Modular activation of nuclear factor-κB transcriptional programs in human diabetic nephropathy

H Schmid, A Boucherot, Y Yasuda, A Henger… - Diabetes, 2006 - Am Diabetes Assoc
H Schmid, A Boucherot, Y Yasuda, A Henger, B Brunner, F Eichinger, A Nitsche, E Kiss…
Diabetes, 2006Am Diabetes Assoc
Diabetic nephropathy (DN) is the leading cause of end-stage renal failure and a major risk
factor for cardiovascular mortality in diabetic patients. To evaluate the multiple pathogenetic
factors implicated in DN, unbiased mRNA expression screening of tubulointerstitial
compartments of human renal biopsies was combined with hypothesis-driven pathway
analysis. Expression fingerprints obtained from biopsies with histological diagnosis of DN
(n= 13) and from control subjects (pretransplant kidney donors [n= 7] and minimal change …
Diabetic nephropathy (DN) is the leading cause of end-stage renal failure and a major risk factor for cardiovascular mortality in diabetic patients. To evaluate the multiple pathogenetic factors implicated in DN, unbiased mRNA expression screening of tubulointerstitial compartments of human renal biopsies was combined with hypothesis-driven pathway analysis. Expression fingerprints obtained from biopsies with histological diagnosis of DN (n = 13) and from control subjects (pretransplant kidney donors [n = 7] and minimal change disease [n = 4]) allowed us to segregate the biopsies by disease state and stage by the specific expression signatures. Functional categorization showed regulation of genes linked to inflammation in progressive DN. Pathway mapping of nuclear factor-κB (NF-κB), a master transcriptional switch in inflammation, segregated progressive from mild DN and control subjects by showing upregulation of 54 of 138 known NF-κB targets. The promoter regions of regulated NF-κB targets were analyzed using ModelInspector, and the NF-κB module NFKB_IRFF_01 was found to be specifically enriched in progressive disease. Using this module, the induction of eight NFKB_IRFF_01–dependant genes was correctly predicted in progressive DN (B2M, CCL5/RANTES, CXCL10/IP10, EDN1, HLA-A, HLA-B, IFNB1, and VCAM1). The identification of a specific NF-κB promoter module activated in the inflammatory stress response of progressive DN has helped to characterize upstream pathways as potential targets for the treatment of progressive renal diseases such as DN.
Am Diabetes Assoc