Search PubMedSearch

SEARCH · Search PubMed

Results for “Ring Chromosomes”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Missing X chromosome and ring chromosome 21 in a case of acute myelomonocytic leukemia.

The karyotypic picture of a female patient with acute myelomonocytic leukemia (A.M.M.L.) consisted in the loss of a sex chromosome and a ring chromosome 21. It is suggested that in A.M.M.L. the loss of sex chromosome may represent an early event, the monosomic cells being the object of further chromosome rearrangements, which involve more frequently a chromosome 21.

Adult

Mutant alleles of the meiotic locus, mei-9, differ in degree of effects on rod chromosome magnification and ring chromosome transmission in Drosophila.

Two mutant alleles of the meiotic locus, mei-9, have been examined for their effect on magnification of a rod Xbb chromosome and transmission of a ring Xbb chromosome under magnifying conditions. Our results indicate that the effects of these two mutations are allele-specific: mei-9a strongly inhibits both rod chromosome magnification and ring chromosome loss under magnifying conditions, while mei-9b has a smaller inhibitory effect on rod chromosome magnification and on the transmission of ring chromosomes under magnifying conditions. These observations can be explained by a difference in leakiness between the two alleles. Our results demonstrate that mutants defective in excision repair and repair replication inhibit ribosomal gene magnification. This suggests that a component of the excision repair pathway is involved in the process of magnification.

Alleles

Spontaneous and 3-aminobenzamide-induced sister-chromatid exchange frequencies estimated by ring chromosome analysis.

Ring chromosomes offer an opportunity to measure sister-chromatid exchange (SCE) frequencies without the use of an agent to differentiate sister chromatids: SCE frequencies can be determined from the number of dicentric rings formed in cells from a cell line carrying a monocentric ring chromosome. Ash is a pseudotetraploid Chinese hamster ovary cell line in which approximately 40% of metaphase cells have a large ring chromosome. We have used this cell line to investigate the spontaneous rate of SCE by determining the rate of dicentric ring formation and have compared this with the rate of loss of the ring chromosomes over time. In the absence of both [3H]thymidine and bromodeoxyuridine, the spontaneous rate of SCE in Ash cells was 0.12 SCEs/ring/cell cycle; this rate was increased by bromodeoxyuridine, by the polyfunctional alkylating agent mitomycin C, and by the poly(ADP-ribose) polymerase inhibitor 3-aminobenzamide. This indicates that spontaneous SCE occurs in this line and that not all 3-amino-benzamide-induced SCEs are dependent upon incorporated bromodeoxyuridine. Ring chromosomes were not lost over time as rapidly as predicted by the SCE frequencies observed. Non-disjunction of the dicentric ring, or anaphase bridge breakage followed by reunion to form one or two monocentric rings, are the most likely explanations for this discrepancy.

Animals

Mechanisms of ring chromosome formation in 11 cases of human ring chromosome 21.

We studied the mechanism of ring chromosome 21 (r(21)) formation in 13 patients (11 unique r(21)s), consisting of 7 from five families with familial r(21) and 6 with de novo r(21). The copy number of chromosome 21 sequences in the rings of these patients was determined by quantitative dosage analyses for 13 loci on 21q. Nine of 11 r(21)s, including the 5 familial r(21)s, showed no evidence for duplication of 21q sequences but did show molecular evidence of partial deletion of 21q. These data were consistent with the breakage and reunion of short- and long-arm regions to form the r(21), resulting in deletion of varying amounts of 21q22.1 to 21qter. The data from one individual who had a Down syndrome phenotype were consistent with asymmetric breakage and reunion of 21q sequences from an intermediate isochromosome or Robertsonian translocation chromosome as reported by Wong et al. Another patient, who also exhibited Down syndrome, showed evidence of a third mechanism of ring formation. The likely initial event was breakage and reunion of the short and long arms, resulting in a small r(21), followed by a sister-chromatid exchange resulting in a double-sized and symmetrically dicentric r(21). The phenotype of patients correlated well with the extent of deletion or duplication of chromosome 21 sequences. These data demonstrate three mechanisms of r(21) formation and show that the phenotype of r(21) patients varies with the extent of chromosome 21 monosomy or trisomy.

Alleles

Presence of telomeric and subtelomeric sequences at the fusion points of ring chromosomes indicates that the ring syndrome is caused by ring instability.

In situ hybridization of a telomeric (TTA-GGG)n sequence to metaphases from three cases of ring chromosome, involving respectively chromosomes 4, 16, and 20, showed the presence of the cognate sequences in all three rings. To investigate whether these ring chromosomes originated by telomere-telomere fusion, we determined, by in situ hybridization, whether telomere-associated sequences and/or specific distal sequences were still present in the ring chromosomes. The finding that these sequences were preserved in all the ring chromosomes strongly indicates that they originated by telomere-telomere fusion. All three subjects carrying the ring chromosomes are affected by the so-called ring syndrome, with failure to thrive, minor dysmorphic signs and no major anomalies. The r(4) patient has the ring in mosaic form with a normal cell line and has normal intelligence. The r(16) and the r(20) patients have moderate mental retardation and suffer from seizures. We conclude that the ring syndrome, even in its more severe manifestation, is caused by ring chromosome instability.

Adolescent

Chromosomes and causation of human cancer and leukemia. LI. A hairy cell leukemia case with 14q+ and ring chromosomes: significance of ring chromosomes in blood disorders.

What appears to be the first hairy cell leukemia case with a 14q+ anomaly is described. In addition to the 14q+ anomaly, a 6q- and a ring chromosome were seen in a blood sample stimulated with lipopolysaccharide, a B-cell mitogen. The clinical course of the present case was short, stormy, and had a poor response to therapy. The correlation between the clinical course and the presence of a ring chromosome in myelo- and lymphoproliferative blood disorders is discussed in relation to the various blood disorders with this karyotype anomaly described in the literature.

Aged

The cytogenetic and clinical implications of a ring chromosome 2.

Ring chromosome formation can occur without deletion, through the abnormal pairing of the palindromic DNA base sequences thought to make up the telomeres. The normal occurrence of sister chromatid exchanges within a ring constantly produces further chromosomal anomalies that are less likely to survive when the chromosome involved is large and/or its aneuploidy incompatible with life. These abnormal products (abbreviated pro) were only found in the present case after two or more cell cycles in lymphocyte cultures. Their elimination in vivo implies a very high cellular death rate and an enormous waste of metabolism that should have the same phenotypic effects no matter what chromosome is involved. These phenotypic anomalies form a ring syndrome that can be clinically recognized and consists of severe growth failure, mental retardation and a pleasant personality. The syndrome is usually masked by the more severe abnormalities produced by the deletions present in most cases of ring chromosomes.

Abnormalities, Multiple

[Ring chromosome 18].

Ring chromosome 18 (46,XX,r(18)) has previously been reported in about 70 patients. Another patient with the well-known physical and cytogenetic characteristics and, in addition, skeletal abnormalities in the feet, is presented here.

Abnormalities, Multiple

Ring chromosome in parosteal osteosarcoma. Clinical and diagnostic significance.

In this study, two specimens of a parosteal osteosarcoma, a rare primary bone neoplasm comprising only 3-6% of all osteosarcomas, were cytogenetically analyzed utilizing standard techniques. In contrast to the complex karyotypes previously reported in osteosarcoma, this particular histologic subtype was characterized by a single chromosomal aberration, a ring chromosome. Ring chromosomes have been described as characteristic for two other low-grade malignant mesenchymal neoplasms, well-differentiated liposarcoma and dermatofibrosarcoma protuberans. We propose that the observation of a ring chromosome in osteosarcoma also correlates with a low-grade malignant potential.

Adolescent

The child with chromosome ring 15.

A case of ring chromosome was reported. By application of different techniques it was identified as 15 r. The boy 19 months old was of a short stature, small skull and slight psychomotoric retardation.

Child Development

Severe growth failure associated with atrophic intestinal mucosa and ring chromosome 15.

Ring chromosome 15 was detected in a boy with severe growth failure and no dysmorphic features who had previously been found to have an atrophic intestinal mucosa, a finding not observed in about 300 patients with ring autosome reported so far. Of the 137 metaphases examined, 8.1% had secondary aneuploidy produced by the structural and behavioural instability of the ring. Ring derivatives could also be seen in lymphocytes after only one cycle in the culture, indicating that such cells are also generated in vivo. We observed an increased cell death rate in fibroblast culture by Trypan Blue exclusion. These results suggest that there is a continuous in vivo generation of cells with increased mortality resulting in both growth failure and atrophic intestinal mucosa in the patient. The atrophic intestinal mucosa might be a manifestation of ring instability.

Atrophy

Melanoma associated with ring chromosome 7.

We report the case of a 17-year-old girl with a constitutional chromosome anomaly (ring chromosome 7), associated with multiple pigmented skin lesions, who developed malignant melanoma. Eight other cases of ring chromosome 7 are described in the literature; all present vascular or pigmented skin lesions, but our patient was the first to develop a malignant tumor. Genetic studies in malignant melanoma are discussed, as well as the possible link between a constitutional anomaly of chromosome 7 and the occurrence of malignant melanoma. This association is possibly not fortuitous, particularly since most ring chromosome 7 patients reported to date have pigmented skin lesions.

Adolescent

Ring chromosomes in dermatofibrosarcoma protuberans are composed of interspersed sequences from chromosomes 17 and 22.

Ring chromosomes are found in most dermatofibrosarcoma protuberans (DFSPs), and recent reports demonstrate that portions of the DFSP ring chromosomes derive from chromosome 17. In this study we characterized ring chromosomes in three DFSPs using a combined approach of karyotyping, chromosome painting, and comparative genomic hybridization. Chromosome painting demonstrated that the ring chromosomes in each DFSP were composed of discontinuous, interwoven sequences from chromosomes 17 and 22. Amplification of chromosomes 17 and 22 sequences was confirmed in each of these cases by comparative genomic hybridization, and over-representation of chromosomes 17 and 22 sequences was also demonstrated by comparative genomic hybridization in 1 of 2 cytogenetically unremarkable DFSPs. We conclude that amplification of chromosomes 17 and 22 sequences, in ring form, is a characteristic aberration in DFSP.

Adult

Ocular findings in a patient with deletion short arm chromosome 5 (cri du chat) and ring chromosome 14.

The general and ocular signs in patients with deletion of the short arm of chromosome 5 (cri du chat) and ring chromosome 14 have been reported previously in the literature. Ophthalmic changes recorded in the latter anomaly are scanty. We describe a patient with the combined chromosomal anomaly--a deletion of part of the short arm of chromosome 5 and a ring chromosome 14 which hitherto has not been reported.

Child

Familial transmission of a ring chromosome 21.

A ring chromosome 21 was found in a phenotypically normal mother and her son. The clinical findings in the son were bilateral retention of the testes and a slightly delayed puberty onset. Consequences of a ring formation of a chromosome 21 in phenotypically normal patients are presented and discussed, and the previously reported cases of familially transmitted G-group ring chromosomes are reviewed.

Adolescent