Complement factor H (FH) systemically inhibits excessive complement activation in the microenvironment of host cells, but for instance not on microbes. This self-recognition is mediated by two binding sites that recognize distinctly sulfated heparan sulfate (HS) domains. The interaction with HS not only concentrates FH on host cells, but directly affects its activity, evoking novel models of conformational activation. Genetic aberrations in the HS-binding domains systemically disturb the protective function of FH, yet the resulting loss of complement control affects mainly ocular and renal tissues. Recent results suggest that the specific expression of HS domains in these tissues restricts the interaction of HS to a single binding site with...
Complement is the major humoral component of the innate immune system. It recognizes pathogen- and d...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
International audienceDuring proteinuria, renal tubular epithelial cells become exposed to ultrafilt...
Contains fulltext : 154249.pdf (publisher's version ) (Closed access)Complement fa...
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 factor H (FH) inhibits complement activation and interacts with glomerular endothelium vi...
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 is the major humoral component of the innate immune system. It recognizes pathogen- and d...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
International audienceDuring proteinuria, renal tubular epithelial cells become exposed to ultrafilt...
Contains fulltext : 154249.pdf (publisher's version ) (Closed access)Complement fa...
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 factor H (FH) inhibits complement activation and interacts with glomerular endothelium vi...
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 is the major humoral component of the innate immune system. It recognizes pathogen- and d...
Complement dysregulation is characteristic of the renal diseases atypical hemolytic uremic syndrome ...
International audienceDuring proteinuria, renal tubular epithelial cells become exposed to ultrafilt...