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Published in: Rheumatology International 5/2018

01-05-2018 | Genes and Disease

Multigene sequencing reveals heterogeneity of NLRP12-related autoinflammatory disorders

Authors: Mikhail M. Kostik, Evgeny N. Suspitsin, Marina N. Guseva, Anastasia S. Levina, Anastasia Y. Kazantseva, Anna P. Sokolenko, Evgeny N. Imyanitov

Published in: Rheumatology International | Issue 5/2018

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Abstract

NLRP12-related autoinflammatory disease (NLRP12-AID) is an exceptionally rare autosomal dominant disorder caused by germline mutations in NLRP12 gene. Very few patients with NLRP12-AD have been identified worldwide; therefore, there is a scarcity of data on phenotypic presentation of this syndrome. Here we provide evidence that NLRP12-AID may have clinical manifestations characteristic for primary immune deficiencies (PID). 246 children with periodic fever (PF) of unknown origin were subjects to the next generation sequencing (NGS) analysis; 213 of these patients had signs of primary immunodeficiency (PID) manifested by recurrent infections, while 33 kids had isolated PF. The NGS panel was composed of 302 genes implicated in PID and/or AID. 15 patients (9 girls and 6 boys) with NLRP12-AID were identified. Median age of first AID-related fever episode was 12 months, ranging from 2 months to 13 years. Main clinical features of NLRP12-related AID were periodic fever (100%), abdominal pain and diarrhea (47%), arthralgia (20%), headache (20%) and failure to thrive (33%). Nine patients demonstrated increased susceptibility to infection and two children suffered from Crohn’s disease. Administration of short courses of NSAID or corticosteroids resulted in resolution of the disease flare. In one severe case, canakinumab (anti-interleukin-1β antibody) was successfully used. Significant number of patients with genetically assigned diagnosis of NLPR12-AID has clinical features which close resemble primary immune deficiency. This phenotypic overlap may result in underdiagnosis of NLPR12-AID among patients with PID.
Literature
1.
go back to reference Jéru I, Duquesnoy P, Fernandes-Alnemri T et al (2008) Mutations in NALP12 cause hereditary periodic fever syndromes. Proc Natl Acad Sci USA 105:1614–1619CrossRefPubMedPubMedCentral Jéru I, Duquesnoy P, Fernandes-Alnemri T et al (2008) Mutations in NALP12 cause hereditary periodic fever syndromes. Proc Natl Acad Sci USA 105:1614–1619CrossRefPubMedPubMedCentral
2.
go back to reference Shen M, Tang L, Shi X et al (2017) NLRP12 autoinflammatory disease: a Chinese case series and literature review. Clin Rheumatol 36(7):1661–1667CrossRefPubMed Shen M, Tang L, Shi X et al (2017) NLRP12 autoinflammatory disease: a Chinese case series and literature review. Clin Rheumatol 36(7):1661–1667CrossRefPubMed
3.
go back to reference Jеru I, Le Borgne G, Cochet E et al (2011) Identification and functional consequences of a recurrent NLRP12 missense mutation in periodic fever syndromes. Arthritis Rheum 63(5):1459–1464CrossRef Jеru I, Le Borgne G, Cochet E et al (2011) Identification and functional consequences of a recurrent NLRP12 missense mutation in periodic fever syndromes. Arthritis Rheum 63(5):1459–1464CrossRef
4.
go back to reference Lich JD, Williams KL, Moore CB et al (2007) Monarch-1 suppresses non-canonical NF-kappaB activation and p52-dependent chemokine expression in monocytes. J Immunol 178(3):1256–1260CrossRefPubMed Lich JD, Williams KL, Moore CB et al (2007) Monarch-1 suppresses non-canonical NF-kappaB activation and p52-dependent chemokine expression in monocytes. J Immunol 178(3):1256–1260CrossRefPubMed
5.
go back to reference Borghini S, Tassi S, Chiesa S et al (2011) Clinical presentation and pathogenesis of cold-induced autoinflammatory disease in a family with recurrence of an NLRP12 mutation. Arthritis Rheum 63(3):830–839CrossRefPubMedPubMedCentral Borghini S, Tassi S, Chiesa S et al (2011) Clinical presentation and pathogenesis of cold-induced autoinflammatory disease in a family with recurrence of an NLRP12 mutation. Arthritis Rheum 63(3):830–839CrossRefPubMedPubMedCentral
6.
go back to reference Xia X, Dai C, Zhu X et al (2016) Identification of a novel NLRP12 nonsense mutation (Trp408X) in the extremely rare disease FCAS by exome sequencing. PLoS One 11(6):e0156981CrossRefPubMedPubMedCentral Xia X, Dai C, Zhu X et al (2016) Identification of a novel NLRP12 nonsense mutation (Trp408X) in the extremely rare disease FCAS by exome sequencing. PLoS One 11(6):e0156981CrossRefPubMedPubMedCentral
9.
go back to reference Fang M, Abolhassani H, Lim CK et al (2016) Next generation sequencing data analysis in primary immunodeficiency disorders—future directions. J Clin Immunol 36(Suppl 1):68–75CrossRefPubMed Fang M, Abolhassani H, Lim CK et al (2016) Next generation sequencing data analysis in primary immunodeficiency disorders—future directions. J Clin Immunol 36(Suppl 1):68–75CrossRefPubMed
10.
go back to reference Subbarayan A, Colarusso G, Hughes SM et al (2011) Clinical features that identify children with primary immunodeficiency diseases. Pediatrics 127(5):810–816CrossRefPubMed Subbarayan A, Colarusso G, Hughes SM et al (2011) Clinical features that identify children with primary immunodeficiency diseases. Pediatrics 127(5):810–816CrossRefPubMed
15.
go back to reference Vitale A, Rigante D, Maggio MC et al (2013) Rare NLRP12 variants associated with the NLRP12-autoinflammatory disorder phenotype: an Italian case series. Clin Exp Rheumatol 31:155–156PubMed Vitale A, Rigante D, Maggio MC et al (2013) Rare NLRP12 variants associated with the NLRP12-autoinflammatory disorder phenotype: an Italian case series. Clin Exp Rheumatol 31:155–156PubMed
16.
go back to reference De Pieri C, Vuch J, Athanasakis E et al (2014) F402L variant in NLRP12 in subjects with undiagnosed periodic fevers and in healthy controls. Clin Exp Rheumatol 32:993–994PubMed De Pieri C, Vuch J, Athanasakis E et al (2014) F402L variant in NLRP12 in subjects with undiagnosed periodic fevers and in healthy controls. Clin Exp Rheumatol 32:993–994PubMed
17.
19.
go back to reference Vitale A, Rigante D, Lucherini OM, Caso F, Cantarini L (2014) The role of the F402L allele in the NLRP12-autoinflammatory disorder. Reply to: F402L variant in NLRP12 in subjects with undiagnosed periodic fevers and in healthy controls, De Pieri et al. Clin Exp Rheumatol 32(6):994PubMed Vitale A, Rigante D, Lucherini OM, Caso F, Cantarini L (2014) The role of the F402L allele in the NLRP12-autoinflammatory disorder. Reply to: F402L variant in NLRP12 in subjects with undiagnosed periodic fevers and in healthy controls, De Pieri et al. Clin Exp Rheumatol 32(6):994PubMed
20.
go back to reference Allen IC, Wilson JE, Schneider M et al (2012) NLRP12 suppresses colon inflammation and tumorigenesis through the negative regulation of noncanonical NF-κB signaling. Immunity 36(5):742–754CrossRefPubMedPubMedCentral Allen IC, Wilson JE, Schneider M et al (2012) NLRP12 suppresses colon inflammation and tumorigenesis through the negative regulation of noncanonical NF-κB signaling. Immunity 36(5):742–754CrossRefPubMedPubMedCentral
21.
go back to reference Shi F, Yang Y, Kouadir M et al (2016) Inflammasome-independent role of NLRP12 in suppressing colonic inflammation regulated by Blimp-1. Oncotarget 7(21):30575–30584PubMedPubMedCentral Shi F, Yang Y, Kouadir M et al (2016) Inflammasome-independent role of NLRP12 in suppressing colonic inflammation regulated by Blimp-1. Oncotarget 7(21):30575–30584PubMedPubMedCentral
22.
go back to reference Chen L, Wilson JE, Koenigsknecht MJ et al (2017) NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth. Nat Immunol 18(5):541–551CrossRefPubMedPubMedCentral Chen L, Wilson JE, Koenigsknecht MJ et al (2017) NLRP12 attenuates colon inflammation by maintaining colonic microbial diversity and promoting protective commensal bacterial growth. Nat Immunol 18(5):541–551CrossRefPubMedPubMedCentral
23.
go back to reference Hugot JP, Chamaillard M, Zouali H et al (2001) Association of NOD2 leucine-rich repeat variants with susceptibility to Crohn’s disease. Nature 411:599–603CrossRefPubMed Hugot JP, Chamaillard M, Zouali H et al (2001) Association of NOD2 leucine-rich repeat variants with susceptibility to Crohn’s disease. Nature 411:599–603CrossRefPubMed
24.
go back to reference Bader-Meunier B, Florkin B, Sibilia J et al (2011) Mevalonate kinase deficiency: a survey of 50 patients. Pediatrics 128:e152-9CrossRefPubMed Bader-Meunier B, Florkin B, Sibilia J et al (2011) Mevalonate kinase deficiency: a survey of 50 patients. Pediatrics 128:e152-9CrossRefPubMed
25.
go back to reference Allen IC, McElvania-TeKippe E, Wilson JE et al (2013) Characterization of NLRP12 during the in vivo host immune response to Klebsiella pneumoniae and Mycobacterium tuberculosis. PLoS One 8(4):e60842CrossRefPubMedPubMedCentral Allen IC, McElvania-TeKippe E, Wilson JE et al (2013) Characterization of NLRP12 during the in vivo host immune response to Klebsiella pneumoniae and Mycobacterium tuberculosis. PLoS One 8(4):e60842CrossRefPubMedPubMedCentral
26.
go back to reference Williams KL, Lich JD, Duncan JA et al (2005) The CATERPILLER protein monarch-1 is an antagonist of toll-like receptor-, tumor necrosis factor alpha-, and Mycobacterium tuberculosis-induced pro-inflammatory signals. J Biol Chem 280(48):39914–39924CrossRefPubMedPubMedCentral Williams KL, Lich JD, Duncan JA et al (2005) The CATERPILLER protein monarch-1 is an antagonist of toll-like receptor-, tumor necrosis factor alpha-, and Mycobacterium tuberculosis-induced pro-inflammatory signals. J Biol Chem 280(48):39914–39924CrossRefPubMedPubMedCentral
27.
go back to reference Silveira TN, Gomes MT, Oliveira LS et al (2017) NLRP12 negatively regulates proinflammatory cytokine production and host defense against Brucella abortus. Eur J Immunol 47(1):51–59CrossRefPubMed Silveira TN, Gomes MT, Oliveira LS et al (2017) NLRP12 negatively regulates proinflammatory cytokine production and host defense against Brucella abortus. Eur J Immunol 47(1):51–59CrossRefPubMed
28.
go back to reference Zaki MH, Man SM, Vogel P et al (2014) Salmonella exploits NLRP12-dependent innate immune signaling to suppress host defenses during infection. Proc Natl Acad Sci USA 111(1):385–90CrossRefPubMed Zaki MH, Man SM, Vogel P et al (2014) Salmonella exploits NLRP12-dependent innate immune signaling to suppress host defenses during infection. Proc Natl Acad Sci USA 111(1):385–90CrossRefPubMed
29.
go back to reference Rusmini M, Federici S, Caroli F et al (2016) Next-generation sequencing and its initial applications for molecular diagnosis of systemic auto-inflammatory diseases. Ann Rheum Dis 75(8):1550–1557CrossRefPubMed Rusmini M, Federici S, Caroli F et al (2016) Next-generation sequencing and its initial applications for molecular diagnosis of systemic auto-inflammatory diseases. Ann Rheum Dis 75(8):1550–1557CrossRefPubMed
31.
go back to reference de Jesus AA, Goldbach-Mansky R. Genetically defined autoinflammatory diseases. Oral Dis 2016 Oct;22(7):591–604 de Jesus AA, Goldbach-Mansky R. Genetically defined autoinflammatory diseases. Oral Dis 2016 Oct;22(7):591–604
Metadata
Title
Multigene sequencing reveals heterogeneity of NLRP12-related autoinflammatory disorders
Authors
Mikhail M. Kostik
Evgeny N. Suspitsin
Marina N. Guseva
Anastasia S. Levina
Anastasia Y. Kazantseva
Anna P. Sokolenko
Evgeny N. Imyanitov
Publication date
01-05-2018
Publisher
Springer Berlin Heidelberg
Published in
Rheumatology International / Issue 5/2018
Print ISSN: 0172-8172
Electronic ISSN: 1437-160X
DOI
https://doi.org/10.1007/s00296-018-4002-8

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