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Altered C1 inhibitor genes in type I hereditary angioedema.

Hereditary angioedema is an inherited disease transmitted as an autosomal dominant trait and characterized by deficient activity of C1 inhibitor, a glycoprotein that limits intravascular activation of complement. The unavailability of markers for the C1 inhibitor locus has so far precluded access to the genetic bases of the disorder. Using a recombinant-DNA probe for the C1 inhibitor gene, we identified a cluster of four distinctive DNA restriction sites in a multigeneration family. The strict cosegregation of these markers with a low C1 inhibitor level supports the conclusion that a defective structural gene is responsible for the disease. The occurrence of distinct DNA markers in patients from unrelated kinships indicates that, like forms of the condition displaying dysfunctional C1 inhibitor variants, those characterized by protein deficiency are also genetically heterogeneous. Although multiple restriction-site changes in the C1 inhibitor gene are carried by certain patients, DNA markers for this locus are strikingly infrequent among normal persons. These findings indicate that the gene alterations responsible for hereditary angioedema arise more often from DNA rearrangements than from nucleotide substitutions. Such variations in the structure of the C1 inhibitor gene may provide the basis for early and direct identification of persons at risk.

Angioedema↗

[Familial studies of patients with hereditary angioedema].

25 families with 607 members were studied. 165 persons of them suffer from hereditary angioneurotic edema and 28 persons had died from this disease. The clinical forms of the disease are discussed. A classification of angioneurotic edema caused by C-inactivator deficiency is presented. The importance of the examination of C1 inactivator (quantitatively and qualitatively) and of C4 complement fraction in patients with hereditary angioneurotic edema is pointed out.

Adolescent↗

Primary immunodeficiency diseases in Norway.

This study represents the first national epidemiological survey of primary immunodeficiency diseases in Norway. Uniform questionnaires were sent out in April 1998 to all hospital departments considered relevant. As of February 1999, a total of 372 patients have been registered, of whom 69 patients are deceased. With a population of 4.45 million people, the total prevalence of primary immunodeficiency diseases in Norway February 1, 1999 is 6.82 per 100000 inhabitants. Distribution between the main immunodeficiency diagnoses is (a) antibody deficiencies 50.8%, (b) combined deficiencies included other immunodeficiency syndromes 12.4%, (c) complement deficiencies 21.0%, (d) phagocytic disorders 6.7%, (e) and immunodeficiency associated with other congenital diseases 9. 1%. Compared to previous reports from other European countries, there is a smaller proportion of antibody deficiencies due to few IgA deficiencies registered and a large proportion of complement deficiencies due to many patients with hereditary angioedema.

Adult↗

Homozygosity for the IgG2 subclass allotype G2M(n) protects against severe infection in hereditary C2 deficiency.

Homozygous C2 deficiency (C2D) is the most common deficiency of the classical complement pathway in Western countries. It is mostly found in patients with autoimmune disease or susceptibility to bacterial infections and in healthy persons. We wished to assess to what extent other immunological factors might explain differences of susceptibility to infections in C2D. For this reason, 44 Swedish patients with C2D were stratified with regard to the severity of documented infections. Investigations of IgG subclass levels, IgG subclass-specific GM allotypes, concentrations of factor B, properdin, and factor H, and polymorphisms of mannan-binding lectin and the Fc receptors FcgammaRIIa and FcgammaRIIIb were performed. Homozygosity for the G2M*n allele, which is known to promote Ab responses to polysaccharide Ags, was strongly associated with the absence of severe infections (p < 0.001) in the patients, suggesting a major protective role. The combination of mannan (or mannose)-binding lectin and C2 deficiency was found to be a minor susceptibility factor for invasive infection (p = 0.03). Low concentrations of IgG2 and factor B might sometimes contribute to susceptibility to infection. Other factors investigated did not appear to be important. In conclusion, the findings indicated that efficient Ab responses to polysaccharides are protective against severe infection in C2D. Implications with regard to vaccination should be considered.

Adult↗

[Study of the complement system. General principles and perspectives].

Measurement of complement in clinical medicine is traditionally based on the determination of CH50 and immunochemical and/or functional measurement of complement proteins C1q, factor B, C3 and C4. The interpretation of these measurements, as far as complement activation is concerned, can however be difficult as these tests do not allow to discriminate between consumption due to activation, hereditary deficiency, increased rate of synthesis or even hyposynthesis. This explains why their use as markers of evolutivity in diseases where complement activation is occurring has given variable results. New tests for complement activation have been more recently introduced. These are mainly the measurements of the anaphytotoxins, the degradation products of C3 and the membrane attack complex. As these tests reflect more directly complement activation, they may be more reliable markers. The immunochemical and functional measurements of C1-inhibitor are of special interest as they are the tests which allow definitive diagnosis of the hereditary angio-oedema. General principles for the interpretation of the different tests used to evaluate the complement system are presented and discussed.

Anaphylatoxins↗

Antiproliferative activity of ecteinascidin 743 is dependent upon transcription-coupled nucleotide-excision repair.

While investigating the novel anticancer drug ecteinascidin 743 (Et743), a natural marine product isolated from the Caribbean sea squirt, we discovered a new cell-killing mechanism mediated by DNA nucleotide excision repair (NER). A cancer cell line selected for resistance to Et743 had chromosome alterations in a region that included the gene implicated in the hereditary disease xeroderma pigmentosum (XPG, also known as Ercc5). Complementation with wild-type XPG restored the drug sensitivity. Xeroderma pigmentosum cells deficient in the NER genes XPG, XPA, XPD or XPF were resistant to Et743, and sensitivity was restored by complementation with wild-type genes. Moreover, studies of cells deficient in XPC or in the genes implicated in Cockayne syndrome (CSA and CSB) indicated that the drug sensitivity is specifically dependent on the transcription-coupled pathway of NER. We found that Et743 interacts with the transcription-coupled NER machinery to induce lethal DNA strand breaks.

Animals↗

Hereditary C2 deficiency and systemic lupus erythematosus associated with severe glomerulonephritis.

Although an unusually high incidence of immunological diseases has been described in patients with hereditary C2 deficiency, the severity of these illnesses has been relatively mild, suggesting that blocking complement activation beyond C4 may protect against significant complement-mediated inflammation. This report describes studies in a C2-deficient patient with severe systemic lupus erythematosus (SLE) and diffuse proliferative glomerulonephritis. An immunopathological study of the kidney revealed the deposition of properdin, properdin factor B, C3 and C5 in a pattern similar to immunoglobulin G deposits. Serum properdin and properdin factor B levels were low at various times during the patient's course. In vitro complement fixation studies showed C3 fixation by glomerular deposits could occur via the alternative pathway. Studies of the immune deposits in the patients' skin revealed similar results. These studies suggest that inflammation may be effectively mediated via the alternative complement pathway in the C2 deficiency-lupus syndrome.

Adolescent↗

Hereditary angioedema with normal C1-inhibitor activity in women.

BACKGROUND: Hereditary angioedema (HAE) is a well defined autosomal dominant disease (Mendelian Inheritance in Man #106100) that results from an inherited deficiency of C1 (the activated first component of complement) inhibitor function. We report an unusual variant of HAE with normal biochemical C1-inhibitor function, occurring only in women. METHODS: We screened 574 patients with recurrent angioedema of the skin for presence of HAE. 283 patients were selected, in whom angioedema was associated with abdominal pain attacks or recurrent life-threatening episodes of upper-airway obstruction, or both, rather than with urticaria. We measured C1-inhibitor concentration and functional activity as well as complement C4 concentration and took pedigrees to characterise patients. FINDINGS: 94 HAE cases with C1-inhibitor deficiency, positive family history, or both were identified. Biochemical testing showed that 84 patients from 49 families had a functional C1-inhibitor deficiency. 11 of these patients had no affected family members (probably representing de-novo mutations). Ten women with HAE, from ten families, had normal C1-inhibitor protein concentrations and function, and normal C4 concentration. A more detailed study of these families identified another 26 affected members, who were also all women. Of those women, 14 could be studied and also had normal C1-inhibitor concentration and function. The disease was seen in successive generations, and in offspring of affected mothers, the sex ratio (M/F) was shifted to 1/1.5. INTERPRETATION: HAE with normal C1-inhibitor concentration and function represents a unique genetic disease arising only in women. The formal genetics of this entity are suggestive of an X-linked dominant mode of inheritance. For this disorder we propose the term hereditary angioedema type 3 (HAE III).

Abdominal Pain↗

Cancer immunosuppression and autoimmune disease: beyond immunosuppressive networks for tumour immunity.

Cancer immunosuppression evolves by constitution of an immunosuppressive network extending from a primary tumour site to secondary lymphoid organs and peripheral vessels and is mediated by several tumour-derived soluble factors (TDSFs) such as interleukin-10 (IL-10), transforming growth factor-beta (TGF-beta) and vascular endothelial growth factor (VEGF). TDSFs induce immature myeloid cells and regulatory T cells in accordance with tumour progression, resulting in the inhibition of dendritic cell maturation and T-cell activation in a tumour-specific immune response. Tumour cells grow by exploiting a pro-inflammatory situation in the tumour microenvironment, whereas immune cells are regulated by TDSFs during anti-inflammatory situations--mediated by impaired clearance of apoptotic cells--that cause the release of IL-10, TGF-beta, and prostaglandin E2 (PGE2) by macrophages. Accumulation of impaired apoptotic cells induces anti-DNA antibodies directed against self antigens, which resembles a pseudo-autoimmune status. Systemic lupus erythematosus is a prototype of autoimmune disease that is characterized by defective tolerance of self antigens, the presence of anti-DNA antibodies and a pro-inflammatory response. The anti-DNA antibodies can be produced by impaired clearance of apoptotic cells, which is the result of a hereditary deficiency of complements C1q, C3 and C4, which are involved in the recognition of phagocytosis by macrophages. Thus, it is likely that impaired clearance of apoptotic cells is able to provoke different types of immune dysfunction in cancer and autoimmune disease in which some are similar and others are critically different. This review discusses a comparison of immunological dysfunctions in cancer and autoimmune disease with the aim of exploring new insights beyond cancer immunosuppression in tumour immunity.

Animals↗

Hereditary complement (C2) deficiency with discoid lupus erythematosus and idiopathic atrophoderma.

A family with hereditary deficiency of the second component of complement was studied. Three siblings were homozygous for C2 deficiency and two of them had associated skin diseases. One sister presented with idiopathic atrophoderma and the other had clinical and pathological manifestations of discoid lupus erythematosus. This is the first description of an association between idiopathic atrophoderma and C2 deficient state.

Adolescent↗

Genetics of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a complex autoimmune disease in which multiple genes appear to play important roles in pathogenesis. Hereditary deficiencies, both complete and partial, of several components of the complement system clearly predispose to lupus. HLA class II alleles appear to mediate specific autoantibodies, many of which are pathogenic. Modern molecular techniques are now providing insight into the specific major histocompatibility complex class II polymorphisms that are associated with different autoantibodies in SLE. Other genetic systems also may be important.

Complement System Proteins↗

Hereditary porcine membranoproliferative glomerulonephritis type II is caused by factor H deficiency.

We have recently described hereditary membranoproliferative glomerulonephritis type II in the pig. All affected animals had excessive complement activation, revealed as low plasma C3, elevated plasma terminal complement complex, and massive deposits of complement in the renal glomeruli, and eventually died of renal failure within 11 wk of birth. The aim of the present study was to investigate the cause of complement activation in this disease. Transfusion of normal porcine plasma to affected piglets inhibited complement activation and increased survival. Plasma was successively fractionated and the complement inhibitory effect of each fraction tested in vivo. A single chain 150-kD protein which showed the same complement inhibitory effect as whole plasma was finally isolated. Immunologic cross-reactivity, functional properties, and NH2-terminal sequence identified the protein as factor H. By Western blotting and enzyme immunoassay, membranoproliferative glomerulonephritis-affected piglets were demonstrated to be subtotally deficient in factor H. At 1 wk of age, median (range) factor H concentration was 1.6 mg/liter (1.1-2.3) in deficient animals (n = 13) and 51 mg/liter (26-98) in healthy littermates (n = 52). Our data show that hereditary porcine membrano-proliferative glomerulonephritis type II is caused by factor H deficiency.

Amino Acid Sequence↗

Serum complements. Inappropriate use in patients with suspected rheumatic disease.

BACKGROUND: The diagnostic value of serum complement testing is well established in inherited complement deficiencies and glomerulonephritis. Their utility is less certain in diagnosing rheumatic diseases. We noted that complement tests were frequently ordered for patients who were referred to our rheumatology clinic. We sought to determine the clinical rationale for ordering complement tests in our hospital and the effect of the test results in patients with rheumatic diseases. METHODS: We conducted a retrospective medical chart review of patients who had serum complement tests ordered at our hospital. We determined whether the test was ordered as a diagnostic tool in a patient with a suspected rheumatic disease. In these cases, we attempted to correlate the results of the complement tests with the patient's eventual diagnosis. RESULTS: We obtained the medical charts of 130 patients who had 307 complement assays (C3, C4, or total hemolytic complement) performed between October 1988 and July 1989. The tests were ordered for diagnostic reasons in 68% of the patients; 54% of these were ordered by nonspecialists. The complement tests were ordered on 28 patients with suspected rheumatic diseases. The three patients with hypocomplementemia did not have a connective tissue disease. The 10 patients who eventually were diagnosed as having rheumatic disease all had normal serum complement levels. Additionally, we found that 77% of patients had more than one complement assay ordered. The test results were discordant in only 24% of these cases. CONCLUSION: Complement screening is not a useful diagnostic test in most patients with suspected rheumatic disease. Despite their lack of established diagnostic value, these tests were frequently performed in our hospital. Judicious use of complement testing would provide substantial cost savings without a loss of clinically relevant information. When the complement testing is clinically indicated, clinicians should consider using a single C3 assay initially rather than multiple assays unless a hereditary deficiency is suspected.

Adolescent↗

A direct role for C1 inhibitor in regulation of leukocyte adhesion.

Plasma C1 inhibitor (C1INH) is a natural inhibitor of complement and contact system proteases. Heterozygosity for C1INH deficiency results in hereditary angioedema, which is mediated by bradykinin. Treatment with plasma C1INH is effective not only in patients with hereditary angioedema, but also in a variety of other disease models, in which such therapy is accompanied by diminished neutrophil infiltration. The underlying mechanism has been explained primarily as a result of the inhibition of the complement and contact systems. We have shown that C1INH expresses the sialyl-Lewis(x) tetrasaccharide on its N-linked glycan, via which it binds to E- and P-selectins and interferes with leukocyte-endothelial adhesion in vitro. Here we show that both native C1INH and reactive center cleaved C1INH significantly inhibit selectin-mediated leukocyte adhesion in several in vitro and in vivo models, whereas N-deglycosylated C1INH loses such activities. The data support the hypothesis that C1INH plays a direct role in leukocyte-endothelial cell adhesion, that the activity is mediated by carbohydrate, and that it is independent of protease inhibitory activity. Direct involvement of C1INH in modulation of selectin-mediated cell adhesion may be an important mechanism in the physiologic suppression of inflammation, and may partially explain its utility in therapy of inflammatory diseases.

Animals↗

Prekallikrein (Fletcher factor) deficiency.

One new case and 29 reported cases of hereditary prekallikrein (Fletcher factor) deficiency are reviewed. Abnormalities in the coagulation, fibrinolytic, complement, and kinin systems are described. These cases are discovered incidentally by prolonged partial thromboplastin times (PTTs) which correct with extended incubation in the presence of a contact activator. Prekallikrein levels are less than two percent of normal levels. In general, the remainder of the coagulation profile is normal, and no bleeding diathesis is present. Most patients are black and the incidence of consanguinity is increased. The disease is transmitted in an autosomal recessive manner. Acquired Fletcher factor disease is a moderate prekallikrein deficiency present in many common disease states. Its clinical significance is largely unknown. Both acquired and hereditary forms may rarely predispose to thrombotic phenomena.

Adult↗

Nonsense-codon-mediated decay in human hereditary complement C3 deficiency.

C3 occupies a central position in the complement pathway, mediating such diverse functions as convertase activity, opsonization and anaphylotoxin production. The deficiency of this protein is a rare autosomal recessive inherited disease, characterized by severe recurrent infections and immune complex disorders. We looked for molecular alterations that could explain the C3 deficiency present in a Brazilian boy of consanguineous parents who suffered from recurrent bacterial infections. Using reverse-transcriptase polymerase chain reaction to amplify C3 mRNA from LPS-stimulated fibroblasts from the patient, we demonstrated that his C3 gene has no large structural aberrations. However, after sequencing the amplified and cloned products we found: (1). a L314P amino acid substitution; (2). silent mutations at codons P577, S798 and A1437; and finally, (3). an R848STer substitution that results in the production of a truncated protein. Densitometry studies revealed a lower C3 mRNA concentration in the patient's fibroblasts, suggesting an inherent instability of his C3 mRNA. Our results indicate the presence of a premature termination codon in the C3 gene that results in a lack of the protein in patient's serum, which correlates with the acceleration of C3 mRNA decay in the patient's fibroblasts. This mRNA instability is consistent with a nonsense-codon-mediated decay process that ensures the elimination of possible deleterious truncated proteins, which, in the case of constitutively expressed abundant proteins such as C3, may otherwise accumulate to significant levels, leading to toxicity.

Amino Acid Substitution↗

The hereditary and acquired deficiencies of complement.

The identification of hereditary and acquired complement deficiencies in humans has led to a better understanding of the biologic importance of the complement system in immunity and autoimmune disease. Although the understanding of the relevance of complement in the pathogenesis of disease is incomplete, several characteristic clinical syndromes associated with complement deficiencies have been recognized and should be known to the practicing clinician. In allergic diseases, one need recognize the C1 inhibitor deficiency syndromes which can present as severe, recurrent angioedema in childhood or in the adult as recurrent angioedema in association with a lymphoid malignancy or autoimmune disease. Complement analyses allow one to readily diagnose C1 inhibitor deficiency in angioedema. Correct diagnosis is critical because safe effective therapy is available. Chronic urticaria is also uncommonly associated with complement deficiencies, particularly acquired C1q deficiency. Again, effective therapy for hypocomplementemic urticarial vasculitis and C1q deficiency is available and differs significantly from the usual management of chronic urticaria. Homozygous and acquired deficiencies of C3 are associated with severe immune deficiency and recurrent infections with gram-positive and gram-negative bacteria. Recurrent meningococcemia and gonococcemia are being identified frequently in patients with a deficient membrane attack mechanism relating to deficiency of C5, C6, C7, or C8. Nearly one third of the patients developing meningococcemia may have an associated complement deficiency indicating the importance of complement determinations in understanding the treatment and prognosis for these patients. Deficiency of almost every complement component has been reported in association with one or more rheumatic diseases, particularly systemic lupus erythematosus. Extensive studies of C2 deficiency and limited studies of C4 deficiency indicate that these components of the classical pathway of complement are important in preventing the development of SLE or are linked to other genes predisposing to SLE. The clinical presentations of SLE in association with C2 or C4 deficiency are relatively uniform. The patients exhibit typical skin manifestations suggestive of SLE and DLE and often exhibit antibodies to SSA (Ro). The association of complement deficiencies with clinical syndromes is important for today's physician. The syndromes and deficiencies described here are the beginning of an expanding knowledge relating to the pathobiology of complement in human disorders.

Angioedema↗

Eradication of porcine factor H deficiency in Norway.

In pigs a hereditary deficiency of the complement-inhibitory protein factor H consistently leads to the development of lethal membranoproliferative glomerulonephritis type II. This autosomal recessive disease has been a common cause of early losses of piglets in the Norwegian Yorkshire breed, but has not been reported in the Norwegian Landrace breed. The aim of the present work was to identify carriers of factor H deficiency and to eradicate the disease from commercial pig populations. Factor H in plasma was measured by an enzyme immunoassay. Sixteen known carriers of the disease (parents of factor H-deficient offspring) had half the level of factor H (median 110, range 87 to 156 mg/litre) recorded in 17 homozygous healthy Yorkshire pigs (median 212, range 183 to 293 mg/litre) and 20 Landrace pigs (median 227, range 200 to 255 mg/litre). Factor H analysis in 397 piglets produced by the mating of known carriers revealed an approximately 1:2:1 distribution of individuals with very low, half-normal and normal levels of factor H representing homozygous deficient, heterozygous and homozygous healthy individuals. Thus, carriers could be identified reliably by measuring the plasma concentration of factor H. Most of the population of Norwegian Yorkshire breeding pigs (490 pigs) was therefore examined, and a half-normal factor H level consistent with the carrier state was found in 13.5 per cent. These animals were prevented from breeding and since then no losses of piglets suspected of being due to factor H deficiency have been reported. No carrier was identified among 102 Norwegian Landrace boars, almost excluding the existence of factor H deficiency in this breed.

Aging↗