Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome (aHUS) and complement component 3 glomerulopathy (C3G). Complement regulatory protein Factor H (FH) inhibits complement activity, whereas FH-related proteins (FHRs) lack a complement regulatory domain. FH and FHRs compete for binding to host cell glycans, in particular heparan sulfates (HS). HS is a glycosaminoglycan with an immense structural variability, where distinct sulfation patterns mediate specific binding of proteins. Mutations in FH, FHRs, or an altered glomerular HS structure may disturb the FH : FHRs balance on glomerular endothelial cells, thereby leading to complement activation and the subsequent development of aHUS/C3G. In thi...
Complement factor H (FH) systemically inhibits excessive complement activation in the microenvironme...
Complement factor H (CFH) regulates complement activation in host tissues through its recognition of...
Complement factor H (CFH) regulates complement activation in host tissues through its recognition of...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Contains fulltext : 154249.pdf (publisher's version ) (Closed access)Complement fa...
Complement factor H (FH) inhibits complement activation and interacts with glomerular endothelium vi...
Contains fulltext : 237318.pdf (Publisher’s version ) (Open Access
Complement activation is an important mediator of kidney injury in glomerulonephritis. Complement fa...
Complement factor H (FH) systemically inhibits excessive complement activation in the microenvironme...
Complement factor H (CFH) regulates complement activation in host tissues through its recognition of...
Complement factor H (CFH) regulates complement activation in host tissues through its recognition of...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
Contains fulltext : 154249.pdf (publisher's version ) (Closed access)Complement fa...
Complement factor H (FH) inhibits complement activation and interacts with glomerular endothelium vi...
Contains fulltext : 237318.pdf (Publisher’s version ) (Open Access
Complement activation is an important mediator of kidney injury in glomerulonephritis. Complement fa...
Complement factor H (FH) systemically inhibits excessive complement activation in the microenvironme...
Complement factor H (CFH) regulates complement activation in host tissues through its recognition of...
Complement factor H (CFH) regulates complement activation in host tissues through its recognition of...