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Complement factor 7 gene mutations in relation to meningococcal infection and clinical recurrence of meningococcal
Taco W Kuijpers1, Melanie Nguyen, Carla Th P Hopman
1Academic Medical Center, Center for Infection and Immunity Amsterdam, Emma Children's Hospital, Div of Pediatric Hematology, Immunology & Infectious Diseases, University of Amsterdam, Amsterdam, The Netherlands. t.w.kuijpers@amc.uva.nl
Abstract:
Meningococcal disease is caused by Neisseria meningitidis which is associated with high morbidity and mortality. Recurrences of meningococcal infection have been observed in patients with terminal complement component defects, because of the inefficient formation of the lytic membrane attack complex (MAC), C5b-9. Complement component C7 is one of the five plasma proteins to form the MAC. The gene C7 may carry mutations that cause functional abnormalities or the mere absence of the C7 protein. More than 200 patients were screened for aberrant C7 protein by isoelectric focusing (C7 IEF). These were compared with patients in whom recurrent meningococcal infection had resulted in the diagnosis of complete C7 absence (C7Q0). A higher proportion of C7 IEF variants were found in meningitis cases compared to controls (p=0.03). In contrast to C7Q0 patients, recurrent meningococcal infection was never observed in C7 IEF cases. Whereas C7Q0 sera were defective in meningococcal serogroup B and W135 killing assays, the sera of patients with C7 IEF variants were only defective in complement-mediated killing when classical pathway activation by (endogenous) anti-meningococcal antibodies was blocked. Upon sequence analysis we characterized the genetic background of the C7*6 and C7*8 IEF pattern and identified three novel C7 gene mutations in 13 C7Q0 patients. In conclusion, C7 IEF variants can determine meningococcal killing in the early stage of infection when antibody-independent killing prevails. The results endorse the lack of clinical recurrences once antibodies are present, whereas in C7Q0 patients the anti-meningococcal antibodies may not suffice to protect from recurrent meningococcal infection.
Insights
Aberrant complement component C7 (C7 IEF) variants protect against recurrent meningococcal disease, unlike complete C7 absence (C7Q0). C7 IEF variants maintain early infection control, preventing disease recurrence when antibodies develop.
Area of Science:
- Immunology
- Genetics
- Infectious Diseases
Background:
- Meningococcal disease, caused by Neisseria meningitidis, has high morbidity and mortality.
- Recurrent infections are linked to defects in the membrane attack complex (MAC) formation, specifically complement component C7.
- Mutations in the C7 gene can lead to functional abnormalities or absence of C7 protein.
Purpose of the Study:
- To investigate the association between C7 protein variants (C7 IEF) and meningococcal infection recurrence.
- To compare the functional consequences of C7 IEF variants versus complete C7 absence (C7Q0).
- To identify genetic mutations underlying C7 abnormalities.
Main Methods:
- Screening of over 200 patients for aberrant C7 protein using isoelectric focusing (C7 IEF).
- Comparison of C7 IEF cases with C7Q0 patients diagnosed due to recurrent meningococcal infections.
- Functional assays including complement-mediated killing of Neisseria meningitidis serogroups B and W135.
- Sequence analysis to characterize C7 gene mutations.
Main Results:
- A higher proportion of C7 IEF variants were found in meningitis patients compared to controls (p=0.03).
- Recurrent meningococcal infection was never observed in C7 IEF cases, unlike C7Q0 patients.
- C7Q0 sera showed defective killing, while C7 IEF sera were only impaired when classical pathway activation was blocked.
Conclusions:
- C7 IEF variants contribute to meningococcal killing during the early, antibody-independent stage of infection.
- The presence of C7 IEF variants is associated with a lack of clinical recurrences once antibodies are established.
- In C7Q0 patients, anti-meningococcal antibodies may be insufficient to prevent recurrent infections.
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