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Biomedical subjects

M Donnér

Publications and source records attributed to M Donnér.

At least 19 recordsLinked to original sources

Cytogenetic aberrations in Ewing sarcoma: are secondary changes associated with clinical outcome?

BACKGROUND: Ewing sarcoma is associated with a nonrandom pattern of primary and secondary chromosomal aberrations. Whereas the finding of rearrangements of chromosome 22, usually in the form of a balanced translocation t(11;22)(q24;q12), is important diagnostically, nothing is known about the potential prognostic impact of the secondary chromosomal aberrations. PROCEDURE: During a 1 3-year-period, short-term cultured tumor samples from 21 children and young adults with Ewing sarcoma were cytogenetically analyzed successfully. RESULTS: Clonal chromosome aberrations were detected in 18 patients, 17 of whom had the characteristic t(11;22)(q24;q12) or variants thereof. The most frequent secondary change was +8, followed by +12, +2, +5, +9, +15, and gain of material from the long and short arms of chromosome 1. The only recurrent secondary change that was restricted to tumors from the ten patients that were dead at latest follow-up was gain of 1q material. Furthermore, all three patients with tumors with chromosome numbers over 50 had died, and the only patient with a tumor karyotype lacking chromosome 22 rearrangement was alive without evidence of disease. CONCLUSIONS: These data and previously published results indicate that the karyotypic pattern not only may be of diagnostic significance but also may be important prognostically.

Adolescent↗

Diamond-Blackfan anaemia: genetic homogeneity for a gene on chromosome 19q13 restricted to 1.8 Mb.

Diamond-Blackfan anaemia (DBA; MIM#205900) is a rare disorder manifested as a pure red-cell aplasia in the neonatal period or in infancy. The clinical hallmark of DBA is a selective decrease in erythroid precursors and anaemia. Other lineages are usually normal and the peripheral white blood cell count is normal. In approximately one-third of cases, the disease is associated with a wide variety of congenital anomalies and malformations. Most cases are sporadic, but 10-20% of them follow a recessive or a dominant inheritance pattern. A female with DBA and a chromosomal translocation involving chromosome 19q was recently identified. We undertook a linkage analysis with chromosome 19 markers in multiplex DBA families of Swedish, French, Dutch, Arabic and Italian origin. Significant linkage to chromosome 19q13 was established for dominant and recessive inherited DBA with a peak lod score at D19S197 (Zmax = 7.08, theta = 0.00). Within this region, a submicroscopic de novo deletion of 3.3 Mb was identified in a patient with DBA. The deletion coincides with the translocation break-point and, together with key recombinations, restricts the DBA gene to a 1.8-Mb region. The results suggest that, despite its clinical heterogeneity, DBA is genetically homogeneous for a gene in 19q13.

Adult↗

Childhood acute lymphoblastic leukaemia with ider(21)(q10)t(12;21)(p12;q22): a new recurrent abnormality showing ETV6/CBFA2 fusion.

The cytogenetically unidentifiable t(12;21)(p12:q22), resulting in ETV6/CBFA2 fusion, is the most frequent chromosomal aberration in childhood acute lymphoblastic leukaemia ALL). We report a variant, ider(21)(q10)t(12:21)(p12;q22), which was shown to contain double ETV6/CBFA2 fusions by fluorescence in situ hybridization. This is the second case of such an ider(21) in childhood ALL, suggesting that it is a new recurrent abnormality. Since the ider(21) is cytogenetically indistinguishable from i(21)(q10) and idic(21)(p11), changes associated with similar clinical features as the t(12;21), i.e. pre-B-cell ALL and age 1-10 years, we suggest that all ALL displaying these changes should be tested for ETV6/CBFA2 fusion transcript.

Child↗

Mutation spectrum in patients with Wiskott-Aldrich syndrome and X-linked thrombocytopenia: identification of twelve different mutations in the WASP gene.

Twelve different mutations in the WASP gene were found in twelve unrelated families with Wiskott-Aldrich syndrome (WAS) or X-linked thrombocytopenia (XLT). Four frameshift, one splice, one nonsense mutation, and one 18-base-pair deletion were detected in seven patients with WAS. Only missense mutations were found in five patients diagnosed as having XLT. One of the nucleotide substitutions in exon 2 (codon 86) results in an Arg to Cys replacement. Two other nucleotide substitutions in this codon, R86L and R86H, have been reported previously, both giving rise to typical WAS symptoms, indicating a mutational hot spot in this codon. The finding of mutations in the WASP gene in both WAS and XLT gives further evidence of these syndromes being allelic. The relatively small size of the WASP gene facilitates the detection of mutations and a reliable diagnosis of both carriers and affected fetuses in families with WAS or XLT.

Base Sequence↗

Clonal karyotypic evolution in a pediatric neurofibrosarcoma.

A retroperitoneal neurofibrosarcoma infiltrating the spine of a 2-year-old boy was investigated cytogenetically three times over a 5-month period. The first sample, from a diagnostic fine-needle aspiration biopsy, had a supernumerary i(1)(q10) as the sole clonal aberration; two cells showed monosomy 18 in addition to the isochromosome. The second sample, obtained at tumor resection 3 weeks later, had the karyotype 47,XY, +i(1)(q10), -18, +21/45,XY, -18. After 5 months, a large local recurrence was resected. The chromosome analysis showed further clonal evolution: 45,XY, +1,der (1;11)dic(1;11)(q44;q13)i(1)(q10), inv(6)(p21q12), -17. The findings indicate that formation of i(1)(q10) and loss of chromosome 18 may be early genetic events in neurofibrosarcoma development.

Child, Preschool↗

Partial complement deficiencies in idiopathic thrombocytopenia of childhood.

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

Adolescent↗

Two new candidate mutations in type IIA von Willebrand's disease (Arg834-->Gly, Gly846-->Arg) and one polymorphism (Tyr821-->Cys) in the A2 region of the von Willebrand factor.

Recently, several von Willebrand factor gene mutations resulting in type IIA von Willebrand's disease have been reported. We examined 8 patients from Sweden and Denmark with this phenotype and found two new candidate mutations and a hitherto unknown amino acid polymorphism. One patient had a de novo occurring mutation resulting in substitution of glycine for arginine 834. Previous reports have demonstrated conversion of arginine 834 to tryptophan or glutamine in IIA patients. A 2nd patient had a G(4825)-->A transition, substituting arginine for glycine 846. The transition produces a sequence congruent with that of the pseudogene but several lines of evidence indicate that a sequencing error due to influence by the latter could be excluded. The remaining 6 patients had one of the earlier described substitution mutations: Ser743-->Leu and Ile865-->Thr. In addition, two sequence variations not linked to the phenotype were found, namely Tyr821-->Cys and Val802-->Leu.

Adolescent↗

Type IIB von Willebrand's disease: gene mutations and clinical presentation in nine families from Denmark, Germany and Sweden.

Type IIB of von Willebrand's disease (vWD) is a variant in which the structurally abnormal von Willebrand factor (vWF) shows an increased affinity for the platelet vWF receptor, glycoprotein Ib (GPIb). This may sometimes give rise to platelet aggregation and thrombocytopenia in vivo. In 20 patients from nine unrelated families with type IIB vWD from Denmark, Germany and Sweden we studied the molecular defect by amplification and direct sequencing of parts of exon 28 which encode for the vWF domain that interacts with platelet GPIb. Three different point mutations were identified one of which has not previously been reported. Fifteen patients from five families were heterozygous for the Arg543-->Trp substitution. The mutation had occurred independently in all five families and in two of them represented a de novo mutation. In one of these families the father, though asymptomatic and with normal laboratory test results, carried the mutation in heterozygous form. In three families, four affected members were found to be heterozygous for the Arg543-->Cys substitution. The mutations were of different origin at least in two of the families. The third substitution, Val551-->Leu, which has not previously been described, was found in one patient and was due to a de novo mutation. In most of the patients spontaneous thrombocytopenia had been recorded on at least one occasion. Five of the patients with the Arg543-->Trp substitution and the one with the Val555-->Leu substitution had all had bleeding associated with thrombocytopenia in the neonatal period of early infancy.

Adult↗

An HphI-polymorphism in exon 28 of the von Willebrand factor gene, and its frequency among patients with various forms of von Willebrand's disease.

Besides having a large number of restriction fragment length polymorphisms (RFLP) the von Willebrand factor (vWF) gene contains several sequence polymorphisms in the coding regions. Eight nucleotide substitutions have been reported in two or more independent cDNA clones. Four of them give rise to amino acid substitutions, two of which are in the mature vWF subunit (at positions 26 and 709). We have investigated a previously suggested putative alanine-threonine polymorphism at position 618 of the mature subunit in normal subjects and patients with various types of von Willebrand's disease (vWD). the codon for amino acid 618 is located in exon 28, which encodes several important vWF functional domains. We amplified the whole exon 28 and parts of it by polymerase chain reaction (PCR) and distinguished gene from pseudogene sequences. The alanine----threonine (G----A) substitution was studied with restriction enzyme cleavage of the products, since it creates a new HphI site. Moreover, in two individuals we confirmed the polymorphism by cDNA sequencing. In 23 normals the frequencies of the h- (Ala) and the h+ (Thr) alleles were 0.50/0.50. In eight patients with type III vWD from seven different families, the h- allele was present in 13 of 16 genes, but whether this signifies a common mutation in some of the patients is not known. In types I and II, both alleles were present in roughly similar proportions. Owing to the high frequency of heterozygosity, the polymorphism should prove useful as an aid in genetic counselling.

Base Sequence↗

An Arg545----Cys545 substitution mutation of the von Willebrand factor in type IIB von Willebrand's disease.

Type IIB is a special variant of von Willebrand's disease, characterized by an abnormal von Willebrand factor which shows an increased interaction with platelets. This interaction sometimes causes platelet aggregation and thrombocytopenia in vivo. It involves the glycoprotein-Ib (GPIb) receptor on platelets and corresponding GPIb-binding sites in the von Willebrand factor. We here demonstrate a C----T mutation at codon 1308 of the von Willebrand factor gene in 2 related patients with IIB von Willebrand's disease. The transition gives rise to a substitution of arginine by cysteine at position 545 of the mature von Willebrand factor subunit. This position is close to the GPIb- as well as the collagen- and heparin-binding domains of the von Willebrand factor. The mutation may change the conformation of the molecule in this region and activate the GPIb-binding domain, which is normally not exposed in the von Willebrand factor of circulating blood.

Adult↗

Platelet surface-bound IgG and platelet-specific IgG in plasma in childhood thrombocytopenia.

Quantification of platelet-bound immunoglobulin is widely used in the evaluation of thrombocytopenia. Several methods have been devised among which labelled ligand-binding assays seem to be most appropriate. In series of adult patients such assays have been shown to be superior in separating immune-thrombocytopenia from thrombocytopenia of non-immune causes. We studied 62 children with thrombocytopenia of various causes, using radiolabelled protein A as a ligand to measure platelet-surface bound IgG. The test was highly sensitive (93%) in detecting immune-thrombocytopenia. The specificity, however, was only 57%, which is less than in published studies of adults. In a number of cases presumed to be non-immune-thrombocytopenia, notably a few patients with leukaemia and bone marrow aplasia, we found increased amounts of platelet surface-bound IgG. The significance of this finding is not clear. An indirect assay measuring platelet-specific IgG in plasma was less sensitive (46%) but highly specific for immune-thrombocytopenia (89%). The measurements of platelet-surface-bound IgG and platelet-specific IgG in plasma are of limited diagnostic value in childhood thrombocytopenia but are useful in following the treatment in chronic ITP.

Antigens, Surface↗

Hereditary X-linked thrombocytopenia maps to the same chromosomal region as the Wiskott-Aldrich syndrome.

Hereditary X-linked thrombocytopenia occurs either as isolated thrombocytopenia or as a part of the Wiskott-Aldrich syndrome (WAS). We studied X-linked thrombocytopenia in a family with eight affected male members, none of whom exhibited the increased susceptibility to infection that occurs in WAS. We found a significant linkage between thrombocytopenia and DXS 146, a marker on the proximal part of the short arm of the X-chromosome. WAS has previously been mapped to the same chromosomal region. The present findings indicate that X-linked thrombocytopenia and WAS are closely related and may even be caused by different mutations of the same gene. This view is supported by our findings of atopic symptoms and minor deviations in immunologic variables among some of the affected subjects.

Adolescent↗

Type IIB von Willebrand's disease with probable autosomal recessive inheritance and presenting as thrombocytopenia in infancy.

von Willebrand's disease (vWD) is a congenital bleeding disorder that exists in two main forms. In the classic form, type I, the concentration of the von Willebrand factor (vWF) in plasma is decreased. In type II vWD, the vWF is structurally altered. Type II can be further divided into at least six subtypes (A, B, C, D, E and F). In type IIB the vWF, in contrast to other variants of vWD, shows an increased affinity for platelets. IIB vWD is generally believed to be inherited in an autosomal dominant manner. We describe two families with three affected children in whom an autosomal recessive inheritance is more likely. Thrombocytopenia, constant or variable, was present from early infancy in all three cases. Type IIB vWD should thus be included in the differential diagnosis of congenital thrombocytopenia.

Antigens↗

Corticosteroid treatment of maternal ITP and risk of neonatal thrombocytopenia.

Maternal ITP is associated with a high risk of thrombocytopenia in the fetus and newborn infant. Methods of predicting this risk include determinations of maternal platelet count and platelet-associated IgG prior to delivery. In this report we show that prednisolone treatment normalized maternal platelet count and platelet-associated IgG without eliminating circulating platelet antibodies, which thus crossed the placenta and rendered the infant severely thrombocytopenia. Determination of maternal circulating platelet antibodies may be the best way of predicting infant thrombocytopenia, especially if the mother has received corticosteroids.

Adult↗

von Willebrand's disease characterized by increased ristocetin sensitivity and the presence of all von Willebrand factor multimers in plasma.

In eight members of one family, platelets in platelet-rich plasma aggregated at much lower ristocetin concentrations than normal. Ivy bleeding time was variously prolonged, and von Willebrand factor antigen (vWF:Ag), ristocetin cofactor activity, and factor VIII coagulant activity were decreased. Most of the affected members had had slight to rather severe bleeding symptoms. Platelet-type von Willebrand's disease (vWD) could be ruled out. All multimers of vWF:Ag were found in plasma as well as platelets. Administration of 1-desamino-8-D-arginine vasopressin (DDAVP) to the propositus did not cause thrombocytopenia, and platelet-poor plasma obtained immediately after did not aggregate normal platelets. The molecular defect in this family, inherited as an autosomal dominant, resembles the one in type IIB because of the response to ristocetin but differs from IIB because all vWF:Ag multimers are present in plasma and the response to DDAVP is atypical. We conclude that this family has a new subtype of vWD and propose that structural as well as functional criteria should be used for a proper classification of vWD.

Blood Platelets↗