| Literature DB >> 34051843 |
Christian Lood1, Tomas Mustelin2, Kennedy C Ukadike1, Kathryn Ni1, Xiaoxing Wang1, Martin S Taylor3, John LaCava4,5, Lauren M Pachman6, Mary Eckert7, Anne Stevens1,8,9.
Abstract
BACKGROUND: Most patients with systemic lupus erythematosus (SLE) have IgG autoantibodies against the RNA-binding p40 (ORF1p) protein encoded by the L1 retroelement. This study tested if these autoantibodies are also present in children with pediatric SLE (pSLE) and if the p40 protein itself could be detected in immune cells.Entities:
Keywords: Autoantibodies; Long interspersed nuclear element; Neutrophils; Pediatric lupus erythematosus; Retrotransposon
Mesh:
Substances:
Year: 2021 PMID: 34051843 PMCID: PMC8164314 DOI: 10.1186/s13075-021-02538-3
Source DB: PubMed Journal: Arthritis Res Ther ISSN: 1478-6354 Impact factor: 5.156
pSLE patients, JIA patients, and healthy controls
| Age | 14.7 ± 2.9 | 14.9 ± 2.6 |
| Laboratory measures: | ||
| C3 | 77.3 ± 34.1 | 99.9 ± 20.0 |
| C4 | 9.1 ± 7.8 | 16.2 ± 8.1 |
| ESR | 39.1 ± 33.6 | 16.1 ± 14.2 |
| ANA | 29 | 29 |
| Anti-dsDNA pos. | 20 | 15 |
| Disease activity and ACR criteria: | ||
| SLEDAI | 10.6 ± 4.8 | 2.4 ± 1.8 |
| SLEDAI = 0 | 1 | 9 |
| Arthritis | 23 | |
| Oral ulcers | 13 | |
| Rash | ||
| Nephritis | 12 | |
| Pleuritis/pericarditis | 9 | |
| CNS symptoms | 1 | |
| Photosensitivity | 7 | |
| Current treatment: | ||
| None | 10 | 3 |
| Hydroxychloroquine | 16 | 24 |
| Steroid | 16 | 22 |
| Other DMARD | 13 | 19 |
| Biologic only | 1 | 1 |
| Age | 13.9 ± 2.2 | 12.3 ± 4.4 |
| JIA subtype: | ||
| Persistent oligoarticular | 7 | |
| Extended oligoarticular | 6 | |
| Polyarticular RF− | 17 | |
| Polyarticular RF+ | 2 | |
| Active disease | 24 | na |
| Active joints | 3.3 ± 3.6 | na |
| Laboratory measures: | ||
| RF positive | 2 | nd |
| ACPA positive | 2 | nd |
| ESR | 11.2 ± 9.5 | nd |
| CRP | 0.9 ± 0.9 | nd |
| Current treatment: | ||
| None or NSAID only | 7 | na |
| Methotrexate only | 8 | na |
| Other DMARD only | 3 | na |
| Biologic only | 6 | na |
| DMARD + biologic | 8 | na |
Fig. 1Plasma from pediatric SLE patients contain IgG autoantibodies reactive with L1 p40 protein. A Quantitation by ELISA of anti-p40 IgG in the plasma of healthy control children (HC; n = 37) or patients with juvenile idiopathic arthritis (JIA; n = 32) or pediatric SLE patients before treatment (active, aSLE; n = 30) or the same patients after treatment (inactive, iSLE; n = 30). B Comparison of anti-p40 IgG reactivity in each pSLE patient before and after treatment. C Quantitation of anti-p40 IgA in the plasma of HC children and pSLE patients before or after treatment. D Comparison of anti-p40 IgA reactivity in each pSLE patient before and after treatment
Fig. 2Correlations of autoantibodies against L1 p40 with markers of disease activity. A Correlation between anti-p40 autoantibodies and SLEDAI in 29 of the 30 pediatric SLE patients with active disease before treatment. B Correlation with erythrocyte sedimentation rate (ESR) in 29 of the 30 pediatric SLE patients. C Inverse correlation with complement C3 levels in 29 of the 30 pediatric SLE patients. D Inverse correlation with complement C4 levels in 28 of the 30 pediatric SLE patients. E Correlation between anti-p40 autoantibodies and anti-dsDNA autoantibody levels in 20 of the 30 pediatric SLE patients with active disease before treatment. Statistical significance by Mann-Whitney U test and correlation by Spearman’s correlation test
Fig. 3Presence of p40 protein in a subset of immune cells. A Summary of flow cytometry data in pSLE patients. B Summary of flow cytometry data in adult SLE patients. C Summary of flow cytometry data in healthy controls (HC). D Scatter plot of percent p40-positive CD66b+ cells in the PMN fraction versus SLEDAI at the time of blood draw in adult SLE patients. E Scatter plot of percent p40-positive CD66b+ cells in the PBMC fraction versus SLEDAI at the time of blood draw in adult SLE patients. F Relative expression of CD66b in neutrophils expressing p40 (p40+) compared to those without detectable p40 (p40−). G Anti-p40 mAb immunoblot of PBMC and PMN lysates from SLE and HC, as indicated. Identical cell equivalents of each (2.5 × 106) were loaded
Fig. 4Markers of neutrophil death in pSLE patients and healthy controls. A Levels of MPO-DNA complexes in healthy controls (HC) and pediatric lupus patients with inactive (iSLE) and active (aSLE) disease. B Levels of NE-DNA complexes in the same patient groups. C Levels of calprotectin (S100A8/A9) in the same patient groups. D Correlation between MPO-DNA and NE-DNA complexes in patients with active disease. Statistical significance by Mann-Whitney U test and Wilcoxon, and correlation by Spearman’s correlation test
Fig. 5Correlations between IgG anti-p40 autoantibodies and markers of neutrophil death in pSLE patients with active disease and healthy controls. A Correlation between levels of MPO-DNA complexes and anti-p40 IgG antibodies in active pSLE patients. B Correlation between levels of S100A8/A9 and anti-p40 IgG antibodies in active pSLE patients. C Correlation between levels of MPO-DNA complexes and anti-p40 IgG antibodies in inactive pSLE patients. D Lack of correlation between levels of calprotectin and anti-p40 IgG antibodies in inactive pSLE patients. E Lack of correlation between levels of MPO-DNA complexes and anti-p40 IgG antibodies in healthy controls. F Lack of correlation between levels of calprotectin and anti-p40 IgG antibodies in healthy controls.
Fig. 6Correlations between IgA anti-p40 autoantibodies and markers of neutrophil death in pSLE patients with active disease and healthy controls. A Correlation between levels of MPO-DNA complexes and anti-p40 IgA antibodies in active pSLE patients. B Lack of correlation between levels of calprotectin and anti-p40 IgA antibodies in active pSLE patients. C Lack of correlation between levels of MPO-DNA complexes and anti-p40 IgA antibodies in inactive pSLE patients. D Lack of correlation between levels of calprotectin and anti-p40 IgA antibodies in inactive pSLE patients. E Lack of correlation between levels of MPO-DNA complexes and anti-p40 IgA antibodies in healthy controls. F Lack of correlation between levels of calprotectin and anti-p40 IgA antibodies in healthy controls