Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Inversion”

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 1,801 records · Page 100Linked to original sources

Unusual mutations in Btk: an insertion, a duplication, an inversion, and four large deletions.

Mutations in Bruton's tyrosine kinase (Btk) result in the immunodeficiency X-linked agammaglobulinemia (XLA). In a previous study of 101 patients with presumed XLA, we identified seven patients with large genomic alterations in Btk. The recent completion of 100 kb of contiguous DNA sequence at the Btk locus has allowed us to characterize these mutations in detail and to identify four different types of alterations. These alterations included a 253-bp retroposon insertion at position +5 within intron 9, an inversion of greater than 48 kb that disrupted Btk between exons 4 and 5, a 12.9-kb duplication including Btk exons 2 to 5, and four deletions ranging from 2.8 to 38 kb in size. The duplication and three of the deletions resulted from unequal crossovers of Alu repeats. Further, three of the deletions terminated within a repeat-rich cluster spanning 30 kb of sequence 3' of Btk exon 19, suggesting that this region was more susceptible to unequal crossovers than the rest of the Btk gene. These studies describe the first reports of an insertion, an inversion, and a duplication in Btk and demonstrate the utility of large-scale sequencing in the elucidation of disease-causing mutations.

Agammaglobulinaemia Tyrosine Kinase↗

Genes in the first and fourth inversions of the mouse t complex synergistically mediate sperm capacitation and interactions with the oocyte.

The t haplotypes (t) are recent evolutionary derivatives of an alternate form of the mouse t complex region located at the proximal end of chromosome 17. This variant form of approximately 1% of the mouse genome is a source of mutations altering numerous sperm functions crucial for fertilization. Males that carry two t haplotypes (t/t) are invariably sterile. t haplotypes contain four inversions relative to the wild-type t complex (+), so that in matings involving a +/t heterozygote, t is usually transmitted as a single unit. However, rare recombinants have been recovered, which carry only part of the t genotype and express only some of the t-dependent phenotypes. Use of these partial t haplotypes in genetic crosses has resulted in the general location of the two major t male sterility factors, S1 and S2, within inversions 1 and 4, respectively. Since sterility can result from a plethora of sperm defects, we have made a detailed study of various functional parameters of sperm from mice carrying S1 or S2 heterozygously or homozygously or in combination. Both S1 and S2 contain mutations altering sperm functions, including motility, capacitation, binding to the zona pellucida, binding to the oocyte membrane, and penetration of the zona pellucida-free oocyte. Therefore it seems clear that each of these factors contains multiple genes contributing to sterility. Furthermore, our results indicate that genes within S1 interact with genes in S2 for all sperm functions examined. However, S1 and S2 genes affecting motility interact in a purely additive fashion, while S1 and S2 genes affecting most other sperm characteristics interact in a synergistic manner. Additionally, the patterns of synergism between S1 and S2 for abnormalities in capacitation, sperm-oolemma binding, and zona-free oocyte penetration are nearly identical. This suggests that these three defects are caused by mutation of the same gene within each sterility factor. These findings will not only be instrumental in matching the various t haplotype sperm defects to candidate genes for S1 and S2, but will facilitate a more comprehensive understanding of the cellular and genetic mechanisms underlying t haplotype male sterility.

Acrosome↗

Fine-scale comparative mapping of the human 7q11.23 region and the orthologous region on mouse chromosome 5G: the low-copy repeats that flank the Williams-Beuren syndrome deletion arose at breakpoint sites of an evolutionary inversion(s).

Williams-Beuren syndrome (WBS) is a developmental disorder caused by haploinsufficiency for genes deleted in chromosome band 7q11.23. A common deletion including at least 16-17 genes has been defined in the great majority of patients. We have completed a physical and transcription map of the WBS region based on analysis of high-throughput genome sequence data and assembly of a BAC/PAC/YAC contig, including the characterization of large blocks of gene-containing low-copy-number repeat elements that flank the commonly deleted interval. The WBS deletions arise as a consequence of unequal crossing over between these highly homologous sequences, which confer susceptibility to local chromosome rearrangements. We have also completed a clone contig, genetic, and long-range restriction map of the mouse homologous region, including the orthologues of all identified genes in the human map. The order of the intradeletion genes appears to be conserved in mouse, and no low-copy-number repeats are found in the region. However, the deletion region is inverted relative to the human map, exactly at the flanking regions. Thus, we have identified an evolutionary inversion with chromosomal breakpoints at the sites where the human 7q11.23 low-copy-number repeats are located. Additional comparative mapping suggests a model for human chromosome 7 evolution due to serial inversions leading to genomic duplications. This high-resolution mouse map provides the framework required for the generation of mouse models for WBS mimicking the human molecular defect.

Animals↗

Co-evolution of the tuf genes links gene conversion with the generation of chromosomal inversions.

The tufA and tufB genes in Salmonella typhimurium co-evolve by recombination and exchange of genetic material. A model is presented which predicts that co-evolution is achieved by gene conversions and chromosomal inversions. Analysis of recombinants reveals that conversion and inversion each occur with similar rates and each depends on RecBCD activity. The model predicts sequence structures for different classes of post-recombination tuf genes. Sequence analysis reveals the presence of each of these structures and classes, with a predicted bias in the absence of mismatch repair. An implication of these data is that co-evolution of gene families can be linked with the generation of chromosomal rearrangements.

Alleles↗

The herpes simplex virus type 1 UL6 protein is essential for cleavage and packaging but not for genomic inversion.

The HSV-1 genome is composed of two unique regions (UL and US) flanked by inverted repeats. During the course of DNA replication the two unique regions UL and US invert relative to one another. In this report we present evidence that cleavage is not necessary for genomic inversion to occur. We isolated and characterized a UL6::lacZ insertion mutant (hr74) that produces wild-type levels of replicating viral DNA but fails to cleave and package DNA. We demonstrate that this virus is still able to undergo genomic inversion. Furthermore we confirm that replicating DNA from cells infected with wild-type virus contains specific UL terminal but not US termini, whereas cells infected with the mutant hr74 do not contain either US or UL termini. This demonstrates that the specific UL ends found in replicating DNA are the result of the cleavage/packaging process.

Animals↗

Inversion polymorphism in species of the Drosophila nasuta subgroup from Thailand.

Thailand populations of three species of the D. nasuta complex have been analysed for the presence of paracentric inversions. D. albomicans and D. sulfurigaster albostrigata were collected from Phuket, Chiang Mai and the River Kwai, whilst D. kohkoa was found only in Phuket and the River Kwai. Chromosomal polymorphism was studied in respect to geographical distribution. The Phuket populations of all three species proved to be highly polymorphic by comparison with the River Kwai and Chiang Mai populations. The heterozygosity frequencies of inversions were calculated and the variations interpreted as a result of adaptation to local ecogeographical conditions. Shared polymorphisms revealed that D. kohkoa and D. s. albostrigata are more closely related to D. albomicans than they are to each other.

Animals↗

Genetic and environmental factors in the resistance of Drosophila subobscura adults to high temperature shock. III. Chromosomal-inversion and enzymatic polymorphism variation in lines selected for heat shock resistance.

Two replicate selection experiments to increase and decrease heat shock resistance of Drosophila subobscura adults were carried out maintaining control lines. In the present paper, the chromosomal-inversion and enzymatic polymorphism variation with selection is analyzed. The results indicate an erratic variation of chromosomal arrangement frequencies for practically all the chromosomes in the selected lines, showing a loss of the less frequent arrangements especially in sensitive lines. Only the A chromosome and the O + 4 arrangement show a behaviour that may not be due to random effects, which points to the possible existence of heat shock factor(s) in these chromosomes. Similarly, an erratic variation of allele frequencies is observed for all the enzymes studied (Aph, Pept-1) except for the Hk-1 enzyme. We cannot establish the possible participation of this locus in heat shock resistance from the results obtained up to now. A significant decrease in heterozygosity is detected in sensitive lines from chromosomal-inversion polymorphism.

Animals↗

Paracentric inversion of chromosome 15(q15q24): description of three families.

Three unrelated families with paracentric inversion of chromosome 15(q15q24) are reported. An additional pericentric inversion of chromosome 9 with breakpoints in p11.2q13 was also observed in one of the three families. Reproductive problems, such as stillbirths, spontaneous abortions and two live-born children with multiple abnormalities, were present.

Adult↗

Paracentric inversion of a human chromosome 7.

In the course of chromosome studies of atomic bomb survivors in Hiroshima using the trypsin-G-banding and Q-banding methods, a 40-year-old male was found to have an abnormal banding pattern in the long arm of a chromosome 7, although no such abnormality was detected by ordinary staining method. Since all other chromosomes apparently had normal banding patterns, the abnormality was determined to be a paracentric inversion of a chromosome 7, which is described as 46, XY, inv (7) (q22q31). This is the first demonstration of a possible paracentric inversion in man.

Adult↗

Electron microscopic investigations of synaptonemal complexes in an infertile human male carrier of a pericentric inversion inv(1)(p32q42). Regular loop formation but defective synapsis including a possible interchromosomal effect.

Electron microscopic investigations of surface spread synaptonemal complexes in spermatocytes from a 37-year-old man ascertained for infertility detected a pericentric inv(1), and subsequent lymphocyte analysis placed the breakpoints at p32 and q42. Most spermatocytes showed a maturation arrest at mid-pachytene explaining the azoospermia. As in two other comparatively large loop-forming pericentric inversions, initiation of synapsis took place in the middle of the inverted segment. Thus there is no indication of interstitial synaptic initiation being restricted to special pairing sites along the length of the chromosome. All spermatocytes investigated at mid-pachytene showed inversion loops, none of which was fully synapsed with a specific delay in pairing of the heterochromatic block 1qh and adjacent segments. The loops were of similar size in all the cells examined and synaptic adjustment had not taken place. There was no indication of a preferential association between the inv(1) bivalent and the XY configuration, and a functional disturbance of the X seems an unlikely reason for the meiotic maturation arrest. The most likely cause may be the failure of adequate synapsis of the inverted segment and the possibly associated pairing abnormalities of other homologues, including asynapsis and/or precocious desynapsis.

Adult↗

Analysis of crossing-over in a family with translocation 9;10 involving a chromosome 9 with a pericentric inversion.

The presence of two markers on chromosome 9, both a balanced reciprocal translocation and an inversion, allows morphologic demonstration of recombination between the normal and rearranged homologues. In the family under discussion 50% of the progeny studied (two of four) received a translocated 9 without the inversion from a parent with a translocated and inverted 9, indicating crossing-over between members of the chromosome 9 pair. Thus the morphology of the chromosomes allows a recombinant event which is normally invisible to be seen cytologically. Theoretically after crossing-over the balanced reciprocal translocation heterozygote results from adjacent-1 segregation and unbalanced derivative chromosome combinations from alternate segregation. Therefore it cannot be assumed that the balanced progeny necessarily result from alternate segregation and the unbalanced from adjacent-1. The prenatal diagnostic studies presented in this report also show that chromosome analysis of other family members is required when the recombination between homologues produces differences in chromosome morphology between parent and fetus.

Adult↗

Familial paracentric inversion inv(2)(q31q36).

A paracentric inversion of chromosome 2 is described for the first time. The breakpoints were localized in the bands q31 and q36. The paracentric inversion was initially identified in a female with repeated abortions and thereafter detected in eight other family members over three generations. The meiotic consequences and the risk for liveborn unbalanced chromosomal recombinants is discussed.

Abortion, Habitual↗

Correlation between chromosomal breakpoint positions and synaptic behaviour in human males heterozygous for a pericentric inversion.

The examination of synaptic data and localization of chromosomal breakpoints in a review of human pericentric inversions suggest that synaptic and recombination behaviour in rearranged chromosomes during meiosis can be predicted by determining the subband in which the breakpoint is located. According to this hypothesis, it can be postulated that loops in pericentric inversions are routinely formed only in cases when both breaks occur in G-light bands, with the genetic consequences of crossing-over. In other cases, heterosynapsis is accomplished without previous homosynapsis, thereby minimizing the production of unbalanced gametes.

Centromere↗

Cytogenetic recombinants from a female carrying a paracentric inversion of the short arm of chromosome number 5.

We present a family, identified through a girl with "Cri-du-chat syndrome", in which two different types of recombinants exist [del(5)(qter leads to p14:) and dup(5)(p13)]. They are due to a 5p paracentric inversion of maternal origin [inv(5)(pter p13)]. We discuss the relationship between the breakpoints and segregation of the inversion carrier, as well as the origin and the identification of the recombinants.

Adult↗

Recombinant chromosome as a result of pericentric inversion of X chromosome.

A structural X chromosome abnormality was found in the karyotype of a tall patient with gonadal dysgenesis and with no extragenital anomalies. Based on her mother's karyotype, which showed a pericentric inversion of the X chromosome: 46,X,inv(X)(p22q24), as well as from G and R banding, we concluded that the abnormal X chromosome of our patient was a recombinant chromosome that had originated as a result of one crossing over in the inversion loop during gametogenesis in her mother. The recombinant X chromosome had a partial delection of Xq and a partial duplication of Xp: 46,X,rec(S),dup p,inv(X)(p22q24). After BUDR incorporation, the abnormal X chromosome of the patient and that of her mother showed a late replication. The karyotype-phenotype correlation and the nonrandom inactivation of the inverted X chromosome in the mother are discussed.

Adult↗

Refine your search to explore more results.