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C3(H2O) prevents rescue of complement-mediated C3 glomerulopathy in Cfh–/– Cfd–/– mice
Yuzhou Zhang, Adam Keenan, Dao-Fu Dai, Kristofer S. May, Emily E. Anderson, Margaret A. Lindorfer, John B. Henrich, Gabriella R. Pitcher, Ronald P. Taylor, Richard J.H. Smith
Yuzhou Zhang, Adam Keenan, Dao-Fu Dai, Kristofer S. May, Emily E. Anderson, Margaret A. Lindorfer, John B. Henrich, Gabriella R. Pitcher, Ronald P. Taylor, Richard J.H. Smith
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Research Article Nephrology

C3(H2O) prevents rescue of complement-mediated C3 glomerulopathy in Cfh–/– Cfd–/– mice

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Abstract

Therapeutic complement inhibition is a major focus for novel drug development. Of upstream targets, factor D (FD) is appealing because it circulates in plasma at low concentrations and has a single function: to cleave factor B to generate C3 convertase of the alternative pathway (AP). Mice with a targeted deletion of factor H (FH; Cfh–/– mice) develop C3 glomerulopathy (C3G) due to uncontrolled AP activity. To assess the impact of FD inhibition, we studied Cfh–/– Cfd–/– mice. We show that C3G in Cfh–/– mice is not rescued by removing FD. We used serum from Cfh–/– Cfd–/– mice to demonstrate that residual AP function occurs even when both FD and FH are missing and that hemolytic activity is present due to the action of C3(H2O). We propose that uncontrolled tick-over leads to slow activation of the AP in Cfh–/– Cfd–/– mice and that a minimal threshold of FH is necessary if tissue deposition of C3 is to be prevented. The FD/FH ratio dictates serum C3 level and renal C3b deposition. In C3G patients with chronic renal disease, the FD/FH ratio correlates inversely with C3 and C5 serum levels, suggesting that continuous AP control may be difficult to achieve by targeting FD.

Authors

Yuzhou Zhang, Adam Keenan, Dao-Fu Dai, Kristofer S. May, Emily E. Anderson, Margaret A. Lindorfer, John B. Henrich, Gabriella R. Pitcher, Ronald P. Taylor, Richard J.H. Smith

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Figure 1

Complement activity in the fluid phase.

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Complement activity in the fluid phase.
(A) Plasma C3. C3 is depleted in...
(A) Plasma C3. C3 is depleted in Cfh–/– mice (n = 15), while in Cfh–/– Cfd–/– (n = 12) and WT mice (n = 22), C3 levels are comparable. In Cfd–/– mice (n = 18), C3 levels are 40% higher than in WT controls. Western blotting shows an intact C3 α chain in all genotypes except Cfh–/– mice. (B) Plasma FB. FB is significantly higher in Cfh–/– Cfd–/– (n = 12) and Cfd–/– (n = 4) mice as compared with WT controls (n = 6), while FB is totally consumed in Cfh–/– mice (n = 4). Its cleavage product, Ba, is seen in all genotypes on a Western blot, albeit at reduced levels in Cfd–/– and Cfh–/– Cfd–/– mice as compared with factor D–sufficient mice. Human Ba (Hu Ba) is shown as reference. (C) Plasma C5. C5 levels are comparable across all genotypes (n = 10, 20, and 14 for Cfd–/–, Cfh–/– Cfd–/–, and WT mice, respectively), with the exception of Cfh–/– mice (n = 12). On Western blotting, intact C5 α chains are present in all genotypes except for Cfh–/– mice. Human C5 (Hu C5) is shown as reference. Lines represent mean values. *P < 0.05, **P < 0.01,***P < 0.001, ****P < 0.0001 by 1-way ANOVA and Tukey post hoc test. Data from Cfh–/– were excluded in all statistical comparisons.

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