Identification of Ceruloplasmin as a Gene that Affects Susceptibility to Glomerulonephritis Through Macrophage Function

Author:

Chen Tai-Di12,Rotival Maxime3,Chiu Ling-Yin4,Bagnati Marta1,Ko Jeong-Hun1,Srivastava Prashant K5,Petretto Enrico6,Pusey Charles D7,Lai Ping-Chin4,Aitman Timothy J8,Cook H Terence1,Behmoaras Jacques1

Affiliation:

1. Centre for Complement and Inflammation Research, Imperial College London, London W12 0NN, United Kingdom

2. Department of Anatomic Pathology, Chang Gung Memorial Hospital, 33305 Taoyuan, Taiwan

3. Institut Pasteur, Unit of Human Evolutionary Genetics, Paris 75015, France

4. Kidney Institute, Department of Nephrology, Chang Gung Memorial Hospital, 10591 Taipei, Taiwan

5. Division of Brain Sciences, Imperial College London, Hammersmith Hospital Campus, London W12 0NN, United Kingdom

6. Duke-NUS Medical School, National University of Singapore, Singapore 169857, Singapore

7. Renal and Vascular Inflammation Section, Imperial College London, London W12 0NN, United Kingdom

8. Institute of Genetics and Molecular Medicine, University of Edinburgh, Edinburgh EH4 2XU, United Kingdom

Abstract

Abstract Crescentic glomerulonephritis (Crgn) is a complex disorder where macrophage activity and infiltration are significant effector causes. In previous linkage studies using the uniquely susceptible Wistar Kyoto (WKY) rat strain, we have identified multiple crescentic glomerulonephritis QTL (Crgn) and positionally cloned genes underlying Crgn1 and Crgn2, which accounted for 40% of total variance in glomerular inflammation. Here, we have generated a backcross (BC) population (n = 166) where Crgn1 and Crgn2 were genetically fixed and found significant linkage to glomerular crescents on chromosome 2 (Crgn8, LOD = 3.8). Fine mapping analysis by integration with genome-wide expression QTLs (eQTLs) from the same BC population identified ceruloplasmin (Cp) as a positional eQTL in macrophages but not in serum. Liquid chromatography-tandem mass spectrometry confirmed Cp as a protein QTL in rat macrophages. WKY macrophages overexpress Cp and its downregulation by RNA interference decreases markers of glomerular proinflammatory macrophage activation. Similarly, short incubation with Cp results in a strain-dependent macrophage polarization in the rat. These results suggest that genetically determined Cp levels can alter susceptibility to Crgn through macrophage function and propose a new role for Cp in early macrophage activation.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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