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Biomedical subjects

Jens C Jensenius

Publications and source records attributed to Jens C Jensenius.

11 recordsLinked to original sources

Activation of the respiratory burst by Pneumocystis carinii. Efficiency of different antibody isotypes, complement, lung surfactant protein D, and mannan-binding lectin.

The effect of opsonization of Pneumocystis carinii with different antibody classes, complement, mannan-binding lectin (MBL), and lung surfactant protein D (SP-D) on respiratory burst activation was studied. Antibodies were obtained by affinity chromatography, complement from a hypogammaglobulinaemic patient, and phagocytic cells from blood donors. Respiratory burst activation was measured by chemiluminescence (CL). With freshly isolated neutrophils the combination of antibodies and complement but not antibody alone, had opsonizing properties. With neutrophils cultured for 20 h, however, IgG increased the CL response. In macrophages P. carinii opsonized with IgG alone induced a CL response proportional to the antibody titre used. With IgA an effect, albeit lower, was also seen, whereas IgM alone was inefficient. The combined effect of antibodies and complement increased the response significantly for all three antibody classes, IgG and complement giving the largest response. Binding of MBL to P. carinii and Candida albicans was demonstrated; however, only the former stimulated activation of the respiratory burst. SP-D did not bind to either microorganism and had no effect on the respiratory burst. It is concluded that IgG, IgA and complement are important opsonizing factors in infections involving P. carinii. The relative importance varies with the type of phagocytic cell studied.

Animals↗

Regulation of the mannan-binding lectin pathway of complement on Neisseria gonorrhoeae by C1-inhibitor and alpha 2-macroglobulin.

We examined complement activation by Neisseria gonorrhoeae via the mannan-binding lectin (MBL) pathway in normal human serum. Maximal binding of MBL complexed with MBL-associated serine proteases (MASPs) to N. gonorrhoeae was achieved at a concentration of 0.3 microg/ml. Preopsonization with MBL-MASP at concentrations as low as 0.03 microg/ml resulted in approximately 60% killing of otherwise fully serum-resistant gonococci. However, MBL-depleted serum (MBLdS) reconstituted with MBL-MASP before incubation with organisms (postopsonization) failed to kill at a 100-fold higher concentration. Preopsonized organisms showed a 1.5-fold increase in C4, a 2.5-fold increase in C3b, and an approximately 25-fold increase in factor Bb binding; enhanced C3b and factor Bb binding was classical pathway dependent. Preopsonization of bacteria with a mixture of pure C1-inhibitor and/or alpha(2)-macroglobulin added together with MBL-MASP, all at physiologic concentrations before adding MBLdS, totally reversed killing in 10% reconstituted serum. Reconstitution of MBLdS with supraphysiologic (24 microg/ml) concentrations of MBL-MASP partially overcame the effects of inhibitors (57% killing in 10% reconstituted serum). We also examined the effect of sialylation of gonococcal lipooligosaccharide (LOS) on MBL function. Partial sialylation of LOS did not decrease MBL or C4 binding but did decrease C3b binding by 50% and resulted in 80% survival in 10% serum (lacking bacteria-specific Abs) even when sialylated organisms were preopsonized with MBL. Full sialylation of LOS abolished MBL, C4, and C3b binding, resulting in 100% survival. Our studies indicate that MBL does not participate in complement activation on N. gonorrhoeae in the presence of "complete" serum that contains C1-inhibitor and alpha(2)-macroglobulin.

Adult↗

Cancer-associated cleavage of cytokeratin 8/18 heterotypic complexes exposes a neoepitope in human adenocarcinomas.

The intermediate filament network in simple glandular epithelial cells predominantly consists of heterotypic complexes of cytokeratin 8 (K8) and cytokeratin 18 (K18). In contrast to other cytokeratins, K8 and K18 are persistently expressed during malignant transformation, but changes in cell morphology are accompanied by alterations in the intermediate filament network. To study molecular changes, K8 and K18 were purified from surgically removed colon cancer and normal epithelia tissues. Western blotting and amino acid sequencing revealed the presence of abundant K8 and K18 fragments, truncated at the N terminus, from cancerous, but not normal, epithelial cells. The fragmentation pattern indicates proteolysis mediated by several enzymes, including trypsin-like enzymes. The cancer-associated forms of K8 and K18 are specifically recognized by the human antibody, COU-1, cloned from the B cells of a cancer patient. We demonstrate that COU-1 recognizes a unique conformational epitope presented only by a complex between K8 and K18. The epitope is revealed after proteolytic removal of the head domain of either K8 or K18. A large panel of recombinant K8 and K18 fragments, deleted N- or C-terminally, allowed for the localization of the COU-1 epitope to the N-terminal part of the rod domains. Using surface plasmon resonance, the affinity of COU-1 for this epitope was determined to be 10(9) x m(-1), i.e. more than 2 orders of magnitude higher than for intact heterotypic K8/K18 complexes. The cellular distribution of truncated K8/K18 heterotypic complexes in viable adenocarcinomas cells was probed using COU-1 showing small fibrillar structures distinct from those of intact K8/K18 complexes. Previously we demonstrated the binding and subsequent internalization of recombinant Fab COU-1 to live cancer cells. We have thus characterized a cancer neoepitope recognized by the humoral immune system. The results have biological as well as clinical implications.

Adenocarcinoma↗

Low serum level of mannan-binding lectin is a determinant for pregnancy outcome in women with recurrent spontaneous abortion.

OBJECTIVE: The purpose of this study was to investigate the genetic background for the previously reported finding of an increased frequency of low levels of mannan-binding lectin in couples with unexplained recurrent spontaneous abortion and to evaluate the impact of low mannan-binding lectin levels on future pregnancy outcome. STUDY DESIGNS: Mannan-binding lectin levels were measured in 217 women with unexplained recurrent spontaneous abortion and 111 of their husbands and were compared with corresponding measurements in 104 couples with uncomplicated reproductive histories and 210 blood donors. An investigation of the genetic polymorphism, which is largely responsible for serum mannan- binding lectin levels, was done by polymerase chain reaction methods with DNA from a subset of the patients and control subjects. Information was collected about the outcome of the patients' next pregnancies, together with perinatal data concerning the patients' first birth that occurred before or after being assigned to the study. RESULTS: Among women with recurrent spontaneous abortion, 18.9% of the women had mannan-binding lectin levels of </= 100 ng/mL compared with 12.2% of control subjects ( P =.02). An investigation of mannan-binding lectin levels and genetic analyses gave no evidence that paternal mannan- binding lectin deficiency plays a role for recurrent spontaneous abortion. Patients with mannan-binding lectin levels of </=100 ng/mL had a higher abortion rate than patients with normal mannan- binding lectin levels (P <.05). The median birth weight of children who were born at term of women with recurrent spontaneous abortion was 287 g less in women with mannan-binding lectin levels of </= 100 ng/mL than that of patients with normal mannan-binding lectin levels (P =.04). CONCLUSION: Low maternal serum mannan-binding lectin levels exhibit a negative impact on pregnancy outcome in women with unexplained recurrent spontaneous abortion.

Abortion, Habitual↗

Assays for the functional activity of the mannan-binding lectin pathway of complement activation.

Mannan-binding lectin (MBL) activates complement independently of the adaptive, clonal immune system and thus presents an innate anti-microbial defence mechanism. Events in the MBL pathway of complement activation involve the binding of MBL to patterns of carbohydrate structures presented by the surface of micro-organisms. For the activation of complement to occur MBL must be associated with serine proteases (MBL-associated serine proteases, MASPs) in an MBL/MASP complex. When bound to micro-organisms, the MBL complex mediates the activation of C4 and C2, generating the C3 convertase, C4bC2b. The C4/C2 cleaving activity of the MBL complex is shared with the C1 complex of the classical pathway of complement activation. Different assays that allow for determination of the activity of the MBL complex in serum samples have been developed and are discussed in this report. We present data from one such assay (MBL/MASP activity test), which we have found useful for the routine evaluation of clinical samples. In this assay any influence of the classical pathway has been eliminated by using a hypertonic buffer, which inhibits the binding of C1q to immuncomplexes and disrupt the C1 complex, while leaving the function of the MBL complex intact. In parallel we determine the MBL concentration in the sample. As predicted a very high correlation is observed between the results of the two assays.

Complement Activation↗

The mannan-binding lectin-associated serine proteases (MASPs) and MAp19: four components of the lectin pathway activation complex encoded by two genes.

Mannan-binding lectin (MBL) and ficolins (L-ficolin and H-ficolin) initiate the lectin pathway of complement activation upon binding to microbial carbohydrates. The activation is mediated by associated serine proteases, termed MASPs, since they were discovered as MBL-associated serine proteases. The MASP family comprises three serine proteases, MASP-1, MASP-2 and MASP-3 and a non-enzymatic protein, MAp19. The MASPs show identical domain structure, shared also with C1r and C1s. MASP-1 and MASP-3 are alternative splice products of a single gene, MASP1/3, and have identical A chains, whereas they have individual B chains, encompassing the serine protease domain. MASP2 and MAp19 are alternative splice products of the MASP-2 gene, with MAp19 consisting of the first two domains of MASP-2 plus additional four amino acid residues. MASP-2 is the protease responsible for activating C4 and C2 to generate the C3 convertase, C4bC2b. The biological function of the remaining three proteins has not yet been resolved.

Animals↗

EndoS and SpeB from Streptococcus pyogenes inhibit immunoglobulin-mediated opsonophagocytosis.

The human pathogen Streptococcus pyogenes primarily infects the upper respiratory tract and skin, but occasionally it disseminates and causes severe invasive disease with high mortality. This study revealed that the activity of extracellular EndoS, which hydrolyzes the functionally important N-linked oligosaccharides on opsonizing immunoglobulin G (IgG), contributes to increased survival of S. pyogenes in human blood ex vivo. The inability to kill the bacteria is due to reduced binding of IgG to Fc receptors and impaired classical pathway-mediated activation of complement. In addition, the activity of extracellular SpeB, which cleaves IgG into Fc and Fab fragments, also increases bacterial survival. This suggests that S. pyogenes expresses two enzymes, EndoS and SpeB, which modulate IgG by different mechanisms in order to evade the adaptive immune system.

Bacterial Proteins↗

Intracellular survival of Leishmania major in neutrophil granulocytes after uptake in the absence of heat-labile serum factors.

The role of polymorphonuclear neutrophil granulocytes (PMN) in defense against the intracellular parasite Leishmania is poorly understood. In the present study, the interaction of human PMN with Leishmania major promastigotes was investigated in vitro. In the presence of fresh human serum, about 50% of PMN phagocytosed the parasites within 10 min and the parasite uptake led to PMN activation, resulting in the killing of most ingested parasites. Heat inactivation of the serum markedly reduced the rate of early parasite phagocytosis, suggesting a role of complement components in the early uptake of Leishmania. However, over 50% of PMN were able to ingest parasites in the presence of heat-inactivated serum if the coincubation was extended to 3 h. After 3 h, 10% of the PMN were found to internalize Leishmania even under serum-free conditions. These findings indicate that PMN possess mechanisms for both opsonin/complement-dependent and -independent uptake of Leishmania. Both pathways of uptake could be partially blocked by anti-CR3 antibody. Mannan-binding lectin was found not to be involved in this process. When phagocytosed in the absence of opsonin, the majority of Leishmania parasites survived intracellularly in PMN for at least 1 day. These data suggest a dual role of PMN in the early response to L. major infection. On the one hand, PMN can rapidly eliminate the intracellular parasites, and on the other hand, Leishmania can survive intracellularly in PMN. These data, together with the finding that intact parasites were seen in PMN isolated from the skin of infected mice, suggest that PMN can serve as host cells for the intracellular survival of Leishmania within the first hours or days after infection.

Animals↗

Collections and ficolins: humoral lectins of the innate immune defense.

Collectins and ficolins, present in plasma and on mucosal surfaces, are humoral molecules of the innate immune systems, which recognize pathogen-associated molecular patterns. The human collectins, mannan-binding lectin (MBL) and surfactant protein A and D (SP-A and SP-D), are oligomeric proteins composed of carbohydrate-recognition domains (CRDs) attached to collagenous regions and are thus structurally similar to the ficolins, L-ficolin, M-ficolin, and H-ficolin. However, they make use of different CRD structures: C-type lectin domains for the collectins and fibrinogen-like domains for the ficolins. Upon recognition of the infectious agent, MBL and the ficolins initiate the lectin pathway of complement activation through attached serine proteases (MASPs), whereas SP-A and SP-D rely on other effector mechanisms: direct opsonization, neutralization, and agglutination. This limits the infection and concurrently orchestrates the subsequent adaptive immune response. Deficiencies of the proteins may predispose to infections or other complications, e.g., reperfusion injuries or autoimmune diseases. Structure, function, clinical implications, and phylogeny are reviewed.

Animals↗