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Biomedical subjects

D Roos

Publications and source records attributed to D Roos.

At least 163 records · Page 9Linked to original sources

Splice site mutations are a common cause of X-linked chronic granulomatous disease.

Chronic granulomatous disease (CGD) is characterized by the absence of a respiratory burst in activated phagocytes. Defects in at least four different genes lead to CGD. Patients with the X-linked form of CGD have mutations in the gene for the beta-subunit of cytochrome b558 (gp91-phox). We studied the molecular defect in four patients with X-linked CGD. In a fifth family, we studied the mother of a patient with X-linked CGD who had died before our investigations. Gp91-phox messenger RNA (mRNA) was reverse transcribed into cDNA and the coding region was amplified by polymerase chain reaction into three fragments. Sequence analysis showed the absence of the exon 7, 5, 3, and 2 sequences in patients 1, 2, 3, and 4, respectively. In carrier 5, we found both normal cDNA and cDNA that lacked 57 3'-nucleotides of exon 6. We analyzed the splice sites of the flanking introns of the missing exons. In patients 1, 2, and 3, we found single nucleotide substitutions within the first five positions of the down-stream 5' donor splice sites. In patient 4, a similar substitution was found at position -1 of the 3' acceptor splice site of intron 1. In carrier 5, no mutation was found in the exon 6-intron 6 boundary sequence. Instead, a single substitution was observed in exon 6 (C----A at nucleotide 633) that created a new donor splice site. Apparently, mRNA splicing occurs preferentially at this newly created splice site. We conclude that the absence of the exon sequences in the gp91-phox mRNA of these patients is due to splicing errors. Of 30 European X-linked CGD patients studied by us so far, five appear to be caused by mutations that affect correct mRNA splicing. Thus, such mutations appear to be a common cause of X-linked CGD.

Amino Acid Sequence↗

An improved method for the purification of basophilic granulocytes from human blood.

Studies on human basophils are hampered by the low number of basophils in peripheral blood. Here we describe the purification of human basophilic granulocytes with immunomagnetic beads to improve an already established method of purification. A 70% pure basophil suspension was incubated with monoclonal antibodies (CD2, CD14, CD16 and CD19) recognizing the contaminating cells. After incubation with magnetic beads coated with goat anti-mouse IgG, the bead-cell rosettes were removed by a magnet. In this way, the basophil purity increased to 94%. The loss of basophils during the bead procedure was about 20%. The amount of histamine per basophil and the spontaneous release of histamine during subsequent incubation of the cells was not altered by the purification procedure. The kinetics and the dose response of histamine release after the addition of anti-IgE or FMLP was also unchanged. Binding of CD63 was not altered, indicating that the purification procedure did not result in activation of the basophils. This improved method for the purification of human basophils should permit the measurement of non-basophil-specific parameters, such as changes in intracellular free Ca2+, without the problem of interference from contaminating cells.

Antibodies, Monoclonal↗

Release of platelet-activating factor is important for the respiratory burst induced in human eosinophils by opsonized particles.

The respiratory burst induced in human eosinophils by serum-treated zymosan (STZ) was found to be almost completely prevented by preincubation of the cells with WEB 2086, an antagonist of platelet-activating factor (PAF). When eosinophils were primed by the addition of 1 mumol/L PAF, subsequent addition of WEB 2086 had only a minor effect on the STZ-induced respiratory burst. These results suggest a role for PAF synthesis and PAF release in the activation of the respiratory burst by STZ. Indeed, supernatant of STZ-stimulated eosinophils was able to prime fresh eosinophils (as did PAF itself), and this effect was again inhibited by WEB 2086. This indicates that eosinophils synthesize and release PAF during STZ stimulation. Measurements of total PAF and PAF release showed that most of the PAF synthesized by eosinophils was released in the extracellular medium. This study shows that synthesis and release of PAF is important for respiratory burst activity induced in human eosinophils by STZ.

Azepines↗

[Molecular genetic studies in alpha-thalassemia].

A group of 5,000 patients, suspected of haemolytic anaemia, were investigated with molecular genetic methods for deletion types of alpha-thalassemia. In 776 (15.6%) patients a deletion of one or more alpha-globin genes was found. The same group of patients was also investigated for abnormal haemoglobins and beta-thalassaemia. In about 30% of the patients either an alpha-thalassaemia, an abnormal haemoglobin, a beta-thalassaemia, or a combination was diagnosed. In a group of patients with a haemoglobinopathy, the frequency of alpha-thalassaemia was much higher (i.e. 33%) than in individuals without haemoglobinopathy. Preselection of the patients based on the presence of microcytic erythrocytes and/or a decreased ADW0.5 of the erythrocytes gave a high incidence of false-negative and false-positive results. Therefore, haemoglobin examination should not be restricted to protein chemistry, but should include molecular genetic investigations for deletion types of alpha-thalassaemia.

Chromosome Deletion↗

Neutrophil migration across monolayers of resting or cytokine-activated endothelial cells. Role of intracellular calcium changes and fusion of specific granules with the plasma membrane.

Chemoattractants, used at concentrations to invoke optimal neutrophil chemotaxis, induce rapid changes in neutrophils such as a transient increase in intracellular Ca2+ ([Ca2+]i). We have previously observed that neutrophils adhering to cytokine-activated endothelial cells (EC) also respond with a rapid rise in [Ca2+]i caused by an endothelial membrane-bound form of platelet-activating factor. After preloading with the intracellular Ca(2+)-chelator bis-(O-aminophenoxyl)ethane-N,N,N',N'-tetraacetic acid (BAPTA/AM), neutrophils were no longer able to respond with a rapid rise in [Ca2+]i toward the chemoattractant FMLP or to rIL-1 beta-pretreated EC. These neutrophils were still able to adhere and migrate under the conditions tested. The only difference was that the BAPTA/AM-treated neutrophils migrated a little slower than untreated control neutrophils. This discrepancy was not observed at later time points. The BAPTA/AM-preloaded neutrophils did not differ from unloaded neutrophils in actin polymerization responses. Whereas untreated neutrophils demonstrated an up-regulation of the specific granule markers CD11b, CD45, and CD67 during migration (without any release from the azurophil granules), the BAPTA/AM pretreatment completely prevented this process. The BAPTA/AM-preloaded neutrophils did not release vitamin B12-binding protein from the specific granules upon treatment with FMLP. The down-modulation of the selectin member LAM-1, as seen upon neutrophil activation, was not affected by BAPTA/AM pretreatment of the neutrophils. Thus, neither the rapid rise in [Ca2+]i nor specific granule fusion with the plasma membrane constitute a prerequisite for neutrophil migration across resting or cytokine-activated EC.

Antigens, CD↗

Chronic granulomatous disease with partial deficiency of cytochrome b558 and incomplete respiratory burst: variants of the X-linked, cytochrome b558-negative form of the disease.

Five male patients from four different families presented with a clinical record of chronic granulomatous disease (CGD): recurrent infections of the skin and/or respiratory tract with catalase-positive microorganisms, sometimes in combination with granulomata and/or abscesses in various organs. These patients differed from "classical" forms of the disease in that their neutrophils, although deficient in killing in vitro of Staphylococcus aureus, contained a decreased but measurable amount of cytochrome b558 (10-60% of normal on a heme basis), causing weak staining in the nitroblue tetrazolium dye test and a depressed respiratory burst after contact of the cells with fluid or particulate activators of the NADPH:O2 oxidoreductase. In the cell-free activation system, the defect in the patients' cells was localized in the membrane fraction. In each of the four families, the cellular abnormalities showed an X-linked inheritance. Fusion experiments performed with the monocytes from these patients and those from patients with classical X-linked, cytochrome b558-negative (Xb(0)) or autosomal, cytochrome b558-positive (Ab+) CGD showed complementation of NADPH:O2 oxidoreductase activity in the latter but not in the former combination. Thus, the unusual CGD patients represent variant forms of Xb(0) CGD, with mutations in the gene coding for the beta subunit of cytochrome b558 that do not cause complete loss of this protein.

Blood Bactericidal Activity↗

Prenatal diagnosis in a family with X-linked chronic granulomatous disease with the use of the polymerase chain reaction.

In the X-linked form of chronic granulomatous disease (X91 degrees CGD), the genetic defect is linked to the CYBB locus on the X chromosome. We studied a family with a genetic defect in this gene, consisting of a G----A substitution at the fifth base of the 5' donor splice site of intron 3. This mutation leads to skipping of exon 3 after transcription of the gene. The expectant mother was diagnosed as a carrier. Analysis of polymerase chain reaction (PCR)-amplified genomic DNA from a chorionic villus biopsy (CVB) showed the same mutation in the male fetus. After termination of the pregnancy, the diagnosis was confirmed by conventional methods. This is the first time that PCR has been used for prenatal diagnosis of CGD.

Abortion, Eugenic↗

Recombinant human interferon-gamma treatment in severe leucocyte adhesion deficiency.

We describe a patient with leucocyte adhesion deficiency (LAD). Clinically, the patient had delayed umbilical cord detachment, omphalitis, impaired wound healing and persistent leucocytosis. The patient had the severe form of LAD, with a total absence of leucocyte cell adhesion molecules (LeuCAMs) and undetectable mRNA for the beta chain, the common subunit of the LeuCAMs. In vitro neutrophil chemotaxis, aggregation and oxygen consumption were severely impaired. In vitro incubation of neutrophils with recombinant human interferon-gamma (rIFN-gamma) showed an increase in oxygen consumption, but no effect on the expression of the LeuCAMs, or the beta chain mRNA. In vivo treatment with IFN-gamma was started. The Fc gamma RI receptor appeared on the neutrophils, the LeuCAMs remained undetectable, while the neutrophil functions remained disturbed. The patient died of surgical complications after 10 weeks of rIFN-gamma treatment. No new infections or side-effects due to rIFN-gamma were observed.

Antigens, CD↗

Intracellular events in anti-IgE nonreleasing human basophils.

Histamine release (HR) after activation of human basophils with anti-IgE demonstrates a great variability among different donors. To elucidate the biochemical basis of this phenomenon, we studied the activation of purified basophils from donors that barely demonstrated HR (less than 7%) after stimulation by anti-IgE, although IgE was present on these cells and formyl-methionyl-leucyl-phenylalanine (fMLP)-induced HR was normal. Basophils from anti-IgE "nonreleasers" demonstrated, in contrast to cells from "releasers," hardly any changes in cytosolic-free Ca++ concentration after addition of anti-IgE. However, anti-IgE treatment of basophils from these anti-IgE nonreleasers resulted in at least two intracellular changes. First, a profound inhibition (54.2% +/- 4.2%) of a subsequent fMLP-induced HR was observed. This inhibition caused by anti-IgE was also observed in basophils from anti-IgE releasers treated with wortmannin, an inhibitor of the anti-IgE-induced HR. The time course of the inhibition induced by wortmannin plus anti-IgE on the fMLP-induced HR (half-life maximum, 4 minutes; time of maximum concentration, 10 minutes) was comparable to the time course of the anti-IgE-induced HR. Second, anti-IgE did induce homotypic aggregation in these anti-IgE-nonreleasing basophils, like in anti-IgE-releasing basophils. These studies indicate that basophils not responding to anti-IgE with HR or cytosolic-free Ca++ concentration changes do generate intracellular signals that inhibit the subsequent response to a heterologous stimulus and induce homotypic aggregation.

Antibodies, Anti-Idiotypic↗

Neutrophil migration across monolayers of cytokine-prestimulated endothelial cells: a role for platelet-activating factor and IL-8.

In a previous study we observed that neutrophils respond with a rapid rise in [Ca2+]i during adherence to cytokine-activated endothelial cells (EC), caused by EC membrane-associated platelet-activating factor (PAF). In the present study, we investigated whether this form of PAF was important in neutrophil adherence and migration across monolayers of rIL-1 beta- or rTNF alpha-prestimulated EC. PAF receptor antagonists prevented neutrophil migration across cytokine-pretreated EC by approximately 60% (P less than 0.005) without interfering with the process of adherence. The antagonists WEB 2086 and L-652,731 had no effect on neutrophil migration across resting EC induced by formylmethionyl-leucyl-phenylalanine (FMLP). A murine anti-IL-8 antiserum was found to also partially inhibit the neutrophil transmigration across cytokine-activated EC. When the anti-IL-8 antiserum was used in combination with a PAF receptor antagonist, neutrophil migration across cytokine-pretreated monolayers of EC was completely prevented. During transmigration, LAM-1 and CD44 on the neutrophils were down-modulated; both WEB 2086 and anti-IL-8 antiserum partially prevented this down-modulation caused by cytokine-prestimulated EC. Our results indicate that human neutrophils are activated and guided by EC-associated PAF and EC-derived IL-8 during the in vitro diapedesis in between cytokine-stimulated EC.

Antigens, Surface↗

CD66 nonspecific cross-reacting antigens are involved in neutrophil adherence to cytokine-activated endothelial cells.

Neutrophil adherence to cytokine-activated endothelial cell (EC) monolayers depends on the expression of the endothelial leukocyte adhesion molecule-1 (ELAM-1). The ligand for ELAM-1 is the sialylated Lewis-x antigen (SLe(x)) structure. The selectin LAM-1 (or LECAM-1) has been described as one of the SLe(x)-presenting glycoproteins involved in neutrophil binding to ELAM-1. Other presenter molecules have not yet been described. Our data demonstrate that the carcinoembryonic antigen (CEA)-like surface molecules on neutrophils--known as the nonspecific cross-reacting antigens (NCAs)--are involved in neutrophil adherence to monolayers of IL-1-beta-activated EC. The NCAs are recognized by CD66 (NCA-160 and NCA-90) and CD67 (NCA-95). Because NCA-95 and NCA-90 have previously been found to be phosphatidylinositol (PI)-linked, paroxysmal nocturnal hemoglobinuria (PNH) neutrophils (which lack PI-linked surface proteins) were tested as well. PNH neutrophils showed a diminished binding to activated EC. CD66 (on PNH cells still recognizing the transmembrane NCA-160 form) still inhibited the adherence of PNH cells to IL-1-beta-activated EC, but to a limited extent. Soluble CEA(-related) antigens inhibited normal neutrophil adherence as well, whereas neutrophil transmigration was unaffected. Sialidase-treatment as well as CD66 preclearing abolished the inhibitory capacity of the CEA(-related) antigens. The binding of soluble CEA antigens to IL-1-beta-pretreated EC was blocked by anti-ELAM-1. These soluble antigens, as well as the neutrophil NCA-160 and NCA-90, both recognized by CD66 antibodies, presented the SLe(x) determinant. Together, these findings indicate that the CD66 antigens (i.e., NCA-160/NCA-90) function as presenter molecules of the SLe(x) oligosaccharide structures on neutrophils that bind to ELAM-1 on EC.

Antigens, CD↗

[Hepatitis C virus antibodies in patients and the normal population].

With regard to the controversial issue of a reduction of transfusion-associated infections by non-remunerated donations, epidemiological data on the prevalence of HIV-1, HIV-2 and hepatitis C virus (HCV) are of particular interest in our country. We investigated four sample categories: (1) healthy employees and workers from Hamburg; (2) hemodialysis patients; (3) hemato-oncological patients, and (4) blood donors, and tried to differentiate between the three disputed vectors of community-acquired (sexually or pregnancy-transmitted), nosocomial and transfusion/transplantation-associated HCV infections. We conclude from our results that--prior to the implementation of blood screening--our carefully selected 'paid blood donors' conferred no higher HCV risks than the general (working) population (0.66 vs. 0.82% HCV antibody prevalence). Besides transfusions/transplantations, significant nosocomial risks apparently exist in hemodialysis units (21.0 vs. 9.5% HCV seroprevalence in polytransfused patients). Preventive measures, e.g. separate dialysis machines for HCV-positive patients, seem to be advisable.

Blood Transfusion↗

Cytochrome b558-negative, autosomal recessive chronic granulomatous disease: two new mutations in the cytochrome b558 light chain of the NADPH oxidase (p22-phox).

Chronic granulomatous disease (CGD) is characterized by the failure of activated phagocytes to generate superoxide. Defects in at least four different genes lead to CGD. Patients with the X-linked form of CGD have mutations in the gene for the beta-subunit of cytochrome b558 (gp91-phox). Patients with a rare autosomal recessive form of CGD have mutations in the gene for the alpha-subunit of this cytochrome (p22-phox). Usually, this leads to the absence of cytochrome b558 in the phagocytes (A22(0) CGD). We studied the molecular defect in five European patients from three unrelated families with this type of CGD. P22-phox mRNA was reverse-transcribed, and the coding region was amplified by PCR in one fragment and sequenced. Three patients from one family, with parents that were first cousins, were homozygous for a single base substitution (G-297-->A) resulting in a nonconservative amino acid change (Arg-90-->Gln). This mutation was previously found in a compound heterozygote A22(0) CGD patient. Another patient, also from first-cousin parents, was homozygous for an A-309-->G mutation in the open reading frame that predicts a nonconservative amino acid replacement (His-94-->Arg). The fifth patient was also born from a first-cousin marriage and was shown to be homozygous for the absence of exon 4 from the cDNA. In this patient, a G-->A substitution was found at position 1 of intron 4 in the genomic DNA. Therefore, the absence of exon 4 in the cDNA of this patient is due to a splicing error.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

The involvement of oxygen radicals in microbicidal mechanisms of leukocytes and macrophages.

Phagocytic leukocytes generate large amounts of reactive oxygen compounds during and after phagocytosis of micro-organisms. These compounds are essential for the killing of a wide variety of microbes. The enzyme responsible for this process is NADPH:O2 oxidoreductase (NADPH oxidase), which utilizes the reduction equivalents of NADPH to reduce atmospheric oxygen to superoxide (O2-.). Subsequently, superoxide is converted by the leukocytes to other reactive compounds, such as hydrogen peroxide (H2O2), hypochlorous acid (HOCl) and N-chloramines (RNCl). Each of these compounds has potent microbicidal properties. Under resting, non-phagocytizing conditions, phagocytes do not produce reactive oxygen compounds. However, within 15-30 sec after binding of micro-organisms to cell surface receptors, superoxide generation starts. This phenomenon is called the respiratory burst. This phenomenon is called the respiratory burst. The activation of the NADPH oxidase is caused by the assembly of components of this enzyme into an active complex. Under resting conditions, at least three components reside in the cytoplasm and at least two are located in the plasma membrane. Activation of the NADPH oxidase results in translocation of cytosolic components to the plasma membrane and formation of an active enzymatic complex in the plasma membrane.

Animals↗

fMet-Leu-Phe-induced activation of phospholipase D in human neutrophils. Dependence on changes in cytosolic free Ca2+ concentration and relation with respiratory burst activation.

In this study, we have investigated the Ca2+ requirements for the activation of phospholipase D by the tripeptide fMet-Leu-Phe (fMLP) in human neutrophils. EGTA inhibited the activation of phospholipase D (PLD) by 55% (n = 4). When the initial transient rise in [Ca2+]i was prevented by loading the cells with limited amounts of the Ca2+ chelator 1,2-bis(O-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid acetoxymethyl ester (BAPTA/AM), PLD activation was inhibited by 92% (n = 4). In the presence of both chelators, PLD activation was only 4% of control. In electropermeabilized neutrophils, too, the activation of PLD after the addition of fMLP strongly depends on the Ca2+ concentration, being almost absent with 100 nM free Ca2+ present and reaching maximum activation with a free [Ca2+] of 500 nM. We subsequently investigated the relationship between PLD activation and the activation of the respiratory burst. In neutrophils loaded with BAPTA/AM (10 microM), in which PLD activation was almost absent, a respiratory burst could be induced by fMLP, albeit with a much longer lag time. A respiratory burst could also be elicited by fMLP in electropermeabilized neutrophils incubated with 100 nM free Ca2+. This response, however, was strongly enhanced in the presence of 1 microM Ca2+. Our results indicate that changes in [Ca2+]i are essential for the activation of PLD by fMLP, but probably do not constitute the sole activation signal. In addition, our data provide evidence that PLD activation is important, but not necessary, for activation of the neutrophil respiratory burst.

Calcium↗

Neutrophil and monocyte adherence to and migration across monolayers of cytokine-activated endothelial cells: the contribution of CD18, ELAM-1, and VLA-4.

Pretreatment of endothelial cells with cytokines enhances the adherence of leukocytes, a process that is mediated by surface proteins expressed on both cell types. A three-dimensional model system for the simultaneous determination of leukocyte adherence and migration was used to study the contribution of CD11/CD18, endothelial leukocyte-adhesion molecule-1 (ELAM-1) and VLA-4 in neutrophil and monocyte adherence to and migration through cytokine-activated endothelial cells. Pretreatment of endothelial cells for 4 hours with recombinant interleukin-1 beta (rIL-1 beta) was found to enhance neutrophil adherence and migration to a much greater extent than monocyte adherence and migration. Neutrophil adherence was almost completely prevented by the combined use of monoclonal antibodies (MoAbs) against ELAM-1 and CD18. Although ELAM-1 has been designated an endothelial cell-specific cytokine-inducible receptor for neutrophils, we observed that ENA2, an anti-ELAM-1 MoAb, significantly reduced monocyte adherence about 30%. MoAbs against VLA-4, the ligand of the cytokine-inducible receptor VCAM-1, did not affect monocyte adherence. However, the combined use of the MoAbs against CD18, ELAM-1, and VLA-4 had a very strong and additive inhibitory effect on rIL-1 beta-induced monocyte adherence. The anti-CD18 MoAb reduced both rIL-1 beta-induced neutrophil and monocyte migration far below the level of the unstimulated controls, whereas neither the anti-ELAM-1 nor the anti-VLA-4 MoAb significantly affected the process of migration. Our results indicate that neutrophils and monocytes initially adhere to cytokine-activated endothelial cells by CD18-independent and (to a lesser extent) by CD18-dependent mechanisms and subsequently change gears to a completely CD18-dependent migratory mechanism.

Antibodies, Monoclonal↗

Loss of thrombin-induced Ca2+ mobilization in a subpopulation of platelets during storage.

Thrombin-induced changes in cytosolic free Ca2+ ([Ca2+]i) were studied in human platelets that had been stored for up to 6 days. Changes in [Ca2+]i were measured with Indo-1-loaded platelets and quantitated with two different methods: (i) measurement of the changes in total fluorescence; (ii) measurement of the [Ca2+]i changes in individual platelets in a flow cytometer, allowing the detection of non-responding platelets. The maximal concentration of [Ca2+]i after stimulation with 0.5 U of thrombin/ml decreased from 544 +/- 58 nM (mean +/- SEM, n = 6) on day 0, to 276 +/- 9 nM on day 3 and to 203 +/- 23 nM on day 6. The percentage of platelets responding to 0.5 U of thrombin/ml declined from 90 +/- 2% on day 0 to 72 +/- 4% on day 3, and to 47 +/- 8% on day 6. Nevertheless, also the responding platelets showed a decreased rise in [Ca2+]i. The study shows that during platelet storage a decrease in the rise in [Ca2+]i upon thrombin stimulation occurs. This decrease is partly due to the formation of a subpopulation of platelets that is completely unresponsive and partly due to a decreased responsiveness in the remainder of the platelets; it is not due to a gradual decline in [Ca2+]i rise in all platelets. This phenomenon provides new insight in the functional defect of stored platelets.

Blood Platelets↗