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Inhibition of Rho-associated kinase relieves C5a-induced proteinuria in murine nephrotic syndrome
Authors:I-Jung Tsai  Chia-Hung Chou  Yao-Hsu Yang  Wei-Chou Lin  Yen-Hung Lin  Lu-Ping Chow  Hsiao-Hui Lee  Pei-Gang Kao  Wan-Ting Liau  Tzuu-Shuh Jou  Yong-Kwei Tsau
Institution:1.Department of Pediatrics,National Taiwan University Hospital and National Taiwan University College of Medicine,Taipei,Taiwan;2.Department of Obstetrics and Gynecology,National Taiwan University Hospital and National Taiwan University College of Medicine,Taipei,Taiwan;3.Department of Pathology,National Taiwan University Hospital and National Taiwan University College of Medicine,Taipei,Taiwan;4.Department of Internal Medicine,National Taiwan University Hospital and National Taiwan University College of Medicine,Taipei,Taiwan;5.Graduate Institute of Biochemistry and Molecular Biology,National Taiwan University College of Medicine,Taipei,Taiwan;6.Department of Life Sciences and Institute of Genome Sciences,National Yang-Ming University,Taipei,Taiwan;7.Graduate Institute of Clinical Medicine,National Taiwan University College of Medicine,Taipei,Taiwan
Abstract:Childhood nephrotic syndrome is mainly caused by minimal change disease which is named because only subtle ultrastructural alteration could be observed at electron microscopic level in the pathological kidney. Glomerular podocytes are presumed to be the target cells whose protein sieving capability is compromised by a yet unidentified permeability perturbing factor. In a cohort of children with non-hereditary idiopathic nephrotic syndrome, we found the complement fragment C5a was elevated in their sera during active disease. Administration of recombinant C5a induced profound proteinuria and minimal change nephrotic syndrome in mice. Purified glomerular endothelial cells, instead of podocytes, were demonstrated to be responsible for the proteinuric effect elicited by C5a. Further studies depicted a signaling pathway involving Rho/Rho-associated kinase/myosin activation leading to endothelial cell contraction and cell adhesion complex breakdown. Significantly, application of Rho-associated kinase inhibitor, Y27632, prevented the protein leaking effects observed in both C5a-treated purified endothelial cells and mice. Taken together, our study identifies a previously unknown mechanism underlying nephrotic syndrome and provides a new insight toward identifying Rho-associated kinase inhibition as an alternative therapeutic option for nephrotic syndrome.
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