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Biomedical subjects

J A Abrisqueta

Publications and source records attributed to J A Abrisqueta.

At least 19 recordsLinked to original sources

Familial transmission of a duplication-deficiency X chromosome associated with partial Turner syndrome.

A rearranged X chromosome Xqter-->q13::Xp11.4-->qter was found in a mother and her two daughters, who were affected with short stature, cubitus valgus and hypothyroidism. The mother's menstrual cycles were normal until the age of premenopause. Similar previously reported cases are considered in an attempt to explain the possible origin of this X recombinant, fertility and clinical traits.

Adolescent↗

Duplication 16q12----qter arising from 3:1 segregation in a 46,XX,t(13;16) (q12;q12) mother.

A congenitally abnormal female baby was found to have the karyotype 46, XX, +der (16) t (13; 16) (q12;q12) mat. GTG, QFQ, CBG, THA and Ag-NOR banding techniques allowed the identification of the abnormal chromosomes in the proposita and in the translocation carriers through three generations. Duplication 16q resulted from 3:1 segregation in the carrier mother. The hypothesis of a specific meiotic segregation for this translocation is discussed. The phenotypic effects of proximal 16q duplications are analysed together with other four reported cases, which have similar duplicated segment and no other relevant chromosomal abnormality.

Abnormalities, Multiple↗

C-band length variability and reproductive wastage.

The possible influence of total Y chromosome length and the C-band size variability of chromosomes 1, 9, 16, and Y, on reproductive wastage was investigated. One hundred couples with recurrent reproductive wastage and 106 control couples with at least two healthy children and no miscarriages were cytogenetically studied. Total Y chromosome length was evaluated as the Y/F index and the C-band size was analyzed quantitatively according to the linear measurement method of Balicek et al. (1977). The different degrees of mitotic contraction were corrected on the basis of the linear correlation found between heterochromatin and euchromatin length. Statistical comparison between results of Y chromosome from both samples demonstrated, in the test group, an increase in the mean value of the Y/F index, but the increase of Y C-band length did not reach significance. In addition mean values of C-band length on chromosomes 1, 9, and 16 in couples from the test group and especially those who had had two or more abortions, were lower than those in the controls. Among the latter the frequency of chromosomes included in the category of very large heterochromatin size is higher. However these length differences have been demonstrated only in specific subgroups, and in each one for a different chromosome. Our results indicated that Y chromosome length as well as C-band size variabilities are not directly related to reproductive wastage.

Abortion, Spontaneous↗

New insights into the effects of extra nucleolus organizer regions.

Chromosome studies were carried out in four members of a sibship with a 15p+ chromosome. Two carriers had normal offspring, one was unmarried, and the index case had three abortions and no live children. By means of different banding techniques, up to four satellites and four stalks could be observed on the abnormal chromosome. The Ag-I method showed from zero to four silver precipitates on the 15p+ marker. Mean Ag-staining for 15p+ and the ten acrocentric chromosomes were obtained in the carriers. Statistically significant differences between sibs were found. These results suggest the existence of: (a) An interindividual and intercellular variation of nucleolus organizer region (NOR) activity in man. (b) An optimal threshold of NOR activity, so that disturbances at the meiotic level could occur when it is exceeded. Our conclusions lead us to advise analysis of NOR activity in individuals with extra nucleolus organizer regions.

Chromosomes, Human, 13-15↗

Infertility associated with two accessory bisatellited chromosomes.

Two extra bisatellited chromosomes identified as inv dup (15) (pter----q11.2::q11.2----pter) were found in an oligoasthenospermic male. Analysis of Ag-staining in the proband and in one fertile brother with a normal karyotype revealed that nucleolar organizer region (NOR) activity was significantly increased in the patient. The frequency of satellite associations was also significantly higher in the index case, but no correlation was found between NOR activity and acrocentric associations. These results suggest that extra NOR activity and the elevated frequency of satellite associations could predispose to gametogenic impairment.

Adult↗

Yq deletion (q11.21) in a H-Y+ azoospermic male.

A large deletion of the long arm (q11.21) of chromosome Y without mosaicism was found in a 28-year-old male. The proband has a normal height and normal male habitus but with azoospermia. The occurrence of H-Y+ level, azoospermia and loss of a great portion of euchromatic Yq in the proband is analyzed.

Adult↗

Is a gene for microcephaly located on chromosome 1?

A 3-month-old boy with true microcephaly showed the same balanced reciprocal translocation 1q4p as his carrier mother. This reciprocal translocation had been transmitted for at least four generations. Different banding techniques allowed one to describe the rearrangement as: rcp t(1;4) (1pter----1q31::4p161----4pter; 4qter----4p153::1q321----1qter). On the other hand, the proband's father seemed to be a border-line mentally retarded and one of his relatives suffered from mental retardation of unknown origin. Taking into account all these results together with the current literature, it was concluded that the microcephaly appearing in our case could be due to the following two facts: (a) the father was an heterozygote for the gene for microcephaly, and (b) damage or a minute deletion on chromosome 1 between 1q31 and 1q321 bands could occur in the mother's family resulting in a mutation for microcephaly. If this was so, the gene for microcephaly should be located on chromosome 1 at the level of the 1q31-1q321 junction.

Adult↗

Origin and structure of a satellited Y chromosome.

A chromosome Yqs was detected in a normal male. The origin and structure of this chromosome was investigated by means of different techniques: CBG, Ag-NOR, QFQ, THA, DA/DAPI and Distamycin A. The conclusion was reached that the Yqs chromosome was actually a Yq/15p translocation, where the Y chromosome had lost completely the Yq12 band. These findings suggested that the absence of the heterochromatic portion of the Y chromosome does not determine infertility.

Adult↗