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Biomedical subjects

K Hirschhorn

Publications and source records attributed to K Hirschhorn.

At least 19 recordsLinked to original sources

Proposed guidelines for diagnosis of chromosome mosaicism in amniocytes based on data derived from chromosome mosaicism and pseudomosaicism studies.

Currently, accepted protocol which has been developed at the Prenatal Diagnosis Laboratory of New York City (PDL) requires that when a chromosome abnormality is found in one or more cells in one flask, another 20-40 cells must be examined from one or two additional flasks. Chromosome mosaicism is diagnosed only when an identical abnormality is detected in cells from two or more flasks. In a recent PDL series of 12,000 cases studied according to this protocol, we diagnosed 801 cases (6.68 per cent) of single-cell pseudomosaicism (SCPM), 126 cases (1.05 per cent) of multiple-cell pseudomosaicism (MCPM), and 24 cases (0.2 per cent) of true mosaicism. Pseudomosaicism (PM) involving a structural abnormality was a frequent finding (2/3 of SCPM and 3/5 of MCPM), with an unbalanced structural abnormality in 55 per cent of SCPM and 24 per cent of MCPM. We also reviewed all true mosaic cases (a total of 50) diagnosed in the first 22,000 PDL cases. Of these 50 cases, 23 were sex chromosome mosaics and 27 had autosomal mosaicism; 48 cases had numerical abnormalities and two had structural abnormalities. Twenty-five cases of mosaicism were diagnosed in the first 20 cells from two flasks, i.e., without additional work-up, whereas the other 25 cases required extensive work-up to establish a diagnosis (12 needed additional cell counts from the initial two culture flasks; 13 required harvesting a third flask for cell analysis). Our data plus review of other available data led us to conclude that rigorous efforts to diagnose true mosaicism have little impact in many instances, and therefore are not cost-effective. On the basis of all available data, a work-up for potential mosaicism involving a sex chromosome aneuploidy or structural abnormality should have less priority than a work-up for a common viable autosomal trisomy. We recommend revised guidelines for dealing with (1) a numerical versus a structural abnormality and (2) an autosomal versus a sex chromosome numerical aneuploidy. Emphasis should be placed on autosomes known to be associated with phenotypic abnormalities. These new guidelines, which cover both flask and in situ methods, should result in more effective prenatal cytogenetic diagnosis and reduced patient anxiety.

Amniocentesis

Triple autosomal trisomy in a pregnancy at risk for Bloom's syndrome.

Cytogenetic analysis of the products of conception in a pregnancy at risk for Bloom's syndrome (BS) documented the karyotype 49,XX, +2, +8, +11. Autosomal triple trisomy has previously been reported in abortuses but is exceedingly rare. Other interesting but previously unreported observations made during the present study were the following: BS in a Brazilian individual, the first instance of BS diagnosed in South America; transmission of the BS mutation in Jews that are non-Ashkenazi; a medulloblastoma in the propositus, the first malignant brain tumor reported in BS; and, as in all previously examined pregnancies at risk for BS, non-homozygosity for the BS mutation.

Abortion, Spontaneous

Identification of a missense mutation in an adult-onset patient with glycogenosis type II expressing only one allele.

The lysosomal enzyme acid alpha glucosidase (GAA) or acid maltase is deficient in glycogen storage disease type II. We sought to determine the molecular basis for the disease in an adult-onset patient, unusual for very low enzyme activity similar to that seen with the infantile-onset form and with a previously reported defect in phosphorylation. We constructed cDNA and genomic DNA libraries from the patient's cell line (GM 1935) and determined the nucleotide sequence of the coding region. There were three base-pair substitutions in one allele (C1935 to A; G2446 to A and C2780 to T), all predicting amino acid changes (Asp-645 to Glu; Val-816 to Ile and Thr-927 to Ile). To determine which of the three base-pair substitutions resulted in loss of enzyme activity, we next utilized primer-directed mutagenesis and transient gene expression in an SV40-immortalized GAA-deficient fibroblast cell line. Only the construct containing the G2446 to A mutation (Val-816 to Ile) lost GAA enzyme activity, while the other two substitutions (including the Thr-927 to Ile change that predicts a loss of a potential site for N-linked glycosylation and mannose phosphorylation) each resulted in enzyme activity equal to the control. Analysis of RFLPs in genomic DNA, as well as sequence analysis for the three base-pair alterations, indicated that the patient was a genetic compound. We next digested PCR-amplified cDNA (reverse-transcribed from RNA) with Aat II to detect the base-pair 1935 substitution and found that virtually all of the mRNA was derived from the allele with the three base-pair substitutions.(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles

Mesomelic dysplasia with absence of fibulae and hexadactyly: Nievergelt syndrome or new syndrome?

Mesomelic dysplasia is a form of short-limb dwarfism characterized by disproportionate shortness of the middle segment of all limbs. Included in this category of skeletal disorders is the Nievergelt syndrome, which typically manifests a rhomboidal shape of the tibiae and fibulae, an unusual foot deformity, radioulnar synostosis, and dysplasia of the elbow and knee joints. We describe a patient with mesomelic dysplasia with findings suggestive of the Nievergelt syndrome and with absence of fibulae and hexadactyly.

Abnormalities, Multiple

Trisomy 12 mosaicism detected by mid-trimester amniocentesis.

Trisomy 12 mosaicism was found in about 15 per cent of cultured amniocytes obtained from a 32-year-old white female at 17.6 weeks of gestation. Termination of pregnancy was elected and multiple tissues were obtained for chromosome analysis. Of 158 cells examined, only 1 cell in placenta was found with an extra number 12 chromosome. Pathological examination of the fetus did not reveal significant physical abnormalities. This report illustrates the difficulty of confirming trisomy 12 mosaicism which has been detected on prenatal diagnosis. The presence of trisomy 12 in one placental cell obtained from the curettage specimen suggests the possibility of confined placental mosaicism in this case.

Adult

Duplication of 16q and deletion of 15q.

A patient with distal arthrogryposis, congenital dislocations of the hips, a prominent forehead, epicanthal folds, thin lips, and a poorly defined philtrum was found to have a deletion of 15q and a duplication of 16q. Her mother, maternal grandmother, and great grandmother had a balanced t(15q-, 16q+). The gene for adenine phosphoribosyl transferase was assignable to the 16q22----16qter area that was duplicated.

Adenine Phosphoribosyltransferase

Further regional localization of the genes for human acid alpha glucosidase (GAA), peptidase D (PEPD), and alpha mannosidase B (MANB) by somatic cell hybridization.

We have further regionally localized the gene for human acid alpha glucosidase (GAA) to 17q21----q23 by examination of hybrid clones derived from a fusion between human fibroblasts carrying a 17/19 balanced translocation (17pter----17q23::19p13.3----19pter; 19qter----p13.3::17q23----17qter) and a mouse line deficient in thymidine kinase. These hybrids were constantly maintained in HAT selective media in order to select for the presence of the human thymidine kinase gene on the intact chromosome 17 (17q21-q22) or the 17/19 (17pter----17q23::19p13.3----19pter) translocation chromosome. We detected human GAA by rocket immunoelectrophoresis, using a human specific heterologous antibody raised against human acid alpha glucosidase (GAA) (Honig et al. 1984). Three secondary clones, which contained the 17/19 translocation and no intact chromosome 17 or 19, were still positive for GAA. Two of these secondary clones contained the distal portion of the 17/19 translocation chromosome, with a break in the band 17q21 (probably at 17q21.2), attached to a mouse chromosome. Combined with earlier results (Weil et al. 1979; Nickel et al. 1982; Honig et al. 1984), the gene for GAA can be assigned to 17q21.2----17q23. Additionally, these clones were negative for human peptidase D (PEPD), alpha mannosidase B (MANB), and phosphohexose isomerase (PHI). Combined with previous results (Ingram et al. 1977; Bruns et al. 1979), these results exclude the genes for PEPD and MANB from 19pter----19p13.3 and confirm the exclusion of the gene for PHI from this segment of chromosome 19 (Wilson et al. 1984; Ingram et al. 1977).

Animals

Dicentric Y-chromosome mosaicism in a girl with clitoral hypertrophy.

A 12-year-old girl with small stature and a hypertrophic clitoris was found to be mosaic for 45,X/46,X.dic(Y)(qtertop11:p11toqter)/46,XX/47,XX,dic(Y)(qtertop11:p11toqter). The dicentric chromosome was identified using Q-banding. These findings indicate mitotic instability of the dicentric Y, as well as the presence of an X chromosome in this patient.

Body Height

Human inosine triphosphatase: catalytic properties and population studies.

Using a reliable 2-step colorimetric assay, some catalytic properties of human erythrocyte ITPase (inosine triphosphate pyrophosphohydrolase) (EC 3.6.1.19) were determined. The enzyme hydrolyses ITP, dITP (deoxyinosine triphosphate) and XTP (xanthine triphosphate) but not other nucleotides. IDP is a competitive inhibitor. Subcellular fractionation of cultured lymphoid-line cells showed ITPase activity to be in the cytosol. ATP and GTP hydrolysing activities were not enriched in the cytosol fraction. The range of activity was investigated in erythrocytes, peripheral leukocytes, amniotic fluid cells, skin fibroblasts, long term lymphoid lines and bone marrow fibroblasts. The mean ITPase activity was found to vary in different cell types from 4.9 to 294 units per mg protein. Fractionation of red blood cells by age revealed that the enzyme decays exponentially with erythrocyte age with a half-life of 35 days. The enzyme had a wide range of specific activity in erythrocytes from 150 normal randomly selected individuals (15--722 pmol/h/g Hb). Within the low range of erythrocyte specific activities (from 15 to 200) a correlation was found between an individual's erythrocyte activity and the activity in peripheral leukocytes. This correlation was not found at higher erythrocyte ITPase activities. Two individuals were detected who had erythrocyte ITPase activities which were close to the lowest ITPase activities of all samples tested. Thus, low or absent ITPase activity is an individual characteristic which may be expressed both in erythrocytes and in other cell types.

Cell Line

Metabolic correction of fucosidosis fibroblasts by human alpha-L-fucosidase.

Human alpha-L-fucosidase, purified from placenta, was taken up from the culture medium by skin fibroblasts from patients with fucosidosis (alpha-L-fucosidase deficiency). The rate of uptake was low (uptake coefficient = 6 X 10(-4) ml.mg-1.h-1). Intracellular alpha-L-fucosidase activity was directly proportional to enzyme in the medium up to an activity of at least 40 nmoles/min/ml. No evidence for saturation of specific cell-surface receptors was seen. However, uptake was reduced by 75% by 1 mM mannose-6-phosphate and by 50% by 1mM glucose-6-phosphate, suggesting that uptake may be mediated by a receptor recognising a phosphorylated sugar or an analagous compound. Enzyme taken up by the cells was most active in subcellular fractions enriched with lysosomes and had an isozyme pattern, by isoelectric focusing, identical to that of the original enzyme preparation. Fucosidosis fibroblasts were shown to accumulate low molecular-weight, fucose-containing compounds to a level several times greater than control cells. This stored material was eluted from Sephadex G-25 as an asymmetrical peak with an elution volume of approximately twice the void volume of the column. Addition of placental alpha-L-fucosidase to the culture medium of fucosidosis fibroblasts prevented excessive accumulation of fucose-containing material and accelerated the breakdown of material accumulated prior to enzyme uptake.

Carbohydrate Metabolism, Inborn Errors