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Inherited deficiency of the fourth component of human complement.

The highly polymorphic fourth component of human complement (C4) is usually encoded by two genes, C4A and C4B, adjacent to the 21-hydroxylase (21-OH) genes, and is also remarkable by the high frequency of the null alleles, C4A*Q0 and C4B*Q0. Despite considerable structural homology, the gene products of the two loci differ in hemolytic activities, antigenic reactivities and covalent binding affinities to antigens and antibodies. Complete C4 deficiency is exceptional because this condition appears only in homozygotes for the very rare double-null haplotype C4AQ0,BQ0. In contrast, partial C4 deficiency is a common immune protein defect in all human populations as a consequence of the high frequency of the C4 half-null haplotypes. Complete C4 deficiency in most cases gives rise to SLE and an increased susceptibility to infections, and partial C4 deficiencies predispose to different auto-immune diseases related to extended HLA haplotypes bearing the C4 half-null haplotypes. Studies at the DNA level have shown that about half of the null alleles are due to deletions involving C4A and 21-OHA, C4B and 21-OHA or C4B and 21-OHB. Larger deletions including both C4A and C4B genes have never been observed. Partial C4 deficiency may be observed in combination with other complement deficiencies or immune defects, and allo- or auto-anti-C4 immunization is also a possible consequence of this genetic abnormality. Although the pathogenesis of the diseases related to complete and partial C4 deficiencies is not yet clearly understood, it is evident that C4 null alleles represent interesting markers and additive risk factors for autoimmune phenomena.

Alleles↗

Elevated kallikrein activity in plasma from stable liver transplant recipients.

Extensive in vitro conversion of complement components C3 and C4 has been observed in EDTA plasma obtained from a number of stable orthotopic liver transplant recipients (LTR) [Clin. Chem. 45 (1999) 1190]. Consequently, we designed a chromogenic substrate (Ac-Ala-Gly-Leu-Thr-Arg-p-nitroanilide, AGLTR-pNA), based on the C1s cleavage site in complement component C4, in an attempt to identify the plasma proteinase(s) that cleaves C4 in vitro. Average peptidase activity in EDTA plasma obtained from stable LTR (n = 16) was significantly higher (P<0.01) than that in plasma from healthy non-transplant donors (n = 16). This peptidase activity was also detected using commercial substrates designed for specific coagulation proteinases. The plasma proteinase was not inhibited by hirudin, a thrombin inhibitor, but was inhibited by the plasma kallikrein inhibitor D-Phe-Phe-Arg-chloromethylketone, which fails to inhibit C1s. We concluded that the peptidase detected inLTR plasma, using chromogenic substrates including AGLTR-pNA, was plasma kallikrein. Western blot analysis confirmed the presence of kallikrein-alpha-2-macroglobulin complexes (alpha2M) in LTR plasmas. We also demonstrated that kallikrein was not the proteinase responsible for the in vitro cleavage of C4. Elevation of the plasma peptidase activity correlated significantly with recurrent hepatitis C virus (HCV) infection in these liver recipients with a P value <0.02. Significant correlation was not observed between complement activation (i.e. the C4a levels) and recurrent HCV infection (P>0.15); however, C4a levels did correlate with rejection (P<0.02). These results suggest that elevation in plasma peptidase activity and activation of complement do signal different pathological events in LTR, events that appear related to HCV-induced infection and immune tissue injury, respectively.

Adult↗

A model for the interplay of inflammatory mediators in sepsis--a study in 48 patients.

Previously we studied levels of the cytokine IL-6 and activation of the complement and contact system and of neutrophils in a group of 48 patients with sepsis. Some of these inflammatory parameters appeared to be associated with a poor prognosis. Here we report on the relationships of C4a and C3a (complement activation products), of factor XII and prekallikrein (contact system proteins), of elastase (a protease released by activated neutrophils) and of the cytokine IL-6 to hemodynamic and biochemical parameters measured in those 48 patients at the time of admission to the Intensive Care Unit. No significant correlations between any inflammatory parameter and either systemic vascular resistance or cardiac index were found. Mean arterial pressure significantly correlated with both factor XII and prekallikrein levels. Lactate correlated with C3a and C4a, with elastase, and in particular, with IL-6, whereas it did not correlate with either factor XII or prekallikrein. Platelet numbers inversely correlated with both C3a and C4a, as well as with elastase and IL-6, whereas they positively correlated with factor XII and prekallikrein. Based on these findings we propose a model for the interplay of these inflammatory mediators in the pathogenesis of sepsis. This model takes into consideration the occurrence of capillary leakage, shock, disseminated intravascular coagulation, thrombocytopenia and of acute phase reactions in sepsis.

Complement Activation↗

Hormonal profiles in Italian late-onset adrenal hyperplasia correlate with HLA class III polymorphisms.

To investigate the genetic polymorphisms of the HLA region in late-onset adrenal hyperplasia, 13 Italian patients affected by the disease were analyzed for: (1) HLA-A and -B typing; (2) restriction fragment length polymorphism (RFLP) of DR beta, DQ beta, DQ alpha, 21-hydroxylase A and B genes; (3) fourth complement fraction loci A and B (C4A and C4B), second complement fraction (C2) and properdin B factor (Bf) complement typing; (4) hormonal characteristics associated with some HLA haplotypes. HLA alleles B14 and DR beta 1 were found to be significantly more frequent in patients with respect to controls (relative risk: 8.7 and 7.2, p less than 0.001 and p less than 0.0001, respectively). Also C4B*2, 1 duplication was more frequent in patients than in normal subjects (23% vs. 1.5%, p less than 0.0001). Moreover, patients carrying a duplicated C4B (as well as those having the B14 antigen) showed higher 17-hydroxyprogesterone levels after ACTH stimulation. RFLP analysis of 21-hydroxylase genes with a specific probe revealed a duplication of 21-hydroxylase A gene in 40% of patients. All these individuals carried the C4A*2 B*2,1 phenotype and 75% of them displayed a clearly recognizable duplication at the C4B locus. These data support the hypothesis that in late-onset adrenal hyperplasia the 21-hydroxylase A pseudogene, even if inactive, may play a negative role in the regulation of 21-hydroxylase biosynthesis. Furthermore, we suggest analyzing class III phenotypes to screen the enzymatic defect.

17-alpha-Hydroxyprogesterone↗

Complement C4B-null alleles in Felty's syndrome.

C4A and C4B allotypes were compared in 20 patients with Felty's syndrome (FS), 52 patients with rheumatoid arthritis (RA), and 55 control subjects. Nineteen of the FS patients had HLA-DR4. A C4B-null allele was more frequent in the patients with FS (60%) than in either the RA patients (15%) or the control subjects (26%). Only the differences between patients with FS and those with RA remained statistically significant when DR4 positive subjects were compared. The C4B null allele may identify individuals within the rheumatoid population who are at risk of developing particular systemic complications.

Alleles↗

Adsorption of anaphylatoxins and platelet-specific proteins by filtration of platelet concentrates with a polyester leukocyte reduction filter.

Anaphylatoxins generated during storage of platelet concentrates (PCs) may potentially have side effects on platelet transfusion. We evaluated the anaphylatoxin-scavenging abilities of white blood cell reduction filters. Among the commercially available filters for PCs, one made with polyester fiber (PL50) dramatically adsorbed C3a and C4a anaphylatoxins to the respective mean level of 1,721-208 ng/ml and 1,240-141 ng/ml in 3-day-old PCs. C3a and C4a were measured as the native and des Arg form of each complement by radioimmunoassay. C3a and C4a anaphylatoxins in the supernatant plasma fraction from 3-day-old PC again decreased from 1,136 to 114 ng/ml and from 1,086 to 65 ng/ml, respectively. The filter also adsorbed 85% of platelet factor 4 (PF4) and 31% of beta-thromboglobulin (beta-TG), which had been released from platelets into the plasma during storage. The plasma levels of adhesive proteins such as fibronectin, fibrinogen, and von Willebrand factor, and plasma lactate dehydrogenase activity did not decrease after filtration. Another polyester filter (PL5A), on the other hand, significantly increased C3a and C4a levels with filtration. In addition, there was no PF4 adsorption ability during the filtration. The filters for red cells (RC50, BPF4, and R500A) had no anaphylatoxin adsorption capabilities. The observed specific adsorption of anaphylatoxins might be attributed to the electrostatic force between the positively charged anaphylatoxins with high pI and the possibly negatively charged filter membranes. Since PF4 and beta-TG have positively charged moieties in the C-terminal position, the same adsorption mechanism might operate.(ABSTRACT TRUNCATED AT 250 WORDS)

Adsorption↗

Anaphylatoxin levels in human vitreous humor.

The complement system is involved not only in host defense against infection but also in autoimmune tissue damage. Using a radioimmunoassay, we sought to measure levels of C3a, C4a and C5a (activated complement fragments with anaphylatoxin functions) in human vitreous humor from eyes with and without vitreal inflammation. Vitreous from 11 patients with clinical evidence of vitritis (Group 2) had significantly higher levels of protein, C3a and C4a and significantly higher ratios of these anaphylatoxins to protein than vitreous from 19 patients without clinical evidence of vitritis (Group 1). The finding that not only the absolute levels of anaphylatoxins but also the ratios of anaphylatoxins to protein were significantly higher in vitreous from Group 2 than vitreous from Group 1 or normal plasma suggested that complement activation was taking place in inflamed vitreous. Because of irreversible binding to leukocytes, C5a is difficult to measure and correlate with complement activation, and we were unable to detect it in any vitreous sample.

Anaphylatoxins↗

Family study of the major histocompatibility complex in patients with systemic lupus erythematosus: importance of null alleles of C4A and C4B in determining disease susceptibility.

The families of 29 patients with systemic lupus erythematosus and 42 normal subjects were studied to determine the inheritance of the HLA-A, B, C, and DR antigens and also the complement polymorphisms for C2, C4A, C4B, and Bf, which are encoded in the same region of the sixth chromosome. Null (silent) alleles for C4A, C4B, or C2 were found in 24 of the 29 (83%) patients compared with 18 of the 42 (43%) normal controls. HLA-DR3 was present in 20 (69%) of the patients and seven out of 39 (18%) of the normal controls. There was strong linkage disequilibrium between DR3 and the null alleles for C4A and C4B. The data did not permit the relative contributions of DR3 and null factors of C4A and C4B as genetic risk factors to be distinguished. The known association of systemic lupus erythematosus with uncommon inherited and acquired deficiencies of complement components suggests, however, that the presence of null alleles for C4A and C4B, as well as C2, found in most of the patients, is relevant to their genetic susceptibility to this disease.

Adolescent↗

Accentuated formation of the terminal C5b-9 complement complex in patient plasma precedes development of the adult respiratory distress syndrome.

Extensive studies have been conducted to determine the pathogenesis of the adult respiratory distress syndrome (ARDS) by investigating the role of complement, a mediator of inflammation. Complement activation products have been detected in blood samples from patients during ARDS. However, the individual complement components that have been assessed only indicated generalized inflammation, and none could unequivocally discriminate the onset of this acute inflammatory lung injury. In this two-year prospective study of 87 septic patients, 22 of whom developed ARDS (25%), we determined complement activation by quantifying the terminal complement complex (TCC), C5b-9. The TCC is a stable complement by-product formed following activation of either the classical or alternative pathways. Our results show that plasma TCC concentrations increased an average of 110% (p = 0.002) two days prior to the onset of ARDS and also transiently increased an average of 45% (p = 0.01) immediately preceding its resolution. Furthermore, plasma TCC concentrations were a more sensitive measure of this acute inflammatory lung injury than levels of C3a desarginine, C4a desarginine, C5a desarginine, and total hemolytic complement activity. We conclude that a temporal association exists between accentuated formation of plasma TCC and the development and also resolution of septic ARDS. Therefore, we suggest that researchers include plasma TCC concentrations in clinical studies when they could use a potential early indicator for ARDS.

Complement Activation↗

[Clinical applications of recombinant complement inhibitors].

The complement system constitutes an important part of the innate immune system. Complement activation leads to the generation of C3a, C4a and C5a anaphylatoxins and the membrane attack complex. The anaphylatoxins mediate multiple reactions in the acute inflammatory response. Membrane attack complex inserts molecules into target membranes and causes cell lysis. The complement system can not discriminate between self and non-self cells and the inappropriate complement activation may lead to host cell damage. This destructive activity is tightly regulated by family of structurally and functionally related soluble and membrane-bound proteins, which act as inhibitors of complement system. The inappropriate complement activation plays an essential role in the pathogenesis of many diseases. In the therapy of these diseases specific recombinant complement inhibitors can be used. Recombinant complement inhibitors can be produced in large amounts by different eukaryotic or prokaryotic systems. The choice of the system depends on kind of the post-translational modifications of proteins.

Anaphylatoxins↗

Amino acid residues 1101-1105 of the isotypic region of human C4B is important to the covalent binding activity of complement component C4.

The C4A and C4B isotypes of human C4 show certain functional differences that stem from their relative preference for transacylation to amino (-NH2) vs hydroxyl (-OH) nucleophiles, respectively, on complement-activating surfaces. Comparison of amino acid sequences of the alpha-chain fragment of C4, C4d, has shown C4A- and C4B-specific sequences at residues 1101-1106 are the only consistent structural difference between isotype, i.e., Pro, Cys, Pro, Val, Leu, Asp in C4A and Leu, Ser, Pro, Val Ile, His in C4B. These residues may be responsible either in part or entirely for properties associated with isotype. To examine the functional role of residues 1101-1106 in C4B-mediated hemolysis, whole serum or immunopurified human C4 with allotypes, A3B1, A3, B2B1, or B1 were preincubated in the presence or absence of an antipeptide mAb (BII-1) specific for amino acid residues 1101-1105 of C4B. Sensitized sheep E and C4-deficient guinea pig serum was then added and lysis measured by absorbance at 415 nm. Our results show lysis of antibody-sensitized sheep E is inhibited by antibody and C4B2B1, C4B1, or C4A3B1 but not antibody and C4A3. The interference of hemolysis by BII-1 could not be explained by inhibition of activation of C4B or inhibition of C3 or C5 convertase activity. Furthermore, results from uptake experiments show that BII-1 interferes with the covalent binding activity of C4B, indicating residues 1101-1105 play a role in the covalent binding reaction of C4B to the target E-antibody complex.

Amino Acid Sequence↗

Partial complement deficiencies in idiopathic thrombocytopenia of childhood.

We have examined the classical complement activation pathway in 36 children with idiopathic thrombocytopenia (ITP) in a retrospective study. An increased prevalence of congenital, partial complement deficiencies is found in ITP. Homozygous C4A deficiency was found in 5 patients (p < 0.05) and heterozygous C2 deficiency in 2 other patients (p = 0.05). We suggest that some cases of childhood ITP belong to the immune complex mediated diseases, such as systemic lupus erythematosus and that abnormal immune complex formation and clearance may lead to ITP.

Adolescent↗

Polymorphism of the human complement component C4.

The genes encoding the two C4 isotypes, C4A and C4B, lie 10 kb apart in the class III region of the human major histocompatibility complex. The two isotypes exhibit extensive structural polymorphism. Characterisation of a number of C4A and C4B alleles has established the pattern of polymorphism in C4 and this has provided a structural basis for the observed functional and serological differences between the C4 isotypes. An intriguing feature in the genetics of C4 is the unusually high frequency of null alleles forming half null C4A and C4B haplotypes. Duplication of one of the loci has also been recognised. In addition the genes can differ in size due to the presence or absence of a large intron near the 5' end of the genes. These differences in gene size and gene number can be observed directly on different haplotypes using pulsed field gel electrophoresis.

Alleles↗

Influence of hepatic mitochondrial redox state on complement biosynthesis and activation during and after cardiopulmonary bypass operations.

We have proposed the hazardous phenomena associated with cardiopulmonary bypass (CPB) are due to metabolic derangement by hepatic mitochondrial dysfunction during and after CPB. On the contrary, complement activation and consumption during CPB is reported to be related to the morbidity associated with cardiac surgery. To determine the significance of the hepatic mitochondrial function on the morbidity of cardiac surgery, we measured the serum levels of complements (C3 and C4), activated complements (C3a and C4a), and the arterial ketone body ratio (AKBR), which reflects the hepatic mitochondrial redox state, in 30 patients undergoing CPB. The AKBR, which was at a normal level preoperatively, dropped to a critical level after the initiation of CPB and remained at a low level during the CPB, returning to the preoperative level on the second postoperative morning in a time dependent fashion. The patients group were assigned to two groups according to their AKBR on the first postoperative morning. Group I consisted of patients whose AKBR had recovered to above 0.7 on the first postoperative morning (n = 16). Group II consisted of the rest of the patients (n = 14). The serum complement concentration had considerably decreased by the end of bypass, but recovered in a time-dependent fashion after CPB. The group I patients (C3: 71% of its preoperative value, C4: 85% of its preoperative value) recovered their complements more quickly than the group II patients (C3: 56% of its preoperative value, C4: 54% of its preoperative value). However, the serum C3a and C4a concentrations increased by the end of bypass (C3a: 806% of its preoperative value, C4a: 341% of its preoperative value). The activated complements were significantly higher in the group II patients (C3a: 124% of its preoperative value, C4a: 236% of its preoperative value) than in the group I patients (C3a: 75% of its preoperative value, C4a: 113% of its preoperative value) on the first postoperative morning. It is suggested that hepatic mitochondrial function is related to recovering the complements and to reducing the activated complements after CPB.

Adolescent↗

Cytokine, complement, and endotoxin profiles associated with the development of the adult respiratory distress syndrome after severe injury.

OBJECTIVE: The adult respiratory distress syndrome (ARDS) is a frequent complication after severe accidental trauma. This study examines the hypothesis that increased systemic concentrations of proinflammatory cytokines, endotoxin, or complement fragments may predict the development of ARDS. DESIGN: Prospective, observational study. SETTING: Two Level I university trauma centers. PATIENTS: Fifteen severely injured patients (Injury Severity Score of > or = 25). INTERVENTIONS: Standard emergency department, operating room, and intensive care unit management. MEASUREMENTS AND MAIN RESULTS: Plasma samples were obtained at 4-hr intervals from the time of injury and were assayed for concentrations of endotoxin, tumor necrosis factor-alpha, interleukin (IL)-1 beta, IL-6, IL-8, and complement fragments C3a and C4a. Hemodynamic and oxygen metabolism variables also were measured at 4-hr intervals after injury. Seven patients developed ARDS and eight patients did not. The PaO2/FIO2 ratio was significantly decreased in the patients with ARDS compared with non-ARDS patients as early as 4 hrs postinjury, and remained significantly decreased throughout the initial 24 hrs after severe accidental injury. Plasma IL-8, IL-6, C3a, and C4a concentrations were markedly increased starting in the immediate postinjury period in both ARDS and non-ARDS patients, but no significant differences were found between the two groups until 16 hrs after injury when plasma IL-8, C3a, and C4a concentrations became significantly higher in the ARDS group. Neither the ARDS nor non-ARDS patients showed the presence of circulating IL-1 beta, TNF-alpha, or endotoxin at any postinjury time point. CONCLUSIONS: These results demonstrate that measurements of plasma concentrations of proinflammatory cytokines, endotoxin, or complement fragments are not helpful in predicting the development of ARDS after severe accidental injury.

Adult↗

[Effect of complement 4 genetic polymorphism on complement activation during cardiopulmonary bypass in open heart surgery among children].

OBJECTIVE: To evaluate the relation between complement 4 genetic polymorphism and complement activation during extracorporeal circulation in open heart surgery among children. METHODS: One hundred and fifty-six children to undergo open heart surgery with cardiopulmonary bypass in Wuhan and surrounding areas were investigated. Blood samples were obtained before the operation to analyze the C4 phenotypes by crossed immunoelectrophoresis. Before the initiation of CPB, at the end of CPB, and 10 minutes after protamine infusion, arterial blood samples were drawn to test the C4a and C3a with radioimmunoassay and lung compliance was recorded. RESULTS: The frequencies of C4 genetic phenotypes AABB, AOBB, OOBB, AABO, and AAOO were 51.28%, 17.95%, 4.49%, and 19.80% respectively among the investigated children. At the end of CPB, The C4a levels remained almost the same, and C3a levels increased significantly. Ten minutes after the protamine infusion, significant increase was seen in the levels of both C4a and C3a, especially in the OOBB phenotype group followed by AOBB phenotype group. The lung compliance began to decrease by the end of CPB, most significantly in the OOBB phenotype group, followed by the AOBB group, along with the increase of C4a level. CONCLUSION: The complement system is activated by the alternative pathway during CPB and by the classic way during the formation of protamine-heparin complexes. The complement system is activated and the lung function is damaged the most seriously during CPB among the persons with OOBB phenotype. The frequency of OOBB phenotype is higher among Chinese than among Caucasians.

Cardiac Surgical Procedures↗

Functional properties of heterogeneous human asialo-C4 and its isotypes C4A and C4B.

The fourth component of human complement (C4) is encoded at two separate but closely linked loci within the MHC on the short arm of chromosome 6. Thus, there are two types of C4 protein in most individual and pooled normal human sera (NHS): C4A and C4B. Incubation of individual sera, pooled NHS, or purified heterogeneous C4 (C4A/C4B) with bacterial sialidase at 37 degrees C increased C-mediated hemolysis of antibody-sensitized sheep erythrocytes 1.54- to 1.93-fold. Comparative studies of Tmax of human C2, using asialo-C4 or buffer-treated C4 on EAC1gp and extrapolation to time 0 indicated a z value 4-fold higher with asialo-C4. This indicated that more hemolytically active C42 complexes are available with sialidase-treated C4 compared to untreated C4. There was no appreciable difference in the % 125I-C4 bound to EAC1gp (sialidase- or buffer-treated). Sera from two different blood donors with C4A3 phenotype (C4BQ0), two different donors with C4B1 phenotype (C4AQ0), and serum from an individual heterozygous deficient at both C4A3 and C4B1 regions (A3, AQ0; B1, BQ0) were investigated. The C4 allotypes, purified from these sera, were treated with sialidase; the C4A3 was enhanced in hemolytic assays by sialidase-treatment (1.52- to 2.3-fold), whereas the C4B1 allotype was not enhanced. Fluorometric determinations revealed that approximately the same percentage of sialic acid was released from sialidase-treated C4A3 and C4B1. Therefore, the increase in hemolytic titer observed after treatment of NHS or purified heterogeneous C4 with sialidase is a property of C4A3 but not a property of C4B1.

Asialoglycoproteins↗

Serum complement levels and severity of sepsis.

The activities (C3a, C4a, C5a) and concentrations (CH50, C3, C4, C5) of serum complement were measured to evaluate the involvement of complement in sepsis. We studied 27 patients with sepsis who were divided into the survivors (Group 1) and the nonsurvivors (Group 2). The levels of C3a, C4a, and C5a were all significantly higher in Group 2 than in Group 1 and closely reflected the severity of sepsis. Levels of C3 and C4 were significantly lower in Group 2 than in Group 1, presumably because these components were consumed as a result of activation of both the alternative and classical pathways. The levels of CH50 and C5 did not differ significantly between the two groups. These findings suggest that complement is closely involved in the exacerbation of the condition of septic patients, and that the measurement of complement activity is useful for evaluating the severity of sepsis.

Adult↗