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Citations to this article

Genetic dissection of SLE pathogenesis. Sle1 on murine chromosome 1 leads to a selective loss of tolerance to H2A/H2B/DNA subnucleosomes.
C Mohan, … , P Yang, E K Wakeland
C Mohan, … , P Yang, E K Wakeland
Published March 15, 1998
Citation Information: J Clin Invest. 1998;101(6):1362-1372. https://doi.org/10.1172/JCI728.
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Research Article Article has an altmetric score of 5

Genetic dissection of SLE pathogenesis. Sle1 on murine chromosome 1 leads to a selective loss of tolerance to H2A/H2B/DNA subnucleosomes.

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Abstract

One of the hallmarks of SLE is the loss of tolerance to chromatin. The genes and mechanisms that trigger this loss of tolerance remain unknown. Our genetic studies in the NZM2410 lupus strain have implicated genomic intervals on chromosomes 1 (Sle1), 4 (Sle2), and 7 (Sle3) as conferring strong lupus susceptibility. Interestingly, B6 mice that are congenic for Sle1 (B6.NZMc1) have elevated IgG antichromatin Abs. This study explores the antinuclear antibody fine specificities and underlying cellular defects in these mice. On the B6 background, Sle1 by itself is sufficient to generate a robust, spontaneous antichromatin Ab response, staining Hep-2 nuclei homogeneously, and reacting primarily with H2A/H2B/DNA subnucleosomes. This targeted immune response peaks at 7-9 mo of age, affects both sexes with equally high penetrance (> 75%), and interestingly, does not "spread" to other subnucleosomal chromatin components. Sle1 also leads to an expanded pool of histone-reactive T cells, which may have a role in driving the anti-H2A/H2B/DNA B cells. However, these mice do not exhibit any generalized immunological defects or quantitative aberrations in lymphocyte apoptosis. We hypothesize that Sle1 may lead to the presentation of chromatin in an immunogenic fashion, or directly impact tolerance of chromatin-specific B cells.

Authors

C Mohan, E Alas, L Morel, P Yang, E K Wakeland

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Year: 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 2006 2005 2004 2003 2002 2001 2000 1999 1998 1997 Total
Citations: 3 3 3 4 7 5 3 5 7 8 9 5 10 7 8 15 11 11 12 22 13 10 14 12 9 6 3 1 226
Citation information
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Citations to this article in year 2020 (7)

Title and authors Publication Year
T cells expressing the lupus susceptibility allele Pbx1 enhance autoimmunity and atherosclerosis in dyslipidemic mice
Wei Li, Ahmed Elshikha, Caleb Cornaby, Xiangyu Teng, Georges Abboud, Josephine Brown, Xueyang Zou, Leilani Zeumer-Spataro, Brian A Robusto, Seung-Chul Choi, Kristianna M Fredenburg, Amy Major, Laurence Morel
JCI Insight 2020
Complement Deficiencies Result in Surrogate Pathways of Complement Activation in Novel Polygenic Lupus-like Models of Kidney Injury
S Skopelja-Gardner, L Colonna, P Hermanson, X Sun, L Tanaka, J Tai, Y Nguyen, JM Snyder, CE Alpers, KL Hudkins, DJ Salant, YF Peng, KB Elkon
Journal of immunology (Baltimore, Md. : 1950) 2020
Kidney tissue hypoxia dictates T cell–mediated injury in murine lupus nephritis
PM Chen, PC Wilson, JA Shyer, M Veselits, HR Steach, C Cui, G Moeckel, MR Clark, J Craft
Science Translational Medicine 2020
Histone H2A-Reactive B Cells Are Functionally Anergic in Healthy Mice With Potential to Provide Humoral Protection Against HIV-1
A Agazio, J Cimons, KM Shotts, K Guo, ML Santiago, R Pelanda, RM Torres
Frontiers in immunology 2020
Chinese Society of Allergy and Chinese Society of Otorhinolaryngology-Head and Neck Surgery Guideline for Chronic Rhinosinusitis
Z Liu, J Chen, L Cheng, H Li, S Liu, H Lou, J Shi, Y Sun, D Wang, C Wang, X Wang, Y Wei, W Wen, P Yang, Q Yang, G Zhang, Y Zhang, C Zhao, D Zhu, L Zhu, F Chen, Y Dong, Q Fu, J Li, Y Li, C Liu, F Liu, M Lu, Y Meng, J Sha, W She, L Shi, K Wang, J Xue, L Yang, M Yin, L Zhang, M Zheng, B Zhou, L Zhang
Allergy, asthma & immunology research 2020
Estrogen Receptor Alpha Signaling Is Responsible for the Female Sex Bias in the Loss of Tolerance and Immune Cell Activation Induced by the Lupus Susceptibility Locus Sle1b
JH Graham, SD Yoachim, KA Gould
Frontiers in immunology 2020
Contribution of mouse models in our understanding of lupus
A Halkom, H Wu, Q Lu
International Reviews of Immunology 2020

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