An anonymous single copy X-chromosome clone, DXS79, from Xq26-Xq28, identifies a moderately frequent RFLP [HGM8 provisional no. DXS79].
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Biomedical subjects
Publications and source records attributed to W R Breg.
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Cytogenetic studies on fetal blood cells obtained at 18-25 weeks gestation have provided information for decision making in 25 cases identified as being at high risk of having an abnormal fetus. In particular, in the 21 cases studied to consider the possibility of true mosaicism, confirmation in fetal blood was obtained in three, one of which presented as a pseudomosaic on the original amniotic fluid cell study. Fetal blood was also informative in two cases (one positive and the other negative) in which a diagnosis of the fragile X syndrome was being considered. Furthermore, when high risk pregnancies presented late in gestation (21-24 weeks), these methods allowed for a rapid cytogenetic diagnosis. The procedure has proved useful in most of these cases since the couples involved had indicated that they would probably have terminated the pregnancy without the reassurance of normal fetal lymphocyte studies. Since the technique carries a much higher risk of pregnancy loss than does amniocentesis, its use should only be considered when there are compelling indications.
A patient with a 45,X/46,X, ring (X) karyotype has been found with serologically detectable male antigen, functioning ovaries, and documented oocyte production.
Cytogenetic studies performed on a 79-year-old female presenting with clinical and hematologic features of acquired hypomegakaryocytic thrombocytopenic purpura revealed sex chromosome mosaicism in blood lymphocytes (45,X/46,XX/47,XXX). The presence of only 45,X cells in the bone marrow is consistent with a unicellular origin of acquired hypomegakaryocytic thrombocytopenia in this patient. These studies also suggest that, in some instances, this disorder may originate at the level of the pluripotent hematopoietic stem cell.
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The human cellular homolog (c-fos) of the transforming gene of Finkel-Biskis-Jinkins (FBJ) murine osteosarcoma virus was mapped to a single human chromosome. DNA from a series of 31 mouse-human somatic cell hybrid lines was probed with v- and c-fos molecular clones by Southern blotting. Human c-fos segregated with the distal region of the long arm of human chromosome 14. In situ hybridization of 125I-labeled human c-fos probe to normal human metaphase chromosomes independently confirmed these results and localized the c-fos oncogene to region 14q21----q31.
The human transforming gene NRAS, cloned from SK-N-SH neuroblastoma cells, has been mapped to region p11----p13 on chromosome 1 by in situ hybridization.
Chorionic villous biopsy is emerging as a technique for obtaining fetal cells for prenatal diagnosis in the first trimester of pregnancy. Chromosome analysis has been performed on small villous biopsies using either direct harvests of uncultured cells or after culturing villous tissue. Here, we describe a method where both techniques can be used simultaneously; from a single villous biopsy, GTG-banded chromosomes of improved morphology are obtained from direct preparations and from cultured villous cells.
Fetal cystic hygromas are congenital malformations of the lymphatic system appearing as single or multiloculated fluid-filled cavities, most often about the neck. They are thought to arise from failure of the lymphatic system to communicate with the venous system in the neck. They often progress to hydrops and cause fetal death. In an effort to delineate the cause and natural history of this disorder, we studied 15 consecutive cases of nuchal hygroma detected prenatally by ultrasound. None of the 15 fetuses ultimately survived. Thirteen fetuses were hydropic at the time of diagnosis; nine either died or were bradycardic in utero before abortion; one died a few hours after birth. Eleven fetuses (73 per cent) had karyotypes consistent with Turner's syndrome, and an additional fetus with female genitalia had a 46,XY karyotype. Three fetuses had 46,XX karyotypes, and two of these had multiple malformations. When a hygroma is detected during fetal life, careful sonographic examination of the entire fetus, determination of the fetal karyotype, and an evaluation of the family history are indicated.
Cells from eight of ten patients with gonadal dysgenesis and an isochromosome for the long arm of X, (i(Xq)), have been found to be H-Y antigen-positive, using an assay that employs rat antiserum and Raji cells. In addition, two patients with del(Xq) were also found to be H-Y antigen-positive, whereas four patients in whom only a 45,X line was detected were H-Y antigen-negative. These findings suggest that the X chromosome plays a role in the expression of H-Y antigen in the absence of a Y chromosome. Since our patients with i(Xq) show no evidence of testicular differentiation, it is clear that there is not enough H-Y antigen on these patients' cells to direct the development of a testis. These findings are consistent with the view that the normal functioning of genes on the X and the Y chromosomes is necessary for testicular organogenesis to occur.
Cells from three patients with early gonadal failure and a balanced reciprocal translocation involving the long arm of the X chromosome and an autosome were studied. Fibroblasts from a patient with a similar balanced reciprocal translocation but normal reproductive capabilities were also studied. Two of the four patients were found to have serologically detectable H-Y antigen on their cells. Since H-Y antigen has been found on the cells of other patients with X chromosome abnormalities but without a Y chromosome, it is thought that the X chromosome plays a role in the regulation of H-Y antigen expression. This study suggests that the long arm of the X chromosome may be involved but the location of a regulatory gene cannot be identified in these studies. These cases do not permit us to implicate H-Y antigen as a cause of gonadal dysgenesis and early gonadal failure in females who have structurally abnormal X chromosomes.
A body with the 13 trisomy syndrome was found to have a unique form of mosaicism in which each of the two cell lines had different structural rearrangements. The predominant cell line was partially trisomic for the distal portion of the long arm of chromosome 13, while the minor cell line was trisomic for all of the long arm of 13. The patient is also unusual because he had congenital glaucoma and was still alive at 10 years.
In two unrelated families, the short arm of a 14p+ marker chromosome contains an increased number of copies of the 18S + 28S rRNA genes without a comparable increase in the transcriptional activity, as shown by silver staining. The DNA in this region is highly enriched in 5-methylcytosine, as shown by specific antibody binding. In contrast, the owl monkey and cat have a single major nucleolus organizer region (NOR) per haploid genome; these NORs contain about the same number of rRNA genes as the 14p+ chromosome but are not methylated. These findings suggest that most of the amplified human rRNA genes on the 14p+ chromosomes have been inactivated by a process involving DNA methylation.
H-Y antigen could not be detected on lymphocytes from two male pseudohermaphrodites with 46,XY karyotypes and testicular tissue. One of the patients had additional assays performed on fibroblasts grown from the skin, and the gonadal ridge--these were also negative. The H-Y antiserum was raised in rats, with Raji cells the target of cytotoxicity tests. In these patients. the substance that promoted testicular differentiation does not have serologic H-Y antigen detectable by the assay used. It appears that H-Y antigen that is commonly measured in neutralization reactions may not be the only form of testicular organizing factor present.
Two unrelated newborn infants with multiple malformations were found to have complete trisomy 9 in all cells examined. In both, the phenotype was similar, consisting of characteristic facial appearance (microphthalmia, bulbous nose, micrognathia, cleft palate, low set ears), skeletal abnormalities (dislocated joints, flexion contractures of the fingers), cardiovascular malformations (persistent left superior vena cava, ventricular septal defect), hypoplastic genitalia, renal anomalies, and central nervous system malformations. Both died during the first few hours of life. Comparison of these two infants with the previously reported cases reveals a consistent pattern of malformations and very short survival associated with trisomy 9. These cases illustrate the importance of doing chromosome studies on infants with congenital malformations dying in the newborn period and the usefulness of such studies in counselling parents regarding the risk of recurrence.
A human retinoblastoma cell line was found to contain a homogeneously staining region (HSR) on chromosome 1 (at 1p34). An HSR had previously been identified at the same site in a human neuroblastoma cell line. Of the original retinoblastoma line, a subpopulation was found which did not contain the 1pHSR but did contain a 3p+ chromosome in which the additional segment resembled a small HSR. The 3p+ was most likely the result of the translocation between the 1pHSR and the short arm of a chromosome 3. Preliminary results also indicate that the retinoblastoma cells with the 1pHSR produced tumors in athymic nu/nu mice in an average of 28 days, while identical numbers of the retinoblastoma cells with the 3p+ (probable HSR) produced tumors in an average of 75 days.