Dysregulation of Immune Cell Subpopulations in Atypical Hemolytic Uremic Syndrome

Author:

Chen I-Ru12ORCID,Huang Chiu-Ching12,Tu Siang-Jyun3ORCID,Wang Guei-Jane14,Lai Ping-Chin2ORCID,Lee Ya-Ting345,Yen Ju-Chen345,Chang Ya-Sian345ORCID,Chang Jan-Gowth1345ORCID

Affiliation:

1. Graduate Institute of Clinical Medical Science, College of Medicine, China Medical University, Taichung 40402, Taiwan

2. Division of Nephrology and the Kidney Institute, Department of Internal Medicine, China Medical University and Hospitals, Taichung 404332, Taiwan

3. Center for Precision Medicine, China Medical University Hospital, Taichung 404332, Taiwan

4. Department of Medical Research, China Medical University Hospital, Taichung 404332, Taiwan

5. Epigenome Research Center, China Medical University Hospital, Taichung 404332, Taiwan

Abstract

Atypical hemolytic uremic syndrome (aHUS) is a rare, life-threatening thrombotic microangiopathy. Definitive biomarkers for disease diagnosis and activity remain elusive, making the exploration of molecular markers paramount. We conducted single-cell sequencing on peripheral blood mononuclear cells from 13 aHUS patients, 3 unaffected family members of aHUS patients, and 4 healthy controls. We identified 32 distinct subpopulations encompassing 5 B-cell types, 16 T- and natural killer (NK) cell types, 7 monocyte types, and 4 other cell types. Notably, we observed a significant increase in intermediate monocytes in unstable aHUS patients. Subclustering analysis revealed seven elevated expression genes, including NEAT1, MT-ATP6, MT-CYB, VIM, ACTG1, RPL13, and KLRB1, in unstable aHUS patients, and four heightened expression genes, including RPS27, RPS4X, RPL23, and GZMH genes, in stable aHUS patients. Additionally, an increase in the expression of mitochondria-related genes suggested a potential influence of cell metabolism on the clinical progression of the disease. Pseudotime trajectory analysis revealed a unique immune cell differentiation pattern, while cell—cell interaction profiling highlighted distinctive signaling pathways among patients, family members, and controls. This single-cell sequencing study is the first to confirm immune cell dysregulation in aHUS pathogenesis, offering valuable insights into molecular mechanisms and potential new diagnostic and disease activity markers.

Funder

China Medical University Hospital

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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