C3 glomerulopathy (C3G) is associated with dysregulation of the alternative pathway of complement activation, and treatment options for C3G remain limited. Complement factor H (FH) is a potent regulator of the alternative pathway and might offer a solution, but the mass and complexity of FH makes generation of full-length FH far from trivial. We previously generated a mini-FH construct, with FH short consensus repeats 1-5 linked to repeats 18-20 (FH), that was effective in experimental C3G. However, the serum of FH was significantly shorter than that of serum-purified FH. We introduced the oligomerization domain of human FH-related protein 1 (denoted by R1-2) at the carboxy or amino terminus of human FH to generate two homodimeric mini-FH constructs (FH and FH, respectively) in Chinese hamster ovary cells and tested these constructs using binding, fluid-phase, and erythrocyte lysis assays, followed by experiments in FH-deficient mice. FH and FH homodimerized in solution and displayed avid binding profiles on clustered C3b surfaces, particularly FH Each construct was >10-fold more effective than FH at inhibiting cell surface complement activity and restricted glomerular basement membrane C3 deposition significantly better than FH or FH FH had a C3 breakdown fragment binding profile similar to that of FH, a >5-fold increase in serum compared with that of FH and significantly better retention in the kidney than FH or FH FH may have utility as a treatment option for C3G or other complement-mediated diseases.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6054357PMC
http://dx.doi.org/10.1681/ASN.2017091006DOI Listing

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