Deficiency of C4 from donor or recipient mouse fails to prevent renal allograft rejection

T Lin, W Zhou, CA Farrar, REG Hargreaves… - The American journal of …, 2006 - Elsevier
T Lin, W Zhou, CA Farrar, REG Hargreaves, NS Sheerin, SH Sacks
The American journal of pathology, 2006Elsevier
Complement effector products generated in the transplanted kidney are known to mediate
transplant rejection, but which of the three main activation pathways of complement trigger
this response is unclear. Here we assessed the role of the classical and lectin pathways by
studying the common component C4 in mouse kidney transplant rejection. We transplanted
wild-type or C4-null H-2b donor kidneys into H-2k or H-2d recipients, or vice-versa, to
assess the roles of donor kidney and recipient expression of complement. Intragraft C4 gene …
Complement effector products generated in the transplanted kidney are known to mediate transplant rejection, but which of the three main activation pathways of complement trigger this response is unclear. Here we assessed the role of the classical and lectin pathways by studying the common component C4 in mouse kidney transplant rejection. We transplanted wild-type or C4-null H-2b donor kidneys into H-2k or H-2d recipients, or vice-versa, to assess the roles of donor kidney and recipient expression of complement. Intragraft C4 gene expression rose substantially during rejection. However, we found no significant association between graft acceptance and the presence of C4 in either the donor kidney or recipient mouse. At the time of rejection, we found no significant differences in alloantibody response in the different groups. Tubular deposition of C3 to C9 occurred regardless of the absence or presence of C4 in either the donor or recipient mouse, indicating that C4 was dispensable for complement activation at this site. These data suggest that complement activation and renal allograft rejection are independent of the classical and lectin pathways in these models, implying that in the absence of these pathways the alternative pathway is the main trigger for complement-mediated rejection.
Elsevier