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Biomedical subjects

K G Kupke

Publications and source records attributed to K G Kupke.

14 recordsLinked to original sources

Hepatocellular carcinoma despite long-term survival in chronic tyrosinaemia I.

Tyrosinaemia I (fumarylacetoacetate hydrolase deficiency) is an autosomal recessive inborn error of tyrosine metabolism that produces liver failure in infancy or a more chronic course of liver disease with cirrhosis, often complicated by hepatocellular carcinoma, in childhood or early adolescence. We studied a 37-year-old woman with tyrosinaemia I whose severe liver disease in infancy and rickets during childhood resolved with dietary therapy. From 14 years of age she resumed an unrestricted diet with the continued presence of the biochemical features of tyrosinaemia, yet maintained normal liver function. In adult years she accumulated only small amounts of succinylacetone. Despite this evolution to a mild biochemical and clinical phenotype, she eventually developed hepatocellular carcinoma. Her fumarylacetoacetate hydrolase genotype consists of a splice mutation, IVS6-1g>t, and a novel missense mutation, Q279R. Studies of resected liver demonstrated the absence of hydrolytic activity and of immunological expression of fumarylacetoacetate hydrolase in liver tumour. In nontumoral areas, however, 53% of normal hydrolytic activity and immunologically present fumarylacetoacetate hydrolase was found. This case demonstrates the high risk of liver cancer in tyrosinaemia I even in a seemingly favourable biological environment.

Adult↗

Lys650Met substitution in the tyrosine kinase domain of the fibroblast growth factor receptor gene causes thanatophoric dysplasia Type I. Mutations in brief no. 199. Online.

Thanatophoric dysplasia (TD) is one of the most common neonatal lethal skeletal dysplasias with micromelic shortening of the limbs, relative macrocephaly, flat vertebral bodies and a narrow thorax. TD has been divided into two types, type I (TD1) and II (TD2), based on clinical, radiological, histological, and molecular criteria. We identified a A to T heterozygous base subsitution at position 1949 predicted to cause a Lys650Met substitution in a term infant with TD1. This mutation has been previously described in one case of TD1 and three cases of severe achondroplasia with acanthosis nigricans and mental retardation. Interestingly, all cases with the Lys650Met mutation have the same unusual curvature of the tibia and/or fibula.

Amino Acid Substitution↗

Second polar body incorporation into a blastomere results in 46,XX/69,XXX mixoploidy.

A case of 46,XX/69,XXX mixoploidy is described. The patient had a normal 46,XX diploid karyotype in lymphocytes but a triploid 69,XXX cell line in most of her fibroblasts. In order to learn more about the underlying mechanism resulting in mixoploidy, we studied short tandem repeat polymorphisms (STRPs) in lymphocyte DNA of the patient's parents and in both lymphocyte and fibroblast DNA of the proband. The findings showed maternal origin of the supernumerary chromosome complement and are best explained by second polar body incorporation into a blastomere.

Abnormalities, Multiple↗

Delineation of the dystonia-parkinsonism syndrome locus in Xq13.

The X chromosome-linked dystonia-parkinsonism syndrome (XDP) is a severe movement disorder, characterized by both dystonia and parkinsonism. XDP is a genetically homogeneous disorder. Known ancestry of all patients has been traced back to Panay, Philippines, where the disease probably originated from a single mutation (founder effect). The gene locus, DYT3, has been previously assigned to the proximal long arm of the X chromosome (Xq12-q21.1). Using four dinucleotide tandem repeat (DNTR) sequences from Xq13-derived yeast artificial chromosomes (YACs), we further delineate DYT3 within Xq13. Observation of a recombination event between DYT3 and DNTR locus 4548-7, derived from a YAC encompassing locus DXS56, establishes 4548-7 as a distal flanking marker. Assignment of DYT3 to a region in Xq13, flanked by loci 4548-7 and DXS159, is further supported by highly significant allelic association between DYT3 and a total of four DNTR loci--PY2-31, PY5-10, 4548-1, and 4548-7--located in a region defined by PGK1 and DXS56. /phi/ and /delta/ values were 0.82/0.35, 0.78/0.42, 0.65/0.34, and 0.88/0.58 for PY2-31, PY5-10, 4548-1, and 4548-7 at P less than 10(-2), P less than 10(-4), P less than 10(-3), and P less than 10(-6).

Base Sequence↗

Dystonia-parkinsonism syndrome (XDP) locus: flanking markers in Xq12-q21.1.

The study of rare genetic forms of dystonia and parkinsonism permits positional cloning of genes potentially involved in more common, multifactorial forms of these diseases. One movement disorder amenable to molecular genetic analysis is the X-linked dystonia-parkinsonism syndrome (XDP). This disease is endemic to the Philippines where it originated by a genetic founder effect. Linkage analysis was performed with DNA from 14 XDP kindreds by using 12 polymorphic DNA sequences in Xp11-Xq22. Two-point analysis demonstrated maximum lod scores of 5.45, 4.95, 4.28, and 5.99 for DXS106, DXS159, PGK1, and DXS72, respectively, at recombination fractions of zero (DXS106 and DXS159), .01 (PGK1), and .04 (DXS72). Multipoint analysis resulted in a maximum-likelihood score (Zmax) of 8.41 with a (Zmax - 1) support interval of 9 cM between DXS159 and DXS72 (Xq12-q21.1). In 19 XDP kindreds significant linkage disequilibrium was found for loci DXS72 (delta = .47), PGK1 (delta = .36), DXS95 (delta = .30), DXS106 (delta = .28), and DXS159 (delta = .26). These data indicate that the gene mutated in XDP (locus DYT3) is located in Xq12-q21.1.

Chromosome Mapping↗

The phenotype of the X-linked dystonia-parkinsonism syndrome. An assessment of 42 cases in the Philippines.

The clinical phenotype of X-linked recessive torsion dystonia was documented in 42 affected individuals from 21 families. In 7 families, there were 9 sibships (core families) with 2 or more affected individuals available for evaluation. The ages of the patients ranged from 29 to 79 years with a mean of 46.2 +/- 10.1 years; the mean age of onset of dystonia was 35.0 +/- 8.0 years with a range of 12 to 48 years; and the mean duration of illness was 11.1 +/- 7.9 years. First manifestations were noted in the lower extremities in 36%, the axial musculature in 29%, the upper extremities in 23%, and in the head in 12% of the cases. The majority of patients displayed gait abnormalities (90%), leg dystonia (79%), oromandibular dystonia (64%), neck dystonia (57%), blepharospasm (57%), and truncal dystonia (52%). The disease generalized in 90% of the cases within 1 to 11 years of onset (median duration, 5 years). Overall, the condition was disabling, but the Fahn-Marsden disability score did not correlate with age of onset, duration of illness, site of onset, rate of generalization, or presence of parkinsonism. Thirty-six percent of the cases displayed at least 1 of the following "parkinsonian symptoms": bradykinesia, tremor, rigidity, loss of postural reflexes and a shuffling gait. Parkinsonism was diagnosed as definite in 14%, probable in 2%, and possible in 19% of the cases. Given this high association of dystonia and parkinsonism, we propose to call the disorder X-linked dystonia-parkinsonism syndrome (XDP).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

X-linked recessive torsion dystonia in the Philippines.

The occurrence of an X-linked form of torsion dystonia in the Philippines was demonstrated by the genetic and biochemical analysis of affected males and their relatives. Thirty-six affected males were ascertained in 21 families by clinical neurologic evaluation. The mean age-of-onset of dystonia was 37.9 years with a range from 12 to 52 years. Neurologic symptoms began focally and progressed to either segmental or generalized involvement in all cases. Generalized dystonia developed in 78% of the patients after a mean duration of 6.8 years from the onset of symptoms. A family history of dystonia was elicited in 17 of the 21 kindreds, accounting for a total of 64 males and one possibly affected female, distributed among 224 individuals in 33 sibships. In 18 of the 33 sibships, 2 or more brothers reportedly had dystonia. There were 12 kindreds with a history of multigenerational dystonia. In those, only males of maternal ancestry were affected, and in 7 of these families, maternal grandfathers reportedly had dystonia. There were no instances of male-to-male transmission. Cytogenetic analysis did not show any X chromosome abnormalities in 4 affected propositi. Several secondary causes of torsion dystonia were excluded, including Wilson disease, aminoacidopathies, organic acidurias, oligosaccharidoses, and chronic hexosaminidase A and B deficiency. These findings substantiate the existence of an X-linked recessive form of primary torsion dystonia.

Adolescent↗

Maternal meiosis II nondisjunction in a case of 47,XXY testicular feminization.

An 11-year-old patient with incomplete testicular feminization and a 47,XXY karyotype is described. The patient had female external genitalia, clitoromegaly, and some features of Klinefelter's syndrome, including speech delay and delayed intellectual development. DNA analysis using X chromosomal DNA sequences suggest that the supernumerary X chromosome in the patient resulted from maternal nondisjunction during meiosis II. The M II error thereby provides the basis for homozygosity of a mutation in the androgen receptor locus.

Androgen-Insensitivity Syndrome↗

The genetics of primary torsion dystonia.

Primary torsion dystonia is an idiopathic movement disorder presumably caused by abnormal function of the basal ganglia. The disorder may be inherited either as an autosomal dominant, autosomal recessive, or X-linked recessive trait. At least six forms of autosomal dominant torsion dystonia can be distinguished clinically. Linkage analysis in one form of autosomal dominant torsion dystonia permits the assignment of a "torsion dystonia locus" to the long arm of chromosome 9.

Dystonia Musculorum Deformans↗

Assignment of the X-linked torsion dystonia gene to Xq21 by linkage analysis.

We performed linkage analysis of X-linked torsion dystonia (XLTD) in 7 Filipino families, studying DNA from a total of 36 family members (9 obligate carrier females, and 18 affected and 9 unaffected males). Application of 21 informative X chromosomal DNA sequences allowed assignment of the XLTD locus to the proximal long arm of the X chromosome (Xq21). A maximum LOD score of 3.06 at [symbol: see text] = 0.0 was obtained with DXYS2, previously assigned to Xq21.3.

Adult↗

Parental origin of the extra chromosome in trisomy 18.

The parental origin of the supernumerary chromosome 18 was investigated by RFLP analysis in 23 individuals with Edwards syndrome. All families were studied with the DNA probe pERT-25, which recognizes a locus of highly polymorphic tandemly repeated DNA sequences on chromosome 18. The extra chromosome was found to be of maternal origin in 19 patients (95%), of paternal origin in one patient (5%), and indeterminate in three patients. In one of the three indeterminate cases, a mosaic, an apparent recombination event had taken place within the pERT-25 locus. The overall high degree of informativeness of pERT-25 illustrates the power of a chromosome-specific variable-number tandem repeat probe (VNTR) in parental origin studies of aneuploidy.

Adolescent↗

Microprobe analysis in human pathology.

This tutorial paper reviews the literature on the application of microprobe analysis to practical problems in diagnostic human pathology. The goal is to allow the reader ready access to the literature on specific clinical problems. Specimen preparation and commonly encountered artifacts are also considered. It is concluded that energy dispersive x-ray microanalysis and back-scattered electron imaging are at present the most generally useful microprobe techniques for clinical work, and are no longer solely research tools. The findings often have diagnostic, therapeutic, and/or legal implications.

Body Fluids↗

Origin of the supernumerary X chromosome in a patient with fragile X and Klinefelter syndrome.

We report on a 10-year-old patient with the fragile X [fra(X)] syndrome and a 47,XXY karyotype. He had Martin-Bell syndrome, including typical craniofacial findings and mental retardation. The fra(X) was detected on both X chromosomes of the patient in 8% of the metaphases examined. DNA analysis using X-chromosome sequences from the pericentromeric region and from distal Xq suggests that the patient is homozygous at the fra(X) locus due to maternal nondisjunction during meiosis II.

DNA↗