iRhom2 promotes lupus nephritis through TNF-alpha and EGFR signaling
JOURNAL OF CLINICAL INVESTIGATION
Authors: Qing, Xiaoping; Chinenov, Yurii; Redecha, Patricia; Madaio, Michael; Roelofs, Joris J. T. H.; Farber, Gregory; Issuree, Priya D.; Donlin, Laura; Mcllwain, David R.; Mak, Tak W.; Blobel, Carl P.; Salmon, Jane E.
Abstract
Lupus nephritis (LN) often results in progressive renal dysfunction. The inactive rhomboid 2 (iRhom2) is a newly identified key regulator of A disintegrin and metalloprotease 17 (ADAM17), whose substrates, such as TNF-alpha and heparin-binding EGF (HB-EGF), have been implicated in the pathogenesis of chronic kidney diseases. Here, we demonstrate that deficiency of iRhom2 protects the lupus-prone Fcgr2b(-/-) mice from developing severe kidney damage without altering anti-double stranded DNA (anti-dsDNA) Ab production by simultaneously blocking HB-EGF/EGFR and INF-alpha signaling in the kidney tissues. Unbiased transcriptome profiling of kidneys and kidney macrophages revealed that TNF-alpha and HB-EGF/EGFR signaling pathways are highly upregulated in Fcgab(-/-) mice, alterations that were diminished in the absence of iRhom2. Pharmacological blockade of either TNF-alpha or EGFR signaling protected Frgr2(b-/-) mice from severe renal damage. Finally, kidneys from LN patients showed increased iRhom2 and HB-EGF expression, with interstitial HB-EGF expression significantly associated with chronicity indices. Our data suggest that activation of iRhom2/ADAM17-dependent TNF-alpha and EGFR signaling plays a crucial role in mediating irreversible kidney damage in LN, thereby uncovering a target for selective and simultaneous dual inhibition of 2 major pathological pathways in the effector arm of the disease.
Copy number variation of FCGR genes in etiopathogenesis of sarcoidosis
PLOS ONE
Authors: Typiak, Marlene; Rebala, Krzysztof; Haras, Agnieszka; Skotarczak, Monika; Slominski, Jan Marek; Dubaniewicz, Anna
Abstract
We have previously revealed that, in contrast to polymorphism of FCGR2B and FCGR3B, polymorphism of FCGR2A, FCGR2C and FCGR3A genes, encoding receptors for Fc fragment of immunoglobulin G (Fc gamma receptors), play a role in increased level of circulating immune complexes with occurrence of Mycobacterium tuberculosis heat shock proteins in patients with sarcoidosis. However, this immunocomplexemia might also be caused by decreased clearance by immune cells due to a changed copy number of FCGR genes. Thus, the next step of our study was to evaluate copy number variation of FCGR2A, FCGR2B, FCGR2C, FCGR3A and FCGR3B in this disease. The analysis was carried out by real-time quantitative PCR on 104 patients and 110 healthy volunteers. Despite previously detected variation in allele/genotype frequencies of FCGR in sarcoidosis and its particular stages, there was no copy number variation of the tested genes between sarcoidosis or its stages and healthy control, as well as between stages themselves. A relevant increase in copy number of FCGR2C and FCGR3B in Stage IV of sarcoidosis vs. other stages and controls was detected, but this observation was based on a limited number of Stage IV patients. Hence, polymorphism of FCGR genes seems to be more important than their copy number variation in etiopathogenesis of sarcoidosis in patients from the Polish population.