Integrative profiling of untreated primary membranous nephropathy at the single-cell transcriptome level

Author:

Gu Qiuhua1,Wen Yuchen23,Cheng Xi1,Qi Yan1,Cao Xin4,Gao Xiqian4,Mao Xiaoming1,Shang Wenya1,Wei Li1,Jia Junya1,Yan Tiekun1,Cai Zhigang235ORCID

Affiliation:

1. Department of Nephrology, Tianjin Medical University General Hospital , Tianjin , China

2. National Key Laboratory of Experimental Hematology , Tianjin , China

3. The Province and Ministry Co-Sponsored Collaborative Innovation Center for Medical Epigenetics, Department of Pharmacology, School of Basic Medical Science, Tianjin Medical University , Tianjin , China

4. Department of Nephrology, Tianjin Medical University General Hospital-Airport Hospital , Tianjin , China

5. Tianjin Key Laboratory of Inflammatory Biology , Tianjin , China

Abstract

ABSTRACT Background Primary membranous nephropathy (PMN) is an autoimmune kidney disease. Despite the identification of certain autoantigens, the etiology and pathophysiology of PMN are still largely unknown. Methods Five patients with biopsy-proven PMN were enrolled in this study. Their blood, kidney and urine samples were collected respectively to profile cellular, molecular and immunological alterations by using single-cell RNA sequencing (scRNA-seq). Experimental verifications were also implemented in kidney tissue. Results In the peripheral blood mononuclear cell (PBMC) samples, portions of B cells and plasma cells were increased in PMN patients. Cell–cell communication analysis suggests that APRIL (a proliferation-inducing ligand from B cells) might be a potential molecule that regulates the activity of plasma cells. In the kidney samples, scRNA-seq analysis showed that the infiltration of T cells, as well as the myeloid cells, appears abundant compared with healthy controls, suggesting that immune cells are actively recruited to kidney. Furthermore, we observed an enhanced interaction between inflammatory cells and podocytes, which might contribute to kidney injury. Accordingly, scRNA-seq analysis of urinary samples is partially reminiscent of the kidney cell landscape, especially T cells and myeloid cells, suggesting monitoring urinary samples is a promising method to monitor PMN development. Additionally, integrative analysis across the blood, kidney and urine identified LTB, HERP1, ANXA1, IL1RN and ICAM1 as common regulators of PMN. Finally, immune repertoire in PBMC also showed an elevated diversity of clonal type, implying the existence of autoreactive T-cell receptor/B-cell receptor. Conclusion Our study comprehensively profiled the transcriptomic landscapes of blood, kidney and urine in patients with PMN using scRNA-seq. We depicted the alterations including cell compositions and cell–cell communication in PMN. These results offer important clues with regard to the diagnosis and pathogenesis of PMN and potential intervention of PMN progression.

Funder

National Natural Science Foundation of China

Tianjin Key Medical Discipline Construction Project

Tianjin Medical University Talent Program Foundation

Publisher

Oxford University Press (OUP)

Reference60 articles.

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