Cargando…

Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy

OBJECTIVES: We investigated whether polymorphisms (SNPs) in the promoter region of TNFA, or in the autoinflammatory TNFRSF1A and MEFV genes, concur with HLA-B27 in enhancing the risk of Spondyloarthritis (SpA) and/or in predicting the response to anti-TNFα treatment. METHODS: 373 controls and 137 Sp...

Descripción completa

Detalles Bibliográficos
Autores principales: Aita, Ada, Basso, Daniela, Ramonda, Roberta, Moz, Stefania, Lorenzin, Mariagrazia, Navaglia, Filippo, Zambon, Carlo-Federico, Padoan, Andrea, Plebani, Mario, Punzi, Leonardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5868803/
https://www.ncbi.nlm.nih.gov/pubmed/29579081
http://dx.doi.org/10.1371/journal.pone.0194693
_version_ 1783309186991390720
author Aita, Ada
Basso, Daniela
Ramonda, Roberta
Moz, Stefania
Lorenzin, Mariagrazia
Navaglia, Filippo
Zambon, Carlo-Federico
Padoan, Andrea
Plebani, Mario
Punzi, Leonardo
author_facet Aita, Ada
Basso, Daniela
Ramonda, Roberta
Moz, Stefania
Lorenzin, Mariagrazia
Navaglia, Filippo
Zambon, Carlo-Federico
Padoan, Andrea
Plebani, Mario
Punzi, Leonardo
author_sort Aita, Ada
collection PubMed
description OBJECTIVES: We investigated whether polymorphisms (SNPs) in the promoter region of TNFA, or in the autoinflammatory TNFRSF1A and MEFV genes, concur with HLA-B27 in enhancing the risk of Spondyloarthritis (SpA) and/or in predicting the response to anti-TNFα treatment. METHODS: 373 controls and 137 SpA (82 with Psoriatic Arthritis-PsA and 55 with Ankylosing Spondylitis- AS; 98/137 under TNFα inhibitor therapy) from the Veneto Region (Italy) were studied. TNFA polymorphisms (-1031T>C;-857C>T;-376G>A;-308G>A;-238G>A) and HLA-B27 were assayed by RT-PCR. Direct sequencing of MEFV (exons 2,3,5 and 10) and TNFRSF1A (exons 2,3,4 and 6) genes were performed. RESULTS: HLA-B27 was associated with AS (χ(2) = 120.1; p = 0.000). Only the TNFA -1031T>C was singly associated with SpA, and the haplotype C/G, resulting from -1031T>C/-308G>A combination, was significantly associated with a reduced risk of SpA (OR: 0.67, CI: 0.46–0.97; p = 0.035). Two SNPs were identified in TNFRSF1A, the R92Q (Minor allele frequency-MAF = 0.034) and c.625+10A>G (MAF = 0.479). None of them was associated with SpA (p>0.05). The TNFRSF1A c.625+10 G allele was associated with late response to anti-TNFα therapy (p = 0.031). Twenty-one SNPs were identified in MEFV gene, 10 with a known potential functional significance. Variant alleles were extremely rare in our population (MAF<0.025) except for R202Q (MAF = 0.27). None was associated with SpA diagnosis (p>0.05). CONCLUSION: TNFRSF1A and MEFV gene SNPs are not associated with SpA in the North-East of Italy. AS risk appears to depend not only on HLA-B27, but also on the protective TNFA haplotype -1031C/-308G. The TNFRSF1A c.625+10A>G impacts on the response to anti-TNFα therapy.
format Online
Article
Text
id pubmed-5868803
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-58688032018-04-06 Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy Aita, Ada Basso, Daniela Ramonda, Roberta Moz, Stefania Lorenzin, Mariagrazia Navaglia, Filippo Zambon, Carlo-Federico Padoan, Andrea Plebani, Mario Punzi, Leonardo PLoS One Research Article OBJECTIVES: We investigated whether polymorphisms (SNPs) in the promoter region of TNFA, or in the autoinflammatory TNFRSF1A and MEFV genes, concur with HLA-B27 in enhancing the risk of Spondyloarthritis (SpA) and/or in predicting the response to anti-TNFα treatment. METHODS: 373 controls and 137 SpA (82 with Psoriatic Arthritis-PsA and 55 with Ankylosing Spondylitis- AS; 98/137 under TNFα inhibitor therapy) from the Veneto Region (Italy) were studied. TNFA polymorphisms (-1031T>C;-857C>T;-376G>A;-308G>A;-238G>A) and HLA-B27 were assayed by RT-PCR. Direct sequencing of MEFV (exons 2,3,5 and 10) and TNFRSF1A (exons 2,3,4 and 6) genes were performed. RESULTS: HLA-B27 was associated with AS (χ(2) = 120.1; p = 0.000). Only the TNFA -1031T>C was singly associated with SpA, and the haplotype C/G, resulting from -1031T>C/-308G>A combination, was significantly associated with a reduced risk of SpA (OR: 0.67, CI: 0.46–0.97; p = 0.035). Two SNPs were identified in TNFRSF1A, the R92Q (Minor allele frequency-MAF = 0.034) and c.625+10A>G (MAF = 0.479). None of them was associated with SpA (p>0.05). The TNFRSF1A c.625+10 G allele was associated with late response to anti-TNFα therapy (p = 0.031). Twenty-one SNPs were identified in MEFV gene, 10 with a known potential functional significance. Variant alleles were extremely rare in our population (MAF<0.025) except for R202Q (MAF = 0.27). None was associated with SpA diagnosis (p>0.05). CONCLUSION: TNFRSF1A and MEFV gene SNPs are not associated with SpA in the North-East of Italy. AS risk appears to depend not only on HLA-B27, but also on the protective TNFA haplotype -1031C/-308G. The TNFRSF1A c.625+10A>G impacts on the response to anti-TNFα therapy. Public Library of Science 2018-03-26 /pmc/articles/PMC5868803/ /pubmed/29579081 http://dx.doi.org/10.1371/journal.pone.0194693 Text en © 2018 Aita et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Aita, Ada
Basso, Daniela
Ramonda, Roberta
Moz, Stefania
Lorenzin, Mariagrazia
Navaglia, Filippo
Zambon, Carlo-Federico
Padoan, Andrea
Plebani, Mario
Punzi, Leonardo
Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy
title Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy
title_full Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy
title_fullStr Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy
title_full_unstemmed Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy
title_short Genetics in TNF-TNFR pathway: A complex network causing spondyloarthritis and conditioning response to anti-TNFα therapy
title_sort genetics in tnf-tnfr pathway: a complex network causing spondyloarthritis and conditioning response to anti-tnfα therapy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5868803/
https://www.ncbi.nlm.nih.gov/pubmed/29579081
http://dx.doi.org/10.1371/journal.pone.0194693
work_keys_str_mv AT aitaada geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT bassodaniela geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT ramondaroberta geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT mozstefania geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT lorenzinmariagrazia geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT navagliafilippo geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT zamboncarlofederico geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT padoanandrea geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT plebanimario geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy
AT punzileonardo geneticsintnftnfrpathwayacomplexnetworkcausingspondyloarthritisandconditioningresponsetoantitnfatherapy