Literature DB >> 21575916

Interferon regulatory factors in human lupus pathogenesis.

Rafah Salloum1, Timothy B Niewold.   

Abstract

Systemic lupus erythematosus (SLE) is a severe multisystem autoimmune disease that results from both genetic predisposition and environmental factors. Many lines of investigation support interferon alpha (IFN-α) as a causal agent in human lupus, and high levels of serum IFN-α are a heritable risk factor for SLE. Interferon regulatory factors (IRFs) are a family of transcription factors involved in host defense, which can induce transcription of IFN-α and other immune response genes after activation. In SLE, circulating immune complexes that contain nucleic acid are prevalent. These complexes are recognized by endosomal Toll-like receptors, resulting in activation of downstream IRF proteins. Genetic variants in the IRF5 and IRF7 genes have been associated with SLE susceptibility, and these same variants are associated with increased serum IFN-α in SLE patients. The increase in serum IFN-α related to IRF5 and 7 genotypes is observed only in patients with particular antibody specificities. This suggests that chronic stimulation of the endosomal Toll-like receptors by autoantibody immune complexes is required for IRF SLE-risk variants to cause elevation of circulating IFN-α and subsequent risk of SLE. Recently, genetic variation in the IRF8 gene has been associated with SLE and multiple sclerosis, and studies support an impact of IRF8 genotype on the IFN-α pathway. In summary, the SLE-associated polymorphisms in the IRF family of proteins seem to be gain-of-function variants, and understanding the impact of these variants on the IFN-α pathway in vivo may guide therapeutic strategies directed at the Toll-like receptor/IRF/IFN-α pathway in SLE.
Copyright © 2011 Mosby, Inc. All rights reserved.

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Year:  2011        PMID: 21575916      PMCID: PMC3096827          DOI: 10.1016/j.trsl.2011.01.006

Source DB:  PubMed          Journal:  Transl Res        ISSN: 1878-1810            Impact factor:   7.012


  53 in total

Review 1.  Structure and function of IRF-7.

Authors:  Luwen Zhang; Joseph S Pagano
Journal:  J Interferon Cytokine Res       Date:  2002-01       Impact factor: 2.607

Review 2.  Nucleic acid sensing receptors in systemic lupus erythematosus: development of novel DNA- and/or RNA-like analogues for treating lupus.

Authors:  P Lenert
Journal:  Clin Exp Immunol       Date:  2010-05-07       Impact factor: 4.330

Review 3.  Important aspects of Toll-like receptors, ligands and their signaling pathways.

Authors:  Z L Chang
Journal:  Inflamm Res       Date:  2010-07-01       Impact factor: 4.575

4.  Network analysis of associations between serum interferon-α activity, autoantibodies, and clinical features in systemic lupus erythematosus.

Authors:  Corinna E Weckerle; Beverly S Franek; Jennifer A Kelly; Marissa Kumabe; Rachel A Mikolaitis; Stephanie L Green; Tammy O Utset; Meenakshi Jolly; Judith A James; John B Harley; Timothy B Niewold
Journal:  Arthritis Rheum       Date:  2011-04

5.  Virus-specific activation of a novel interferon regulatory factor, IRF-5, results in the induction of distinct interferon alpha genes.

Authors:  B J Barnes; P A Moore; P M Pitha
Journal:  J Biol Chem       Date:  2001-04-12       Impact factor: 5.157

6.  Exon 6 variants carried on systemic lupus erythematosus (SLE) risk haplotypes modulate IRF5 function.

Authors:  Feng Wen; Sonja M Ellingson; Chieko Kyogoku; Erik J Peterson; Patrick M Gaffney
Journal:  Autoimmunity       Date:  2010-08-09       Impact factor: 2.815

7.  Trait-stratified genome-wide association study identifies novel and diverse genetic associations with serologic and cytokine phenotypes in systemic lupus erythematosus.

Authors:  Silvia N Kariuki; Beverly S Franek; Akaash A Kumar; Jasmine Arrington; Rachel A Mikolaitis; Tammy O Utset; Meenakshi Jolly; Mary K Crow; Andrew D Skol; Timothy B Niewold
Journal:  Arthritis Res Ther       Date:  2010-07-26       Impact factor: 5.156

8.  Promoter variant of PIK3C3 is associated with autoimmunity against Ro and Sm epitopes in African-American lupus patients.

Authors:  Silvia N Kariuki; Beverly S Franek; Rachel A Mikolaitis; Tammy O Utset; Meenakshi Jolly; Andrew D Skol; Timothy B Niewold
Journal:  J Biomed Biotechnol       Date:  2010-07-04

Review 9.  The unexplained female predominance of systemic lupus erythematosus: clues from genetic and cytokine studies.

Authors:  Corinna E Weckerle; Timothy B Niewold
Journal:  Clin Rev Allergy Immunol       Date:  2011-02       Impact factor: 8.667

10.  A loss-of-function variant of the antiviral molecule MAVS is associated with a subset of systemic lupus patients.

Authors:  Julien Pothlichet; Timothy B Niewold; Damien Vitour; Brigitte Solhonne; Mary K Crow; Mustapha Si-Tahar
Journal:  EMBO Mol Med       Date:  2011-01-26       Impact factor: 12.137

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  47 in total

1.  Myeloid dendritic cells from B6.NZM Sle1/Sle2/Sle3 lupus-prone mice express an IFN signature that precedes disease onset.

Authors:  Uma Sriram; Linda Varghese; Heather L Bennett; Neelakshi R Jog; Debra K Shivers; Yue Ning; Edward M Behrens; Roberto Caricchio; Stefania Gallucci
Journal:  J Immunol       Date:  2012-06-01       Impact factor: 5.422

Review 2.  Interferons in autoimmune and inflammatory diseases: regulation and roles.

Authors:  Divaker Choubey; Kamal D Moudgil
Journal:  J Interferon Cytokine Res       Date:  2011-12       Impact factor: 2.607

3.  The autoimmune disease risk allele of UBE2L3 in African American patients with systemic lupus erythematosus: a recessive effect upon subphenotypes.

Authors:  Sandra Agik; Beverly S Franek; Akaash A Kumar; Marissa Kumabe; Tammy O Utset; Rachel A Mikolaitis; Meenakshi Jolly; Timothy B Niewold
Journal:  J Rheumatol       Date:  2011-11-01       Impact factor: 4.666

Review 4.  Regulation of T helper cell differentiation by interferon regulatory factor family members.

Authors:  Ruihua Zhang; Kang Chen; Liang Peng; Huabao Xiong
Journal:  Immunol Res       Date:  2012-12       Impact factor: 2.829

Review 5.  Genetic susceptibility to lupus: the biological basis of genetic risk found in B cell signaling pathways.

Authors:  Samuel E Vaughn; Leah C Kottyan; Melissa E Munroe; John B Harley
Journal:  J Leukoc Biol       Date:  2012-06-29       Impact factor: 4.962

Review 6.  Spontaneous activation of RNA-sensing pathways in autoimmune disease.

Authors:  Steve P Crampton; Silvia Bolland
Journal:  Curr Opin Immunol       Date:  2013-12       Impact factor: 7.486

7.  Defining biological subsets in systemic lupus erythematosus: progress toward personalized therapy.

Authors:  Nailú Angélica Sinicato; Mariana Postal; Simone Appenzeller; Timothy B Niewold
Journal:  Pharmaceut Med       Date:  2017-01-25

8.  Scavenging nucleic acid debris to combat autoimmunity and infectious disease.

Authors:  Eda K Holl; Kara L Shumansky; Luke B Borst; Angela D Burnette; Christopher J Sample; Elizabeth A Ramsburg; Bruce A Sullenger
Journal:  Proc Natl Acad Sci U S A       Date:  2016-08-15       Impact factor: 11.205

Review 9.  Interferon-inducible Ifi200-family genes as modifiers of lupus susceptibility.

Authors:  Divaker Choubey
Journal:  Immunol Lett       Date:  2012-07-24       Impact factor: 3.685

Review 10.  Fueling autoimmunity: type I interferon in autoimmune diseases.

Authors:  Jeremy Di Domizio; Wei Cao
Journal:  Expert Rev Clin Immunol       Date:  2013-03       Impact factor: 4.473

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