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The C2 domains of Rabphilin3A specifically bind phosphatidylinositol 4,5-bisphosphate containing vesicles in a Ca2+-dependent manner. In vitro characteristics and possible significance.

In the present study we investigated the lipid binding characteristics of the C2 domains of Rabphilin3a. We found that the tandem C2 domain of Rabphilin3a specifically bound lipid vesicles containing phosphatidylinositol 4,5-bisphosphate (PtdIns(4,5)P2) in a Ca2+-dependent manner. There was little binding to vesicles containing PtdIns(3,4)P2 in the presence or absence of Ca2+. Binding to phosphatidylinositol 3,4,5-triphosphate-containing vesicles was similar to binding to PtdIns(4,5)P2-containing vesicles. The presence of physiological amounts of phosphatidylserine (PS) greatly potentiated the ability of PtdIns(4,5)P2 to cause vesicle binding. As with the C2 domains together, the binding of individual C2 domain of Rabphilin3a was much greater to PtdIns(4,5)P2-containing vesicles than PtdIns(3,4)P2-containing vesicles. Both C2 domains also bound 29 mol % PS-containing vesicles in a Ca2+-dependent manner. Because of the importance of the C2B domain in the enhancement of secretion from chromaffin cells by Rabphilin3a, its biochemistry was further investigated. The mutation of aspartates 657 and 659 to asparagines in C2B decreased Ca2+-dependent and increased Ca2+-independent vesicle binding, indicating the Ca2+ dependence of the domain is provided by aspartic acid residues in the putative Ca2+-binding pocket. A peptide from the COOH-terminal region of the C2B domain specifically inhibited ATP-dependent secretion from permeabilized chromaffin cells and the binding of Rabphilin3a to phosphatidylcholine/PS/PtdIns(4,5)P2-containing lipid vesicles, suggesting a role of this sequence in secretion through its ability to interact with acidic lipid vesicles.

Adaptor Proteins, Signal Transducing↗

Identification of multiple HTF-island associated genes in the human major histocompatibility complex class III region.

Chromosome walking in the major histocompatibility complex (MHC) class III region has resulted in the isolation of 541 kb of genomic DNA in two sets of overlapping cosmid clones. These two sets encompass the 340 kb separating the C2 and tumour necrosis factor (TNF) alpha and beta genes, except for a 22 kb gap 108 kb centromeric to the TNF alpha gene. The genomic DNA inserts have been characterized for the presence of clusters of restriction sites with CpG dinucleotides in their recognition sequence. In conjunction with pulsed field gel electrophoresis the exact sites which cleave in chromosomal DNA have been established and this has suggested the presence of a number of HTF-islands. Genomic probes flanking the HTF-islands have been hybridized to Northern blots of RNA from a number of cell lines. Transcripts ranging in size from 0.6 to 6 kb corresponding to the products of 12 novel, single copy genes have been identified. In addition the human equivalent of the murine B144 gene was mapped approximately 10 kb centromeric of the TNF alpha gene. The location of so many new genes in this region raises the question as to whether they play any role in the observed HLA associations with an individual's susceptibility to develop autoimmune disease.

Base Sequence↗

The role of ion channels and protein kinase C activation in the stimulation of complement protein synthesis.

Monocyte C2 synthesis is stimulated by antigen-antibody complexes (IC), carbamylcholine (C-Ch), phenylephrine (PE) and gamma-interferon. Tetrodotoxin or nifedipine abrogated the effects of IC, C-Ch and PE but did not influence the effect of gamma-interferon on C2 synthesis. Thus stimulation of C2 synthesis by IC, C-Ch and PE is dependent upon activation of Na+/K+ and Ca2+ channels, whereas gamma-interferon operates independently of these ion channels. Calcium channel agonists (CG28392 and BK8644) stimulated C2 synthesis, and this effect was prevented by nifedipine but not by tetrodotoxin. Thus Na+/K+ channels are activated prior to Ca2+ channels. Stimulation of C2 synthesis occurred when phospholipase C or phorbol myristate acetate (PMA) were added to the monocyte cultures, suggesting that PI cycle turnover and protein kinase-C (PK-C) activation are involved in the stimulation of C2 synthesis in monocytes. PMA, an activator of PK-C, stimulated the synthesis of C2, C3, B, P and C1-inhibitor approximately two-fold. In contrast gamma-interferon reduced synthesis of C3 and P by 44% and 22% respectively, and stimulated C1-inhibitor synthesis twelve-fold. These data suggest that the action of gamma-interferon complement synthesis is, at least partially, independent of PK-C activation. The effects of IC, C-Ch, PE, PI, CG28392, BK8644 and gamma-interferon were inhibited by trifluoperazine implying that calmodulin and/or other calcium binding proteins play a role in the modulation of complement protein production.

Calcium Channel Agonists↗

Polymorphism of the human complement C4 and steroid 21-hydroxylase genes. Restriction fragment length polymorphisms revealing structural deletions, homoduplications, and size variants.

Several autoimmune disorders as well as congenital adrenal hyperplasia (CAH) are either associated or closely linked with genetic variants of the fourth component of complement (C4A and C4B) and the enzyme steroid 21-hydroxylase (21-OH). These proteins are encoded by genes that are located downstream from the genes for complement proteins, C2 and factor B (BF) between HLA-B and -DR in the major histocompatibility complex (MHC). Previous studies of variants and null alleles were based on electrophoretic mobility of C4 protein and linkage with disease phenotypes. These data did not permit analysis of the basis for the observed null alleles and duplicated variants. We studied this region of the MHC in 126 haplotypes for a structural analysis of the four adjacent loci, C4A, 21-OHA, C4B, and 21-OHB. About half of the C4 genes typed as C4 null are deleted and several unrecognized homoduplicated C4 alleles were detected. Hence the frequencies of different C4 structural variants must be recalculated based on a direct analysis of the genes. Analysis of the C4/21-OH genes of patients with the classical (salt-wasting) form of CAH showed that some involve a deletion of the C4B and 21-OHB genes; whereas for two only the 21-OHB gene is deleted, i.e., the C4B gene is present. Together, these data provide a better understanding of the mechanisms generating and importance of deleted C4 and 21-OH null alleles in human disease.

Adrenal Hyperplasia, Congenital↗

Results of a three-year prospective study of C2 monitoring in long-term renal transplant recipients receiving cyclosporine microemulsion.

BACKGROUND: The clinical utility of C(2) monitoring of cyclosporine A microemulsion (CsA-ME) was evaluated in a prospective study of 110 patients more than 12 months posttransplant who demonstrated stable graft function and were receiving CsA-ME and steroids. METHODS: Patients were converted to C(2) monitoring with the CsA-ME dose adjusted to a target C(2) range of 800 to 1,000 ng/mL and followed for 40 + 11 months. RESULTS: At the time of conversion, 57% of patients exceeded the C(2) target, 20% of patients were below the C(2) target, and 23% of patients were within the C(2) target range. The mean dose of CsA-ME decreased from 258 + 88 to 202 + 76 mg/day (P < 0.0001), and the mean C(2) level decreased from 1,052 + 292 ng/mL to 896 + 233 ng/mL (P < 0.0002). There were no episodes of rejection. At last follow-up, 7.3% of patients had developed chronic renal allograft dysfunction. Use of antihypertensive agents decreased significantly (P = 0.0004), and mean total cholesterol decreased from 6.4 + 1.3 to 5.8 + 1.1 (P = 0.0009) after adoption of C(2) monitoring. CONCLUSION: These findings suggest that conversion of maintenance renal transplant recipients from C(0) to C(2) monitoring of CsA-ME offers the clinical benefits of better control of hypertension and dyslipidemia, with effective protection against chronic renal allograft dysfunction. A target C(2) range of 800 to 1,000 ng/mL in maintenance patients receiving CsA-ME dual therapy seems appropriate.

Adult↗

Characterisation of the novel gene G11 lying adjacent to the complement C4A gene in the human major histocompatibility complex.

Twelve transcriptional units have now been located in a 160 kb segment of DNA that includes the genes encoding members of the serum complement system C2, Factor B (Bf) and C4 within the class III region of the human major histocompatibility complex (MHC). The common arrangement of these genes is tel-C2-Bf-RD-G11-C4A-[P450c21A-YA-XA]-C4B-[P450c21B-YB ]-+ ++TNX-cen. Characterisation of cDNA and genomic clones corresponding to the novel gene G11 has revealed that the gene spans approximately 9.1 kb of DNA and is split into 7 exons. The 5' end of the gene is associated with a CpG-island while the 3' end of the gene lies 611 bp from the transcriptional start site of the C4A gene. The approximately 1.4 kb G11 mRNA, which is expressed in a number of different cell types including monocytes, hepatocytes, epithelial cells, T and B lymphocytes, encodes protein products of 254 or 258 amino acids due to differential use of two splice sites lying 12 bp apart at the end of exon 3. These polypeptides share homology with a limited number of proteins including human cytochrome P450XIB1 and the tyrosine kinase transforming protein from fujinami virus. Duplication of the C4/P450c21 transcriptional unit occurred by a nonhomologous recombination event. Sequence analysis of a 1.5 kb segment of DNA flanking the C4B gene has revealed that 914 bp of the 3' end of the G11 gene also lies 611 bp from the transcriptional start site of the C4B gene.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Association of C4B deficiency (C4B*Q0) with erythema nodosum in leprosy.

A considerable number of studies have postulated significant associations between susceptibility to the different clinical manifestations of leprosy and the MHC. In this investigation, the association between the MHC class III complement proteins C2, BF, C4A and C4B and leprosy in a patient population of Southern Brazil was studied. A total of 109 non-related leprosy patients was investigated; 73 presented with lepromatous leprosy (LL), 46 of them had the immunopathological reaction of erythema nodosum (ENL), the remaining 36 were tuberculoid, borderline and indeterminate leprosy (TIBL) patients. The control group included 172 healthy individuals matched with the patients according to their ethnic and geographical origin. C2, BF, C4A and C4B allotypes were determined by standard technologies including Western blots for C2 and C4 variant alleles with monoclonal and polyclonal antibodies. Non-expressed ('silent') C4 alleles in hemizygously deficient individuals were estimated semiquantitatively on the basis of the C4A and C4B isotype ratio and by the MASC ('minimal chi-square') method. The results showed a significantly elevated presence of the non-expressed C4B allele (C4B*Q0) in the LL and ENL patient groups in comparison with the controls. The most significant difference was observed in the ENL group when compared with the controls. In addition, all patients who were homozygously C4B-deficient had ENL, and most of them had the BF*F1 allele. The comparison between LL patients with and without ENL also showed a statistically significant difference in the presence of C4B*Q0, indicating that C4B deficiency itself is associated with ENL. The relative risk of LL patients with the C4B*Q0 allele suffering from ENL was 5.3 compared with LL patients without C4B*Q0. Since immune complexes (IC) are considered to be the pathogenic cause of ENL, our findings indicate that C4B deficiency may play an important role in the abnormal immune response against Mycobacterium leprae and in the lack of IC clearance, leading to ENL reactions. Individuals with this allele seem to be at a higher risk of developing pathological immune reactivity in lepromatous leprosy.

Adult↗

Early complement component depletion and mixed cryoglobulinemia in a "healthy" family.

A family containing two apparently healthy brothers with profound early complement component depletion (C1, C4, C2) and mixed IgG-IgM polyclonal cryoglobulins was studied. The cryoglobulins possessed rheumatoid factor activity and depleted early complement components in normal human serum. Circulating immune complexes could not be detected by utilizing standard methods. The phenomenon was not HLA-linked. This study demonstrates the familial occurrence of a chronic hypocomplementemic state associated with cryoglobulinemia in clinically normal subjects.

Adult↗

Hereditary C2 deficiency in Sweden: frequent occurrence of invasive infection, atherosclerosis, and rheumatic disease.

Although frequently asymptomatic, homozygous C2 deficiency (C2D) is known to be associated with severe infections and rheumatic disease. We describe the clinical findings in 40 persons with C2D from 33 families identified in Sweden over 25 years. Medical records covering 96% of the accumulated person-years were reviewed, giving a mean observation time of 39 years (range, 1-77 yr). Severe infection was the predominant clinical manifestation in the cohort: 23 patients had a past history of invasive infections, mainly septicemia or meningitis caused by Streptococcus pneumoniae, and 12 patients had repeated infections of this kind. Nineteen patients had at least 1 episode of pneumonia, and recurrent pneumonia was documented in 10 patients. Repeated infections occurred mainly during infancy and childhood. Systemic lupus erythematosus was found in 10 patients. Another 7 patients had undifferentiated connective tissue disease (n = 4) or vasculitis (n = 3). We found no correlation between susceptibility to invasive infection and rheumatologic disease. Cardiovascular disease occurred at a high rate, with a total of 10 acute myocardial infarctions and 5 cerebrovascular episodes in 6 patients. Causes of death among the C2D patients were infection (n = 5), acute myocardial infarction (n = 3), and cancer (n = 1). We suggest that severe infection may be the principal clinical manifestation of C2D. We also provide novel evidence for a possible role of C2D in the development of atherosclerosis consistent with findings in mannan-binding deficiency and experimental C3 deficiency. In addition, we confirm the well-known association between C2D and systemic lupus erythematosus.

Adolescent↗

Gene clusters and the HLA system.

The major human histocompatibility, or HLA system, is now known to include a number of closely linked loci controlling cell surface specificities, components of the complement system and immune response. Three loci, HLA-A, B and C, control serological determinants found on nearly all cells; a fourth locus, HLA-D, codes for determinants controlling the mixed lymphocyte culture reaction that are present only on B lymphocytes and monocytes. The products of the HLA-A, B and C loci are very similar to each other, as expected if they have arisen by duplication from a common ancestor. The HLA-D products however, show no homology with these and each in turn is different from the complement components (C2, C4 and Bf) coded for in the HLA region. If this complex genetic region has arisen by a series of duplications, one must explain how four different structural gene products can arise from a single duplicated nucleic acid sequence. Different proteins could be translated from the same nucleotide sequence through the use either of different reading frames or of different, not necessarily adjacent, parts of a sequence in different combinations. It seems likely that the general organization of the genetic material of higher organisms is into clusters of duplicated genes like the HLA region and that the numbers of such clusters, rather than the number of individual genes, reflects the genetic complexity of higher organisms.

Alleles↗

Anti-dsDNA and complement profiles as prognostic guides in systemic lupus erythematosus.

Antibodies to dsDNA, tested with circular DNA in the Farr assay, are specific for systemic lupus erythematosus. A longitudinal study showed a clear relation between the clinical state, the anti-dsDNA titer (expressed in units), and the C1q and C3 levels: when anti-dsDNA levels remained high, no exacerbations were observed. A sharp drop in anti-dsDNA, usually preceded by a rise, was related to a serious exacerbation. Only during the exacerbation when both C1q and C3 were very low was renal involvement seen.

Antibodies, Antinuclear↗

HLA-B27 haplotypes in family studies of ankylosing spondylitis.

Although HLA-B27 carries a high relative risk for development of ankylosing spondylitis (AS), most B27 positive individuals do not have spondylitis. One interpretation of this observation is that there may be 2 types of B27, 1 which carries the risk factor and 1 which does not. If this were the case, then with the help of markers closely linked to HLA-B, it might be possible to detect differences between the B27 haplotypes in AS patients and those in healthy probands. We studied 197 members of 18 families with known AS and 110 members of 19 families in which HLA-B27 was present without any known inflammatory spinal disease. HLA antigens A, B, and C and alleles of complement components C2, C4, and Factor B and glyoxalase-1 were determined in all cases. Detailed haplotypes were assigned and their associations with development of the disease were examined. We were unable to identify any distinct HLA-B27 haplotype associated with AS; 2 common haplotypes and several miscellaneous ones were found in both groups. Thinking that the development of AS might be influenced by the other, non-B27 haplotype, we analyzed this and found that there was no detectable influence. The data do not contradict the notion that B27 in whites is a single entity and is itself the susceptibility factor predisposing to the development of ankylosing spondylitis.

Adult↗

Transcriptional regulation of the gene for the second component of human complement: promoter analysis.

The 5' flanking region of the human gene for the second component of complement was sequenced and analyzed functionally. RNase protection demonstrated a cluster of four initiation sites in the 5' flanking region utilized in the hepatoma cell line, HepG2. Utilization of all four initiation sites increased in response to gamma-interferon (IFN-gamma). Transient transfection analysis was used to examine cis-acting sequence motifs controlling transcription from the 5'-flanking region. We identified a 228-bp minimal promoter fragment which was able to direct basal and IFN-gamma inducible transcription from authentic initiation sites. Sequence motifs outside of this region may modulate the transcriptional regulation of the second component of complement. Although complement components are not coordinately regulated, we identified four regions of significant homology with the promoters of multiple other complement components. Three of these regions were within the minimal promoter fragment.

Animals↗

Evidence of NK cell dysfunction in SIV-infected rhesus monkeys: impairment of cytokine secretion and NKG2C/C2 expression.

Defects in the adaptive immune response have been extensively characterized in human immunodeficiency virus type-1 (HIV-1)-infected individuals; however, much less is known about the function of natural killer (NK) cells during the course of HIV-1 infection. In the present study, we demonstrate that the NK cells from simian immunodeficiency virus (SIV)-infected rhesus monkeys are significantly impaired in their ability to secrete IFN-gamma, TNF-alpha, and IL-2, while NK cell function in SIV-infected long-term non-progressor monkeys is similar to that of normal monkeys. These findings suggest that abnormal NK cell activity may contribute to the global immune dysfunction observed in HIV-1-infected individuals. NK cell function is modulated by several families of cell surface receptors, including the CD94/NKG2 family. We evaluated the messenger RNA levels of these inhibitory and activating NKG2 molecules in SIV-infected rhesus monkeys. These experiments demonstrate that the activating molecules NKG2C and NKG2C2 are significantly down-regulated in peripheral blood mononuclear cells of SIV-infected rhesus monkeys, suggesting that the dysregulation of these molecules may contribute to the abnormal NK cell function observed in the setting of infection.

Animals↗

Decreased fibronectin biosynthesis by human cord blood mononuclear phagocytes in vitro.

Cultured cord blood monocytes synthesize significantly less fibronectin than cultured monocyte-macrophages from adult peripheral blood. Biosynthesis of the second component of complement in vitro is similar for both cell systems. The monocyte-macrophages from neonates and adults have similar functional and morphologic properties in long-term cultures. The decreased monocyte-macrophage biosynthesis of fibronectin observed in vitro may be in part related to the reduced plasma fibronectin concentrations and reticuloendothelial system hypofunction which occur in newborn infants.

Adult↗

Fibronectin and complement secretion by monocytes and peritoneal macrophages in vitro from patients undergoing continuous ambulatory peritoneal dialysis.

We investigated the role of the opsonic glycoprotein fibronectin in the host defense of the peritoneum in patients undergoing continuous ambulatory peritoneal dialysis (CAPD). Fibronectin concentration in peritoneal dialysate from high infection rate CAPD patients (greater than 1.50 episodes peritonitis per year) was significantly less than from low infection rate CAPD patients (less than 0.55 episodes peritonitis per year). In vitro secretion of fibronectin by cultured peritoneal macrophages from patients with high infection rate was less than from low infection rate patients (P less than 0.05) and controls (P less than 0.01). In vitro secretion of the second component of complement, however, was similar in both high and low infection rate patients. Plasma fibronectin concentration and in vitro fibronectin secretion by cultured peripheral blood monocytes was not different between high infection rate patients and low infection rate patients, but was less than normals. Decreased fibronectin secretion by peritoneal macrophages is associated with a higher incidence of peritonitis among CAPD patients.

Cells, Cultured↗

[The importance of serum components, particularly complement factors, properdin and transferrin, in inhibition of bacterial growth by human serum (author's transl)].

In this study human serum was broken down of column chromatography into its protein components, which were than examined singly and in comnination for antibacterial activity. The bactericidal effect of serum was retained to an apperciable extent in only one of six fractions. Antibacterial inhibitory activity could be restored fully by combining the fractions however. There was no correlation with the specific antibody titers. Complement had an essential part in this unspecific defence. In the absence of C'9 all other combinations of the remanining complement components exhibited no appreciable inhibitory effect. Not all complement componets are required, however, for unspcific bacterial growth inhibition. In contrast to this all complement components are necessary in the antigen-antibody reaction. Futhermore, properdin displays bactericidal activity which is related to the presence of complements. A great deal of the antibacterial activity of human serum thus arises only from the combined action of several components. These do not include proteins with a molecular weight between 100,000 and 70,000, whereby transferrin plays a part.

Antibody Formation↗