PubMed Health⌕ Search

Biomedical subjects

Peter Garred

Publications and source records attributed to Peter Garred.

At least 19 recordsLinked to original sources

Genetically determined high serum levels of mannose-binding lectin and agalactosyl IgG are associated with ischemic heart disease in rheumatoid arthritis.

OBJECTIVE: Patients with rheumatoid arthritis (RA) have excess morbidity and mortality due to ischemic heart disease. It has been suggested that high serum levels of mannose-binding lectin (MBL) and agalactosyl IgG (IgG-G0) are associated with increased inflammation in RA. MBL also enhances inflammation-mediated tissue injury during postischemic reperfusion. This study was undertaken to examine whether these factors are associated with increased risk of ischemic heart disease in RA. METHODS: MBL alleles were genotyped in 229 Danish patients with RA. In addition, serum levels of MBL and IgG-G0 were measured. Incidences of ischemic heart disease, myocardial infarction, and death due to ischemic heart disease after the diagnosis of RA were assessed in a prospective study. RESULTS: During a median followup of 9.5 years, ischemic heart disease was diagnosed in 8 of 27 patients with genetically determined high serum levels of MBL, as compared with 24 of the remaining 192 patients (data not available on 10 patients). After correction for other known risk factors, the hazard ratio (HR) was 3.6 (95% confidence interval [95% CI] 1.4-9.2). The corrected HR for myocardial infarction was 9.0 (95% CI 2.2-36.4). High serum levels of MBL also conferred an increased risk of death due to ischemic heart disease (age- and sex-adjusted HR 10.5, 95% CI 2.7-41.3). However, further analyses showed that these associations were present only in patients with high serum levels of IgG-G0. CONCLUSION: Genetically determined high serum levels of MBL and high serum levels of IgG-G0 are associated with increased risk of ischemic heart disease, myocardial infarction, and premature death in patients with RA.

Adult↗

Influence of candidate susceptibility genes on tuberculosis in a high endemic region.

Genetic susceptibility towards clinical tuberculosis has been proposed in several population studies. We investigated whether polymorphisms in the candidate genes encoding solute carrier 11a1 protein (SLC11A1 formerly NRAMP1), mannose-binding lectin (MBL2) and Vitamin D receptor (VDR) were associated with tuberculosis in an East-African setting. Four hundred and forty-three culture positive pulmonary tuberculosis patients and 426 controls from Mwanza district in the northern part of Tanzania were prospectively included. Polymorphisms in the candidate genes were detected by different PCR-based techniques. A significant association between pulmonary tuberculosis and a microsatellite marker in the 5'(CA)n locus in the SLC11A1 gene compared with controls (38% versus 30% odds ratio 1.45, 95% CI: 1.06-1.9, P=0.014) was observed. The association was apparent only in HIV negative tuberculosis patients. No association with tuberculosis was seen with 3 other SLC11A1 loci investigated, which previously have been associated with tuberculosis in other populations or with MBL2 and VDR polymorphisms. The tuberculosis associated microsatellite marker was situated on different SLC11A1 haplotypes. In this cohort a microsatellite marker in the 5'(CA)n locus situated in the SLC11A1 gene was associated with tuberculosis. The observed association was seen only in HIV negative patients suggesting that this genetic susceptibility for tuberculosis may be surpassed by co-infections.

Adolescent↗

Multiple inflammatory markers in patients with significant coronary artery disease.

BACKGROUND: Several inflammatory biomarkers are linked to cardiovascular risk. In order to investigate their coexistence and relative responses, several established and two novel markers (lactoferrin and the terminal complement complex), representing infection and central components of inflammation, were measured simultaneously in patients undergoing first-time coronary angiography. METHODS AND RESULTS: Blood samples from patients with (n=131) or without (n=103) significant coronary artery stenosis were analyzed for plasma markers representing endothelium, platelets, neutrophils, monocytes, and complement, C-reactive protein, and antibodies against the infectious agents Chlamydia pneumoniae, Helicobacter pylori, and cytomegalovirus. In multivariate logistic regression analysis, hypercholesterolemia (p<0.001), increased concentrations of the neutrophil activation marker lactoferrin (p<0.001) and the monocyte activation marker neopterin (p=0.012), lower concentrations of the terminal complement complex (p<0.001), and antibodies against C. pneumoniae (p=0.023) were variables linked to coronary artery stenosis. In univariate analysis additional relationships were found to current smoking (p<0.001), increased plasma concentrations of vascular cell adhesion molecule-1 (p=0.015), E-selectin (p<0.01), myeloperoxidase (p=0.051) and endothelin-1 (p=0.053), as well as diabetes (p=0.039). CONCLUSIONS: Activation of multiple inflammatory pathways and C. pneumoniae infection may influence the inflammatory response in atherosclerosis. These pilot data provide an indication of the relative usefulness of various inflammatory biomarkers, indicating that the novel markers lactoferrin and the terminal complement complex warrant further investigation.

Analysis of Variance↗

Ficolin-2 recognizes DNA and participates in the clearance of dying host cells.

Ficolin-2 is a serum opsonin, which has been shown to be a pattern recognition molecule in the lectin complement activation pathway. Because innate immune mechanisms are involved in maintaining tissue homeostasis we hypothesized that Ficolin-2 also participate in the clearance of dying host cells. We found that Ficolin-2 binds to late apoptotic cells, as well as to apoptotic bodies and necrotic cells, but not to early apoptotic cells. We demonstrated that Ficolin-2 binds DNA in a calcium dependent manner and that DNA inhibits the binding to late apoptotic and necrotic cells, suggesting that DNA on permeable dying cells is a plausible ligand. Reconstituting serum deficient of Ficolin-2, C1q and mannose-binding lectin with Ficolin-2 augmented deposition of complement C4 on necrotic cells. Opsonization leads to an enhanced attachment/uptake of necrotic cells by macrophages. In conclusion dying host cells expose ligands with the capacity of binding Ficolin-2, which in turn leads to increased attachment and engulfment. Binding of Ficolin-2 to DNA points at nucleic acid exposed by permeable late apoptotic and necrotic cells as one of the ligands for Ficolin-2. Ficolin-2 may therefore be a scavenger molecule participating in the removal of host cells and maintenance of tissue homeostasis.

Animals↗

Molecular organization of human Ficolin-2.

Human Ficolin-2 (L-Ficolin) is an oligomeric serum protein consisting of a collagen-like stalk and fibrinogen-like recognition domains. The protein binds to arrays of sugars present on different microorganisms, enhances phagocytosis and promotes activation of the lectin complement pathway. So far the detailed oligomeric structure and composition of human Ficolin-2 has not been determined. Recombinant human Ficolin-2 was expressed in Chinese hamster ovary cells and its structure and biological functions were investigated by gel filtration, sucrose density gradient ultracentrifugation, mass spectrometry and surface plasmon resonance spectroscopy. It was revealed that Ficolin-2 has a high molecular weight due to extensive disulfide bridge formation. It was able to bind to different ligands, interact with mannose-binding lectin associated serine proteases and activate the complement system. Mass values of 807 and 403 kDa were determined corresponding to a 24-mer and a 12-mer of 34.4 kDa polypeptides. However, the 24-mer was unstable and the 12-mer is likely the major functional form of the protein. Our results are consistent with the view that Ficolin-2 is built up by a mixture of stable homodimers and homotrimers. Based on our findings we propose a model in which disulfide bridges located in the N-terminal region of the polypeptides explain the oligomerization pattern of human Ficolin-2.

Animals↗

Infections during induction therapy of childhood acute lymphoblastic leukemia--no association to mannose-binding lectin deficiency.

OBJECTIVES: Infection during the induction phase of childhood acute lymphoblastic leukemia (ALL) is a major cause of morbidity and mortality. Several studies have indicated that genetically determined low serum levels of mannose-binding lectin (MBL), a component of innate immunity, are associated with increased risk for infections in patients receiving chemotherapy. Thus, these patients have been proposed to be candidates for MBL replacement therapy. METHODS: In a population-based cohort of 137 children with ALL treated at a single pediatric hematology-oncology center with an almost identical chemotherapy regimen, we studied the relationship between polymorphisms in the MBL gene (MBL2) and the MBL2 promoter and the risk of infections during the first 50 d of induction therapy. RESULTS: No increased frequency of infection was seen for the children with genotypes encoding serum low levels of MBL. A higher incidence of fever (P < 0.004), infectious events (P = 0.025), days with neutropenia (P < 0.001) and a higher frequency of antimicrobial therapy (P = 0.0007) were seen in the young age group (<2.5 yr) compared with the older age group (> or =2.5 yr), independent of the MBL genotype. CONCLUSIONS: MBL deficiency did not influence the frequency of infections in children receiving induction chemotherapy for ALL, not even in the youngest children (<2.5 yr) whom we found to have the highest risk for infections.

Adolescent↗

Early rise of anti-pseudomonas antibodies and a mucoid phenotype of pseudomonas aeruginosa are risk factors for development of chronic lung infection--a case control study.

P. aeruginosa is the most significant pathogen in CF lung disease. Chronic infection is preceded by a period of intermittent colonization. Early aggressive antimicrobial treatment at initial detection of P. aeruginosa in lower respiratory tract (LRT) secretions can prevent transition to chronic infection in approximately 80% of the patients, while the rest progress to chronic infection in spite of treatment. To analyze risk factors for development of chronic infection, a cohort of 89 CF patients free of chronic infection at the study period start was followed for 10 years. 28 of the patients (study group) developed chronic infection in spite of early treatment and 28 age-matched patients who did not (controls) were included in the analysis. During the 3 years period prior to onset of chronic infection, P. aeruginosa-positive cultures were more frequent in the study group than in the controls (2.2 vs. 0.5 per year, p<0.0001). Growth of mucoid strains of P. aeruginosa was more frequent in study group than in controls (11.5% vs. 0%, p<0.0001). Most important, specific anti-pseudomonal IgG serum antibodies were significantly higher in the study group than in controls (0.98 Elisa Units vs. 0.53, p=0.04) already 3 years prior to onset of chronic infection and increased 0.44 EU pr year in the study group but remained at the initial level in the control group (p<0.005). Occurrence of Aspergillus-positive cultures were significantly more frequent in the study group than in controls (p=0.01). The strongest risk factor for development of chronic P. aeruginosa infection was increasing levels of specific anti-pseudomonal antibodies, specifically of IgG1 and IgG4 subclass and total anti-Pseudomonas IgG, 3 years prior to onset of chronic infection, with odds ratio (OR) 8.9, 7.7 and 7.4, respectively (p<0.005), and growth of mucoid P. aeruginosa strains with OR of 7.4, p=0.006). Occurrence of Aspergillus was also a risk factor for developing chronic P. aeruginosa infection with the OR of 4.7 (p=0.008).

Adolescent↗

Elevated complement C3 is associated with early restenosis after eversion carotid endarterectomy.

Early restenosis following carotid endarterectomy (CEA) is an inflammatory process leading to myointimal hyperplasia of smooth muscle cells. The risk for restenosis is increased in homozygous carriers of the normal (A) allele of mannose-binding lectin (MBL2) gene. Our objective was to study the associations of C3 and as control three non-complement acute-phase reactants (APRs) (C-reactive protein, haptoglobin and alpha2HSglycoprotein) with early restenosis following CEA. We also considered, whether MBL2 genotype relates to C3 levels and to the risk of restenosis. Concentrations of the APRs were determined by radial immunodiffusion or immunoturbidimetric methods in 64 patients who underwent eversion CEA and were followed up with carotid duplex scan (CDS) examinations for at least one year. MBL2 genotypes were determined by a PCR-SSP method. C3 levels increased during the follow-up and correlated with the percentage of restenosis detected by CDS at 14 months postsurgery, in MBL2 A/A allele carriers. Patients with high C3 levels had nearly five-fold higher odds for the presence of significant restenosis (>50% reduction in diameter) even after adjusting for MBL2 genotype, age and gender. By contrast, no such associations were detected between the non-complement APRs and early restenosis. C3 is associated with and might have a direct role in the development of an early restenosis following CEA, which is partially related to an intact MBL lectin pathway, thus determining C3 levels might have clinical importance. On the other hand, our results indicate that the regulation of C3 differs from non-complement APRs.

Adult↗

The 'involution' of mannose-binding lectin.

Mannose-binding lectin (MBL) acts as a serum opsonin in innate immune defense and induces complement activation by the lectin pathway. In humans, low levels of functional serum MBL are caused by the dominant action of three single nucleotide substitutions in exon 1 that disrupt the glycine-rich backbone structure of the protein. The presence of common MBL variant alleles is associated with both infectious and autoimmune diseases. Conversely, it has also been suggested that MBL variants are maintained because of selective advantages for the host. In man, the MBL genetic system comprises one functional gene (MBL2) and one expressed pseudogene (MBL1P1), whereas the lower primate, the rhesus monkey resembles rodents with two functional MBL genes. We have investigated the molecular mechanisms behind the evolutionary loss of MBL expression from lower primates to man, including silencing of the MBL1P1 gene and the generation of MBL2 variant structural alleles and promoter polymorphisms leading to the present human MBL2 haplotypes. We present data showing that the MBL1P1 gene has been repeatedly hit throughout evolution and silenced eventually by mutations in the glycine residues of the collagen-like region. Our results indicate that the MBL1P1 gene has been selectively turned off during evolution through the same molecular mechanisms causing the MBL2 variant alleles in man, suggesting an evolutionary selection for low-producing MBL genes.

Alleles↗

Extra-hepatic transcription of the human mannose-binding lectin gene (mbl2) and the MBL-associated serine protease 1-3 genes.

Mannose-binding lectin (MBL) is a part of the innate immune defense and activates complement via MBL associated serine proteases (MASPs). Human MBL is expressed by hepatocytes, but recent evidence in mice indicates a substantial extra-hepatic transcription. Therefore, we investigated whether mRNA transcribed from the human mbl2 gene as well as the masp genes was present in different tissues. The transcription of human mbl2 is regulated by two alternative promoters (named 0 and 1) where promoter 0 derived transcripts include an additional 5' untranslated part encoded by an extra exon (exon 0). Low extra-hepatic levels of mbl2 mRNA were predominantly found in small intestine and testis tissue, and were quantitatively dominated by promoter 1 transcripts. Moreover, these transcripts varied due to the use of alternative acceptor splice sites positioned inside exon 1. The mRNA distribution of masp1 and masp2 were found very similar to that of mbl2, while masp3 mRNA seemed ubiquitous present at quite high levels when compared to liver. These results indicate that the regulation of mbl2 gene expression in man is more complex than previously anticipated and that local expression of MBL may be relevant in local immune defense, particularly in restricted areas of the gastrointestinal and reproductive tracts.

Alternative Splicing↗

Polymorphisms in the FCN2 gene determine serum variation and function of Ficolin-2.

The ficolin 1, 2 and 3 (derived from the FCN1, 2 and 3 genes, respectively) are homologous soluble pattern recognition molecules of importance for innate immunity, comprising collagen-like and fibrinogen-like domains, binding to sugar groups on different types of microorganisms. Serum concentration of Ficolin-2 varies considerably in healthy individuals. Thus, we speculated whether this could be due to variations in the FCN2 gene. We sequenced the promoter region and the exons and intron-exon boundaries of FCN2 in Danish Caucasians. For comparison, FCN1 and FCN3 were also investigated. Ficolin-2 concentrations were measured in serum and the functional relevance of amino acid substituting polymorphisms in FCN2 was investigated by binding to and recovery from N-acetylglucosamine (GlcNAc). Both FCN1 and FCN2 contained polymorphisms in the promoters and structural parts of the genes, but only polymorphisms in FCN2 resulted in amino acid exchanges. FCN2 promoter polymorphisms were associated with marked changes in the Ficolin-2 serum concentration, whereas two polymorphisms clustered in the exon encoding the fibrinogen-like domain were associated with increased and decreased GlcNAc binding, respectively. In FCN3, only a single frame-shift deletion in exon 5 was detected. These results show that the FCN genes are polymorphic and that particularly FCN2 harbors functional polymorphic sites that regulate both the expression as well as the function of Ficolin-2, which may have pathophysiological implications for innate immunity.

Acetylglucosamine↗

High rate of early restenosis after carotid eversion endarterectomy in homozygous carriers of the normal mannose-binding lectin genotype.

BACKGROUND AND PURPOSE: Mannose-binding lectin (MBL) is thought to influence the pathophysiology of cardiovascular disease by decreasing the risk of advanced atherosclerosis and by contributing to enhanced ischemia reperfusion injury. Thus, we investigated the role of MBL in restenosis after eversion endarterectomy in patients with severe carotid atherosclerosis. METHODS: In a prospective study, 123 patients who underwent carotid endarterectomy were followed-up by carotid duplex scan (CDS) sonography for 14 months. In a retrospective study, we examined 17 patients and 29 patients, respectively, who had or had not at least 50% restenosis 29 months after carotid eversion endarterectomy. MBL genotypes were analyzed by a polymerase chain reaction-based method, and MBL serum concentrations were measured. RESULTS: In the prospective study in the patients homozygous for the normal MBL genotype, CDS values were significantly higher after 14 months of follow-up compared with the values measured 6 weeks after surgery (P<0.001). In contrast, only a slight increase was registered in patients carrying MBL variant alleles. The differences were much more pronounced in female than in male patients. Similar differences were observed when patients with high and low MBL serum concentrations were compared. In the retrospective study, a significant increase in the frequency of MBL variant genotypes was observed in patients not experiencing restenosis compared with the patients with restenosis (P=0.007). CONCLUSIONS: These results indicate that reoccurrence of stenosis after carotid endarterectomy is partially genetically determined and imply that MBL contributes significantly to the pathophysiology of this condition.

Aged↗

Association between combined properdin and mannose-binding lectin deficiency and infection with Neisseria meningitidis.

BACKGROUND: Individuals genetically deficient of properdin are more susceptible to meningococcal disease. Likewise low concentration or decreased biological activity of mannose-binding lectin (MBL) is associated with higher incidence of bacterial infections during childhood. In this study we report our findings in a Danish family with a remarkably high incidence of meningococcal meningitis-in total four cases, one of them fatal. METHODS: Properdin and MBL were quantified by ELISA and the properdin gene was screened for sequence variations using denaturing high-performance liquid chromatography (DHPLC) and subsequent sequencing of abnormal patterns. The MBL gene was genotyped for the three known variant alleles (B, C and D) as well as three promoter polymorphisms (-221Y/X, -550H/L and +4P/Q). RESULTS: Two out of six males with undetectable properdin activity had meningitis. They had also low MBL serum levels or carried an MBL variant allele, whereas high MBL concentrations were measured in three out of four properdin deficient males--without meningitis. A splice site mutation in exon 10 (c.1487-2A>G) was found in the properdin gene and co segregated with biochemically measured properdin deficiency. CONCLUSION: Our results indicate that a combined deficiency of both properdin and MBL increases the risk of infection with Neisseria meningitidis and stress the importance of epistatic genetic interactions in disease susceptibility.

Adolescent↗

A common polymorphism in the SFTPD gene influences assembly, function, and concentration of surfactant protein D.

Surfactant protein D (SP-D) plays important roles in the host defense against infectious microorganisms and in regulating the innate immune response to a variety of pathogen-associated molecular pattern. SP-D is mainly expressed by type II cells of the lung, but SP-D is generally found on epithelial surfaces and in serum. Genotyping for three single-nucleotide variations altering amino acids in the mature protein in codon 11 (Met(11)Thr), 160 (Ala(160)Thr), and 270 (Ser(270)Thr) of the SP-D gene was performed and related to the SP-D levels in serum. Individuals with the Thr/Thr(11)-encoding genotype had significantly lower SP-D serum levels than individuals with the Met/Met(11) genotype. Gel filtration chromatography revealed two distinct m.w. peaks with SP-D immunoreactivity in serum from Met/Met(11)-encoding genotypes. In contrast, Thr/Thr(11) genotypes lacked the highest m.w. form. A similar SP-D size distribution was found for recombinant Met(11) and Thr(11) expressed in human embryonic kidney cells. Atomic force microscopy of purified SP-D showed that components eluting in the position of the high m.w. peak consist of multimers, dodecamers, and monomers of subunits, whereas the second peak exclusively contains monomers. SP-D from both peaks bound to mannan-coated ELISA plates. SP-D from the high m.w. peak bound preferentially to intact influenza A virus and Gram-positive and Gram-negative bacteria, whereas the monomeric species preferentially bound to isolated LPS. Our data strongly suggest that polymorphic variation in the N-terminal domain of the SP-D molecule influences oligomerization, function, and the concentration of the molecule in serum.

Alleles↗

Deficiency of somatic hypermutation of the antibody light chain is associated with increased frequency of severe respiratory tract infection in common variable immunodeficiency.

Reduced levels of somatic hypermutation (SHM) have recently been described in IgG-switched immunoglobulin genes in a minority of patients with common variable immunodeficiency (CVID), demonstrating a disruption of the normal linkage between isotype switch and SHM. To see if, irrespective of isotype, there is a tendency to use unmutated immunoglobulin genes in CVID, we studied SHM in kappa light-chain transcripts using a VkappaA27-specific restriction enzyme-based hot-spot mutation assay (IgkappaREHMA). Hot-spot mutations were found in 48% (median; reference interval, 28%-62%) of transcripts from 53 healthy controls. Values were significantly lower in 31 patients (median, 7.5%; range, 0%-73%; P < .0000001) of whom 24 (77%) had levels below the reference interval. Low levels of SHM correlated with increased frequency of severe respiratory tract infection (SRTI; P < .005), but not with diarrhea (P = .8). Mannose-binding lectin (MBL) deficiency also correlated with SRTI score (P = .009). However, the correlation of SHM and SRTI was also seen when only patients with normal MBL genotypes were analyzed (n = 18, P = .006). A slight decline of mutated fractions over years was noted (P = .01). This suggests that most patients with CVID fail to recruit affinity-maturated B cells, adding a qualitative deficiency to the quantitative deficiency characterizing these patients.

Adolescent↗

Mannose-binding lectin variant alleles and the risk of arterial thrombosis in systemic lupus erythematosus.

BACKGROUND: Cardiovascular disease is an important complication in patients with systemic lupus erythematosus (SLE). Variant alleles of the mannose-binding lectin gene are associated with SLE as well as with severe atherosclerosis. We determined whether mannose-binding lectin variant alleles were associated with an increased risk of arterial thrombosis among patients with SLE. METHODS: Mannose-binding lectin alleles were genotyped by means of a polymerase-chain-reaction assay in 91 Danish patients with SLE. Arterial and venous thromboses occurring after the diagnosis of SLE were assessed in a prospective study. Arterial and venous thromboses were confirmed by appropriate diagnostic methods. RESULTS: Fifty-four patients had no mannose-binding lectin variant alleles (A/A genotype), 30 were heterozygous (A/O genotype), and 7 were homozygous (O/O genotype). During a median follow-up of 9.1 years, arterial thromboses (cerebral or myocardial infarction or leg embolus) developed in 6 of the 7 patients with the O/O genotype, as compared with 18 of the 84 patients with the other two genotypes (hazard ratio, 5.8; 95 percent confidence interval, 2.2 to 15.2; overall incidence, 26 percent). After correction for other known risk factors, the hazard ratio was 7.0 (95 percent confidence interval, 1.9 to 25.4). Venous thromboses, which occurred in 14 patients, were statistically unrelated to the mannose-binding lectin genotype. CONCLUSIONS: Among patients with SLE, homozygosity for mannose-binding lectin variant alleles is associated with an increased risk of arterial thrombosis. The risk of venous thrombosis is not increased, indicating that mannose-binding lectin has a specific role in providing protection against arterial thrombosis.

Adolescent↗

Disease-associated mutations in human mannose-binding lectin compromise oligomerization and activity of the final protein.

Deficiency of human mannose-binding lectin (MBL) caused by mutations in the coding part of the MBL2 gene is associated with increased risk and severity of infections and autoimmunity. To study the biological consequences of MBL mutations, we expressed wild type MBL and mutated MBL in Chinese hamster ovary cells. The normal MBL cDNA (WT MBL-A) was cloned, and the three known natural and two artificial variants were expressed in Chinese hamster ovary cells. When analyzed, WT MBL-A formed covalently linked higher oligomers with a molecular mass of about 300-450 kDa, corresponding to 12-18 single chains or 4-6 structural units. By contrast, all MBL variants formed a dominant band of about 50 kDa, with increasingly weaker bands at 75, 100, and 125 kDa corresponding to two, three, four, and five chains, respectively. In contrast to WT MBL-A, variant MBL formed noncovalent oligomers containing up to six chains (two structural units). MBL variants bound ligands with a markedly reduced capacity compared with WT MBL-A. Mutations in the collagenous region of human MBL compromise assembly of higher order oligomers, resulting in reduced ligand binding capacity and thus reduced capability to activate complement.

Amino Acid Sequence↗

Antibody-mediated activation of the classical pathway of complement may compensate for mannose-binding lectin deficiency.

Deficiency of mannose-binding lectin (MBL), a recognition molecule of the lectin pathway of complement, is associated with increased susceptibility to infections. The high frequency of MBL deficiency suggests that defective MBL-mediated innate immunity can be compensated by alternative defense strategies. To examine this hypothesis, complement activation by MBL-binding ligands was studied. The results show that the prototypic MBL ligand mannan can induce complement activation via both the lectin pathway and the classical pathway. Furthermore, antibody binding to mannan restored complement activation in MBL-deficient serum in a C1q-dependent manner. Cooperation between the classical pathway and the lectin pathway was also observed for complement activation by protein 60 from Listeria monocytogenes. MBL pathway analysis at the levels of C4 and C5b-9 in the presence of classical pathway inhibition revealed a large variation of MBL pathway activity, depending on mbl2 gene polymorphisms. MBL pathway dysfunction in variant allele carriers is associated with reduced MBL ligand binding and a relative increase of low-molecular-mass MBL. These findings indicate that antibody-mediated classical pathway activation can compensate for impaired target opsonization via the MBL pathway in MBL-deficient individuals, and imply that MBL deficiency may become clinically relevant in absence of a concomitant adaptive immune response.

Antibodies↗