez
Sylvain Lemeille
Isabel Ferrero
Giorgia Rota
Sonia Chelbi
Chantal Mattmann
H Robson MacDonald
Walter Reith
Greta Guarda
author_sort Kristina Ludigs
title NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.
title_short NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.
title_full NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.
title_fullStr NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.
title_full_unstemmed NLRC5 exclusively transactivates MHC class I and related genes through a distinctive SXY module.
title_sort nlrc5 exclusively transactivates mhc class i and related genes through a distinctive sxy module.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2015-03-01
description MHC class II (MHCII) genes are transactivated by the NOD-like receptor (NLR) family member CIITA, which is recruited to SXY enhancers of MHCII promoters via a DNA-binding "enhanceosome" complex. NLRC5, another NLR protein, was recently found to control transcription of MHC class I (MHCI) genes. However, detailed understanding of NLRC5's target gene specificity and mechanism of action remained lacking. We performed ChIP-sequencing experiments to gain comprehensive information on NLRC5-regulated genes. In addition to classical MHCI genes, we exclusively identified novel targets encoding non-classical MHCI molecules having important functions in immunity and tolerance. ChIP-sequencing performed with Rfx5(-/-) cells, which lack the pivotal enhanceosome factor RFX5, demonstrated its strict requirement for NLRC5 recruitment. Accordingly, Rfx5-knockout mice phenocopy Nlrc5 deficiency with respect to defective MHCI expression. Analysis of B cell lines lacking RFX5, RFXAP, or RFXANK further corroborated the importance of the enhanceosome for MHCI expression. Although recruited by common DNA-binding factors, CIITA and NLRC5 exhibit non-redundant functions, shown here using double-deficient Nlrc5(-/-)CIIta(-/-) mice. These paradoxical findings were resolved by using a "de novo" motif-discovery approach showing that the SXY consensus sequence occupied by NLRC5 in vivo diverges significantly from that occupied by CIITA. These sequence differences were sufficient to determine preferential occupation and transactivation by NLRC5 or CIITA, respectively, and the S box was found to be the essential feature conferring NLRC5 specificity. These results broaden our knowledge on the transcriptional activities of NLRC5 and CIITA, revealing their dependence on shared enhanceosome factors but their recruitment to distinct enhancer motifs in vivo. Furthermore, we demonstrated selectivity of NLRC5 for genes encoding MHCI or related proteins, rendering it an attractive target for therapeutic intervention. NLRC5 and CIITA thus emerge as paradigms for a novel class of transcriptional regulators dedicated for transactivating extremely few, phylogenetically related genes.
url http://europepmc.org/articles/PMC4374748?pdf=render
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