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K Welte

Publications and source records attributed to K Welte.

At least 55 records · Page 3Linked to original sources

Variant translocations in sporadic Burkitt's lymphoma detected in fresh tumour material: analysis of three cases.

Burkitt's lymphoma/Burkitt cell leukaemia (BL) is characterized by one of the reciprocal translocations involving the MYC oncogene on chromosome 8 and one of the immunoglobulin (Ig) loci on chromosomes 14, 2 or 22. In the few cell lines with the variant translocations t(2;8) and t(8;22) reported to date, the breakpoints on chromosome 8 were located downstream of MYC at a distance of up to 300 kb and more. Here, we describe three new cases with variant translocations. Fresh tumour material from paediatric patients, negative for the common translocation t(8;14), was analysed using a long-distance (LD) polymerase chain reaction (PCR) approach. On chromosome 8, primers were derived from several different regions 3' of MYC, and on chromosomes 2 and 22 from the constant regions of the Ig kappa (Igkappa) and lambda (Iglambda) genes. One translocation t(2;8) and two t(8;22) were detected. In the t(2;8) translocation, the chromosome 8 breakpoint was located 2 kb 3' of the MYC exon 3 and the chromosome 2 breakpoint within an unrearranged Igkappa locus. The breakpoints of the two translocations t(8;22) were detected 16 kb for one and 58 kb for the other downstream of MYC. Sequencing the t(8;22) translocation in one of the cases showed hypermutation of the translocated variable Vlambda4b gene. The presence of hypermutated variable regions in the t(8;22) case suggests germinal centre B cells as the origin of this translocation. The t(2;8) translocation is the first description of a translocation t(2;8) involving an unrearranged Igkappa gene. A mechanism different from V-J recombination and somatic hypermutation has to be proposed for this translocation.

Burkitt Lymphoma↗

Serum granulocyte colony-stimulating factor levels are not increased in patients with autoimmune neutropenia of infancy.

OBJECTIVE: To assess the role of granulocyte colony-stimulating factor (G-CSF) in autoimmune neutropenia (AIN). DESIGN: Serum G-CSF levels were measured in 57 children with AIN. Two different G-CSF-dependent assays were used: a solid-phase "sandwich" enzyme-linked immunosorbent assay and a proliferation assay. Sera from healthy persons and from patients with severe congenital neutropenia were used for negative and positive controls. RESULTS: The median G-CSF level in healthy persons (n = 13) was low, 45.6 pg/mL (range <39 to 141 pg/mL). The median G-CSF level in patients with AIN (n = 57) was very similar, 45.5 pg/mL (range <39 to 2500 pg/mL). Forty-five (79%) of 57 patients with AIN had levels within the range of the control group. Seven (12%) had marginally increased G-CSF levels (141 to 400 pg/mL), and only 5 (9%) had levels higher than 400 pg/mL. The G-CSF levels measured by enzyme-linked immunosorbent assay correlated well with levels measured by the proliferation assay, thus demonstrating that antibodies present in patient sera did not affect the biologic activity of G-CSF. CONCLUSION: G-CSF production in AIN is not increased despite the low neutrophil count, similar to thrombopoietin in immune thrombocytopenic purpura.

Autoimmune Diseases↗

Polymorphisms within glutathione S-transferase genes and initial response to glucocorticoids in childhood acute lymphoblastic leukaemia.

In children with acute lymphoblastic leukaemia (ALL) treated according to protocols of the Berlin-Frankfurt-Münster (BFM) study group, the initial response to prednisone is the strongest predictor of therapy outcome. Glutathione S-transferases (GSTs) have been implicated in glucocorticoid resistance. In order to assess a potential association of phenotypically relevant GST polymorphisms with prednisone response in childhood ALL, we conducted a case-control study of 45 prednisone poor-responders (cases) and 90 prednisone good-responders (controls) who were frequency matched according to initial white blood cell count. In addition, we analysed the association of GST genotypes with relapse of leukaemia. In univariate analysis, homozygous deletion of GSTT1 (null genotype) conferred a 6.7-fold reduction in risk of prednisone poor-response compared to individuals who were either heterozygous or homozygous for GSTT1 [odds ratio (OR) = 0.15, P = 0.071; multivariate odds ratio = 0.18, P = 0.117]. GSTM1 and GSTP1 genotypes did not show any association with prednisone response. In addition, risk of relapse was predicted strongest by the GSTT1 genotype. In univariate analysis, the GSTT1 null genotype conferred a 5.9-fold reduction in risk of relapse compared to the heterozygous or homozygous presence of GSTT1 (OR = 0.17, P = 0.095; multivariate OR = 0.23; P = 0.173). No associations of the GSTM1 genotype with risk of relapse were observed. GSTP1 codon 105 and codon 114 polymorphisms were predominantely associated with central nervous system relapse. Our results add further support to the hypothesis that genetic polymorphisms within specific GST genes might be of clinical importance in childhood ALL.

Adolescent↗

Thrombopoietin acts synergistically on Ca(2+) mobilization in platelets caused by ADP or thrombin receptor agonist peptide.

Thrombopoietin (TPO) is the main regulator of megakaryopoiesis and influences also the function of mature platelets. TPO has been shown to synergize in multiple platelet activation processes induced by various agonists. Our aim was to elucidate whether TPO affects calcium signaling during platelet activation processes. TPO demonstrated a synergistic effect on the exocytosis induced by suboptimal doses of adenosine diphosphate (ADP) and the thrombin receptor agonist peptide (TRAP). We detected synergistic effects of TPO on the ADP or TRAP induced Ca(2+) mobilization in a small range of very low agonist concentrations. The TPO synergism on Ca(2+) mobilization and CD62P expression was measurable in different, nonoverlapping ranges of ADP or TRAP concentrations. Sustaining the agonist-induced calcium signal with thapsigargin led to a detectable TPO synergism in CD62P expression even in agonist concentrations in which the synergism only occurs in Ca(2+) signaling without thapsigargin.

Adenosine Diphosphate↗

G-CSF receptor mutations in patients with severe congenital neutropenia do not abrogate Jak2 activation and stat1/stat3 translocation.

Severe congenital neutropenia (SCN) is an inherited disorder of myelopoiesis, characterized by a maturation arrest at the stage of promyelocytes and myelocytes in bone marrow, and absence or low levels of mature neutrophil granulocytes in peripheral blood. Recently, studies of patients with SCN who subsequently developed acute myeloid leukemia (AML) revealed nonsense mutations in the cytoplasmic domain of the granulocyte colony-stimulating factor (G-CSF) receptor messenger RNA. We focused our interest on the G-CSF-mediated signaling cascade to examine the consequences of the observed point mutations for the nuclear translocation of the transcription factors Stat1 and Stat3. Expression vectors encoding for truncated G-CSF receptors were transfected in the murine fibroblast cell line C243 expressing a fusion protein consisting of the transcription factor Stat1 and Stat3, respectively, and the green fluorescent protein (GFP). Nuclear translocation of the GFP fusion proteins was examined after G-CSF stimulation of the transfected cells.

Bone Marrow↗

Expression of granulocyte colony-stimulating factor in recurrent glial tumors is inversely correlated with tumor progression.

We have previously reported that in vivo-expression of granulocyte colony-stimulating factor (G-CSF) is a characteristic feature of reactive and neoplastic astrocytes. The aim of the present study was to analyze the expression of G-CSF protein in primary and recurrent astroglial, oligodendroglial and mixed glial-differentiated tumors. G-CSF expression was present in all GFAP-positive tumors excepting glioblastomas. G-CSF expression was significantly reduced in recurrent tumors more dedifferentiated than their primary counterparts. G-CSF expression was absent in all GFAP-negative tumors such as oligodendrogliomas. Our results demonstrate that G-CSF is a highly sensitive differentiation marker of neoplastic astrocytes, which is lost during tumor progression.

Adolescent↗

Clinical relevance of genetic risk factors for thrombosis in paediatric oncology patients with central venous catheters.

UNLABELLED: We prospectively evaluated the clinical relevance of genetic risk factors of thrombosis in 137 paediatric patients with solid tumours or leukaemia/lymphoma. The factor V G1691A (FV-L), the prothrombin G20210A (FII-L) and the homozygous MTHFR variant were examined. In addition, protein C, protein S and antithrombin (AT) deficiency were evaluated in patients with ALL or thrombosis. The inter-group incidence of risk factors and thrombotic events was compared. 73 of the 137 patients had ALL and 64 another form of leukaemia, lymphoma or a solid tumour. They were treated according to the established paediatric tumour protocols ALL-BFM, NHL-BFM, COSS, CWS and others. All patients had central venous lines. No patient received heparin or any other anticoagulant. Endpoints of the study were thrombosis, regular completion of chemotherapy or death. Incidence of mutations in the whole group: FV-L (7.3% heterozygous, 0.7% homozygous); FII-L (2.9% heterozygous, no homozygotes); MTHFR (51.8% heterozygous, 10.9% homozygous). Ten patients (7.3%), 6 with ALL and 4 with solid tumours, developed thrombosis. 4 of the 6 patients with ALL and thrombosis (67%) but only 21% of ALL patients without thrombosis had a genetic risk factor (P < 0.013, chi2). No genetic defect was found in the 4 patients with other malignancies and thrombosis. However, besides a tumour, these patients had additional exogenous risk factors including diabetes insipidus and hemiparesis. CONCLUSION: Genetic mutations appear to be additional risk factors for the development of thrombosis in patients with ALL. In contrast, these mutations do not appear to be relevant risk factors for thrombosis in the small number of children with other malignant diseases reported here. This difference may be due to asparaginase and corticosteroids being used in ALL but not in solid tumour protocols.

Adolescent↗

Serum levels of thrombopoietin, IL-11, and IL-6 in pediatric thrombocytopenias.

We measured serum levels of thrombopoietin (TPO), interleukin (IL)-11, and IL-6 in 90 different samples from 67 pediatric patients with thrombocytopenia (TP). The cytokine levels were determined by enzyme-linked immunosorbent assays (ELISA), and the biological activity of TPO was measured using a cell line transfected with human c-mpl. In patients with impaired megakaryocytopoiesis, as found in diseases such as aplastic anemia, amegakaryocytic TP, or TP with absent radii, we found TPO levels which were highly elevated compared with normal values (mean=261 AU/ml, n=52, vs. 22 AU/ml in healthy controls). In contrast, patients suffering from idiopathic thrombocytopenic purpura (mean=16 AU/ml, n=31) or platelet function defects (mean=23 AU/ml, n=7) demonstrated normal TPO levels. The biological activity tested in the bioassay correlated well with the ELISA data. However, sera of some patients with amegakaryocytic TP demonstrated a remarkably higher biological activity of TPO than expected from the ELISA data. Within the different groups there was no correlation between platelet counts and TPO levels. Only 27% of all samples had elevated levels of IL-11 (mean=450 pg/ml, n=20). Elevated IL-6 serum levels were detected in only 13% of all samples analyzed (mean=42 pg/ml, n=12). We conclude that megakaryocytopoiesis is regulated mainly by TPO, that it is dependent on the platelet and the megakaryocytic mass, and that IL-11 plays an additional role in supporting the platelet production. IL-6 does not appear to be up-regulated in children with thrombocytopenia.

Adolescent↗

SH2-containing protein tyrosine phosphatases SHP-1 and SHP-2 are dramatically increased at the protein level in neutrophils from patients with severe congenital neutropenia (Kostmann's syndrome).

Severe congenital neutropenia (SCN) or Kostmann's syndrome is characterized by a stop in differentiation of myeloid progenitor cells at the myelocytic or promyelocytic stage. The pathophysiology of SCN is still unclear. We previously showed that the tyrosine kinase JAK2 is phosphorylated and activated in neutrophils from patients with severe congential neutropenia. We investigated the role of tyrosine phosphatases in this disease. Expression of the SH2 domain-containing tyrosine phosphatases SHP-1 and SHP-2 was analyzed in myeloid cells from patients with SCN in comparison to healthy donors. We investigated tyrosine phosphatase expression in myeloid cells at the protein level by Western blot analysis using polyclonal antisera against SHP-1 and SHP-2. Whereas SHP-1 and SHP-2 were hardly detectable in neutrophils from healthy donors, neutrophils from patients with SCN revealed high amounts of these two proteins in Western blot analyses. Reverse transcriptase-polymerase chain reaction and Northern blot analyses demonstrated no dramatic differences of SHP-1 mRNA in neutrophils from congenital neutropenia patients as compared to healthy donors. SHP-2 mRNA was hardly detectable in the neutrophils from patients and in normal neutrophils. Increased expression of SHP protein correlated with elevated activity of both SHP-1 and SHP-2 in neutrophils of patients with SCN. Taken together, these data indicate differential regulation for SHP-1 and SHP-2 at the protein level in neutrophils from SCN patients in comparison to healthy donors. We suggest that overexpression of SHP-1 and SHP-2 protein in neutrophils and not in mononuclear cells from patients with SCN might be related to the disease, e.g., by defective dephosphorylation of proteins involved in intracellular signaling pathways.

Blotting, Northern↗

Serum G-CSF levels are not increased in patients with antibody-induced neutropenia unless they are suffering from infectious diseases.

By the use of a G-CSF-specific ELISA we determined the serum granulocyte-colony stimulating factor (G-CSF) levels in 63 patients with antibody-induced neutropenia including neonatal immune neutropenia, autoimmune neutropenia, and drug-induced immune neutropenia. In the sera of 20 patients, elevated G-CSF levels of 60-1006 pg/ml (normal <39 pg/ml) were observed. These patients suffered from infectious diseases at the time of blood collection. G-CSF levels normalized after successful antibiotic treatment, indicating that increased G-CSF production in patients with immune neutropenia may be primarily the result of infection and not of neutropenia.

Adult↗

Alkaline phosphatase activity in neutrophils from patients with severe congenital neutropenia (Kostmann's syndrome).

The glycoprotein alkaline leukocyte phosphatase (ALP) can be used as a marker of maturity in neutrophilic granulocytes as the activity of ALP increases during neutrophilic differentiation. Severe congenital neutropenia (SCN) or Kostmann's syndrome is a congenital disorder characterized by a maturation arrest of myeloid progenitor cells at the promyelocyte/myelocyte stage that can be treated with recombinant human granulocyte colony-stimulating factor (rhG-CSF). Until recently there have been no reports on ALP activity in neutrophils of patients suffering from SCN, despite the fact that ALP is an important correlate of the functional activity of normal neutrophils. Thus, we conducted experiments to assess ALP activity in neutrophils from eight SCN patients before initiation of rhG-CSF treatment and an additional 17 SCN patients already receiving rhG-CSF. All eight patients analyzed before initiation of rhG-CSF treatment showed ALP activity in their neutrophilic cells. Four patients had normal and four patients had elevated ALP levels. Of the 17 patients already on treatment with rhG-CSF, 15 patients showed elevated ALP activity levels, one patient had normal ALP levels, and one patient showed abnormally low ALP activity. Thus, with the exception of a single patient, we observed normal or elevated ALP activity in neutrophils from SCN patients. As described in studies on the effect of rhG-CSF on ALP activity in healthy individuals, ALP activity was higher in SCN patients already on treatment with rhG-CSF. Therefore, our results indicate that SCN patients are not deficient in ALP activity and suggest that ALP is not deregulated in the majority of these patients.

Adolescent↗

Association of src-kinase Lyn and non-src-kinase Syk with the granulocyte colony-stimulating factor receptor (G-CSFR) is not abrogated in neutrophils from severe congenital neutropenia patients with point mutations in the G-CSFR mRNA.

Severe congenital neutropenia (SCN) is characterized by a maturation arrest of myeloid progenitor cells at the stage of promyelocytes in bone marrow and low levels of mature neutrophils in peripheral blood. To date, little is known regarding the underlying pathomechanism of SCN. A defective response of neutrophil precursors to granulocyte colony-stimulating factor (G-CSF) is a suggested mechanism. In the last few years, we and others described point mutations in the cytoplasmic domain of the G-CSF receptor (G-CSFR) mRNA in a subgroup of SCN patients. In one allele of the G-CSFR gene, a C to T substitution resulted in a change from a glutamine codon to a stop codon. The expected G-CSFR proteins were truncated by 83 to 98 amino acids. In this study, we show that the Lyn and Syk kinases are associated with the G-CSFR in neutrophils from SCN patients with point mutations in the cytoplasmic domain of the G-CSFR mRNA. These findings provide additional proof of the expression of normal G-CSFRs in these patients, because the possible Syk binding motif is located between amino acid 727 and 747 in the G-CSFR.

Enzyme Precursors↗

Diagnosis and clinical course of autoimmune neutropenia in infancy: analysis of 240 cases.

Primary autoimmune neutropenia (AIN) is caused by granulocyte-specific autoantibodies and occurs predominantly in infancy. Clinical presentation and diagnosis have not been well established, resulting in burdening diagnostic investigations and unnecessary treatment with granulocyte colony-stimulating factor (G-CSF). In the present study, clinical, laboratory, and immunologic data of 240 infants with primary AIN were evaluated. Suspected association with parvovirus B19 infection was investigated using serologic and DNA-based methods. Primary AIN was mainly diagnosed at the age of 5 to 15 months but was observed as early as day 33 of life. In 90% of the cases, AIN was associated with benign infections despite severe neutropenia. Spontaneous remission, shown by 95% of the patients, usually occurred within 7 to 24 months. Autoantibodies in the patient's sera were not always present, and screening had to be repeated several times until antibody detection succeeded. About 35% of the autoantibodies showed preferential binding to granulocytes from NA1 and NA2 homozygous donors. Bone marrow was typically normocellular or hypercellular, with a variably diminished number of segmented granulocytes. A significant association with parvovirus B19 infection was not found. Symptomatic treatment with antibiotics was sufficient in most patients. Eighty-nine percent of the patients received antibiotics (cotrimoxazole) for prophylaxis of infections. For severe infections or for surgical preparation, G-CSF, corticosteroids, and intravenous IgG were administered, resulting in increased neutrophil counts in 100%, 75%, and 50% of the patients treated, respectively. In combination with the detection of granulocyte-specific antibodies, the typical clinical picture allowed diagnosis of AIN without burdening investigations. Treatment with G-CSF was found to be a reliable alternative to temporarily increase the neutrophil count.

Adrenal Cortex Hormones↗

Defective c-Mpl signaling in the syndrome of thrombocytopenia with absent radii.

Thrombocytopenia with absent radii (TAR) syndrome is a rare congenital defect with severe hypomegakaryocytic thrombocytopenia and bilateral radial aplasia. To elucidate a possible relationship between thrombocytopenia in TAR and defects in the thrombopoietin (TPO)/c-Mpl system, we examined TPO activity in sera from six patients and in vitro reactivity of the patients' platelets to recombinant human TPO. We found elevated TPO serum levels in all patients, excluding a TPO production defect as a pathomechanism for the thrombocytopenia. In contrast to healthy controls, however, platelets of TAR patients failed to respond to recombinant TPO as measured by testing TPO synergism to suboptimal concentration of platelet activators. Most interestingly, TPO-induced tyrosine phosphorylation of platelet proteins was completely absent (four out of five) or markedly decreased (one out of five). More detailed investigations of the signal cascades of c-Mpl demonstrated the absence of Jak2 phosphorylation after TPO stimulation in a TAR patient's platelets. A defect in the early events of c-Mpl signal transduction might be the reason for impaired megakaryocytopoiesis in TAR syndrome.

Blood Platelets↗

Different binding mechanisms of myeloid leukemic cells to adhesion molecules on bone marrow stromal fibroblasts induced by TNF-alpha and IL-4.

To study the mechanisms of adhesion of myeloid leukemic cells to bone marrow stroma, we analyzed the interaction of bone marrow stromal fibroblasts with myeloid leukemic cell lines and the modulation of adhesion molecule expression on stromal fibroblasts by TNF-alpha and IL-4. Like others, we found up-regulation of VCAM-1 and ICAM-1 on fibroblasts with TNF-alpha treatment, whereby IL-4 acted synergistically with TNF-alpha. VCAM-1 expression on the cell surface was maximal after 10 h, while ICAM-1 expression increased up to 48 h. All myeloid leukemic cell lines tested (HL-60, K562, TMM, U937, ML-2, PLB-985, THP-1, KG1a) revealed weak adhesion to untreated bone marrow fibroblasts (< or =10% bound cells). TNF-alpha and IL-4 significantly enhanced adhesiveness of fibroblasts to the cell lines PLB-985, THP-1, and ML-2, with a peak between 6 and 10 h of treatment. Adhesiveness to the cell line TMM was increased up to eightfold in a time-dependent manner for up to 48 h. The enhanced binding of ML-2-, THP-1-, and PLB-985 cells to stimulated fibroblasts was due at least partially to the interaction of VLA-4 with VCAM-1. Increased adhesion of TMM cells was impaired neither by antibodies to VLA-4, LFA-1, or Mac-1 nor by antibodies to their counter-receptors VCAM-1 or ICAM-1, suggesting that adhesion molecules distinct from VCAM-1 or ICAM-1 are involved in enhanced adhesiveness of the fibroblasts to myeloid leukemic cells.

Antibodies, Blocking↗

Expression and regulation of c-kit receptor and response to stem cell factor in childhood malignant T-lymphoblastic cells.

The cytokine stem cell factor (SCF) synergizes with IL-7 to enhance the proliferation of thymocytes. We therefore investigated the role of the SCF receptor, the protooncogene c-kit, in the pathogenesis of pediatric T-lineage malignancies. Expression and regulation of c-kit in cells from children with non-Hodgkin's lymphoma (T-NHL) or acute lymphoblastic leukemia (T-ALL) and the proliferative effect of SCF on these cells were examined in seven cell lines and 21 biopsy tumor cell preparations. Inducibility of c-kit receptors by SCF, IL-1beta, IL-2, IL-7, TGF-beta, TNF-alpha, PMA or calcium ionophore A23187 was studied by flow cytometry (FCM). C-kit receptors were detected in three out of seven T-lymphoblastic cell lines and in nine out of 21 biopsy tumor cell preparations. Upregulation of c-kit could be induced by cultivation, and to a higher extent by cultivation and addition of IL-1beta, TNF-alpha, TGF-beta or A23187. Downregulation of c-kit occurred in the presence of SCF or PMA. SCF caused a downregulation of c-kit receptors in eight of nine, and a proliferative response in three of 11 c-kit-positive T-lymphoblastic cell preparations. We conclude that c-kit is able to transduce a growth stimulatory signal in some T-lymphoblastic cells and that its expression may not be detectable in a resting metabolic or proliferative state.

Antigens, CD34↗