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Biomedical subjects

J J Hoo

Publications and source records attributed to J J Hoo.

At least 19 recordsLinked to original sources

Confirmation of centromeric fusion in 7p/1q translocation associated with myelodysplastic syndrome.

Fluorescence in situ hybridization (FISH) using chromosome 1- and chromosome 7-specific centromeric alpha-satellite probes was performed on the bone marrow (BM) cells of a patient with myelodysplastic syndrome (MDS) who had been treated for lymphoma and whose BM karyotype was initially considered to be 46,XY,-7,+der(1)t(1;7)(p11;p11). FISH results suggested the presence of both chromosome 1 and chromosome 7 centromeres in the rearranged chromosome. Thus, the correct karyotype should be written as 46,XY,-7,+der(1;7)(q10;p10).

Adult

A new chromosome 9 variant: an extra band within the 9qh region.

An extra G-positive band within the 9qh regions is reported as a new chromosome 9 variant. This variant may have been more prevalent than has hitherto been perceived. Due to its small size, this extra band might not be readily recognizable in routine G-staining.

Adult

Oculocerebrocutaneous (Delleman) syndrome: a pleiotropic disorder affecting ectodermal tissues with unilateral predominance.

We present a patient with oculocerebrocutaneous syndrome. The boy shows only mild psychomotor delay in spite of rather severe appearing anomalies of the central nervous system. A primarily unilateral involvement of this syndrome is emphasized. A postzygotic/somatic mutation resulting in a mosaic state might account for the primarily ectodermal involvement, the unilateral predominance, and the sporadic nature of this syndrome. An alternative hypothesis of an environmental factor might also explain the clinical manifestations of the syndrome.

Brain

Chromosome aberrations and oncogene alterations in two new breast tumor cell lines.

Two new breast tumor cell lines (UISO-BC-1 and UISO-BC-2) have been established from pleural effusions obtained from patients with confirmed diagnosis of breast cancer. Cytogenetic investigation shows several numerical and structural aberrations in both cell lines. Each cell line appears to have distinctive karyotypic aberrations. Although a common marker chromosome was not found in both cell lines, several breakpoints (i.e., 1q11, 3q11, 7p11, 9q11, and 13q11) were commonly involved in the marker chromosomes of both lines. Double minute (dmin) chromosomes were also observed in these two cell lines. Sixteen oncogene probes were used to study the oncogene amplification and overexpression; among these, only neu and c-myc probes detected multiple gene copies. A 10-fold amplification and a 20-fold overexpression of the neu were observed in the UISO-BC-1 line, whereas a threefold and a fivefold amplification of c-myc were found in UISO-BC-1 and UISO-BC-2, respectively. Moderately enhanced expression (sixfold) of c-myc was also observed in the UISO-BS-2 line. No gross rearrangement of these genes or aberrant RNAs was detected in these tumor cell lines.

Aged

Chromosome 6q deletions: a report of two additional cases and a review of the literature.

Here we report on two additional cases of distal 6q deletions with one case showing a terminal deletion of chromosome 6 (46,XY, del(6)(pter----q26:)) and one case showing an interstitial deletion of chromosome 6 (46,XY, del(6)(pter----q23::q25----qter)). The association of retinal abnormalities in 6q deletions is supported, and the additional manifestations of skin hyperextensibility, sacral abnormality, and imperforate anus are described.

Abnormalities, Multiple

Origin of 46,XY/46,XY,r(19) mosaicism.

We report on a case of 46,XY/46,XY,r(19) mosaicism. The patient shows minimal clinical abnormality and the terminal deletions prerequisite for the ring formation are not microscopically discernible. The origin of the mosaicism is discussed. Firstly, the mosaicism may represent chimerism with a prezygotic origin of the ring chromosome; secondly, the ring chromosome could have arisen postzygotically; and thirdly, the ring could have been of a prezygotic origin with the apparently normal cells actually containing reopened rings. The consequences of these hypothesis on genetic counselling are discussed.

Chromosomes, Human, Pair 19

Determining the origins and the structural aberrations of small marker chromosomes in two cases of 45,X/46,X, + mar by use of chromosome-specific DNA probes.

A 17-year-old girl (S.M.) and a 13-year-old girl (C.L.) both with Ullrich-Turner syndrome (UTS) were found to have 45,X/46,X, + mar mosaicism. The marker chromosomes in both patients were very small in size. In S.M. the marker chromosome was present in 80% of phytohemagglutinin-stimulated lymphocytes, 28% of skin fibroblasts, and 11-20% of gonadal fibroblasts. In C.L., the small marker chromosome was found in 50% of stimulated lymphocytes. S.M. is of normal height, but C.L. is short. Molecular hybridization with a number of Y-specific DNA probes demonstrated their presence in S.M. but absence in C.L. In situ hybridization with Y-specific and X-centromere-specific DNA probes confirmed the Y origin of the marker chromosome in S.M. and the X origin of the minute chromosome in C.L. Biotinylated centromere and telomere probes were also used for in situ hybridization to show the presence of centromeric and telomeric sequences in the Y-marker chromosome, suggesting that the deletion of this marker chromosome is interstitial.

Adolescent

Proximal 15q variant as possible pitfall in the cytogenetic diagnosis of Prader-Willi syndrome.

A patient with Prader-Willi syndrome showed an elongated proximal 15q, and thus was initially considered to be negative for a proximal 15q deletion. However, repeated high resolution chromosome study demonstrating the DNA-replication banding patterns revealed an obvious deletion/deficiency of the 15q12 equivalent band on that elongated chromosome 15. This deletion was further verified by comparison with the parental chromosomes 15 and the deleted chromosome 15 was of paternal origin. The elongation was due to a long variant of 15q11.2 band, which has previously been shown to be polymorphic/variable. This variable proximal 15q site could potentially mask a deletion if it is too long, or mimic a deletion if it is too short. The use of the DNA-replication banding technique instead of the more widely used trypsin banding technique could alleviate this possible pitfall.

Chromosome Banding

A pseudoisochromosome 18q and an isodicentric chromosome 18.

A case of pseudoisochromosome 18q of prezygotic origin and a case of isodicentric chromosome 18 of postzygotic origin are presented to validate the differentiation between a true isochromosome and a pseudoisochromosome. This differentiation may be useful in elucidating the mechanism of the origin of an isochromosome.

Abnormalities, Multiple

Genitourinary anomalies are a component manifestation in the ectodermal dysplasia, ectrodactyly, cleft lip/palate (EEC) syndrome.

Here we report on 13 individuals with the EEC syndrome from a single craniofacial clinic population. Eight of 13 underwent genitourinary (GU) evaluation; all had abnormal findings. Seven had anomalies of the urinary tract, and 3 had genital anomalies. To our knowledge, this is the first report of GU evaluation of the majority of EEC patients from a single clinic population. Results support the suggestion that GU anomalies are a major component of the EEC syndrome. Genitourinary evaluation of all EEC patients and their first degree relatives seems indicated. The abnormal findings observed to date suggest variable expression of an autosomal dominant gene.

Abnormalities, Multiple

Familial congenital funnel chest.

We observed three Chinese families in which congenital isolated funnel chest was segregating. This report confirms that funnel chest (pectus excavatum) can be transmitted as an autosomal dominant trait.

Funnel Chest

Familial paracentric inversions inv(2)(q31q35) and inv(8)(q22.3q24.13) ascertained through reproductive abnormalities.

Two cases of familial paracentric inversion, one in the long arm of chromosome 2 and the other in the long arm of chromosome 8, are described. The first was ascertained in a woman who was studied because of recurrent abortions. The second was ascertained in the father of a girl with the trichorhinophalangeal syndrome and an interstitial deletion in 8q. The latter is the first case in which unequal crossing over in an inversion loop can be inferred in a male carrier of a paracentric inversion. The reasons for the relatively low frequency of paracentric inversions observed and factors which affect the pregnancy outcome are discussed.

Abortion, Habitual