Search PubMed⌕ Search

Biomedical subjects

K Naritomi

Publications and source records attributed to K Naritomi.

At least 55 records · Page 3Linked to original sources

Small interstitial deletion of the long arm of chromosome 2 (2q24.3): further delineation of 2q medial monosomy syndrome.

We report on a female infant with an interstitial deletion involving 2q24.3. She had multiple congenital anomalies similar to those in patients with del(2)(q31q33) except for an occipital encephalocele. As a result of comparison of clinical findings among interstitial 2q deletions, a distinct 2q medial monosomy syndrome may be delineable in association with a deletion of 2q31.

Adult↗

Malpuech facial clefting syndrome in a Japanese boy with cardiac defects.

We reported on a Japanese boy similar to the patients previously reported by Malpuech et al. (1983) with mental and growth retardation, hypertelorism, bilateral cleft lips, cleft palate, and urogenital anomalies. He also had undescribed cardiac defects. This is probably the second case report of Malpuech facial clefting syndrome.

Abnormalities, Multiple↗

Delineation of the da-Silva syndrome.

We present a 6-month-old boy with agenesis of the corpus callosum, hypertonicity, severe growth and psychomotor retardation, microcephaly, large prominent ears, and delayed bone age. Similarity of his manifestations to these in 3 sibs described by da-Silva in 1988 suggests initial delineation of the da-Silva syndrome.

Abnormalities, Multiple↗

Inverted insertion of chromosome 7q and ectrodactyly.

An inverted insertion of a segment 7q22-q34 into 3q21 was found in a mentally normal male infant with ectrodactyly of a hand and the feet. A putative gene for ectrodactyly seems to be assigned at 7q22.

Chromosome Aberrations↗

Cosmid clones from microdissected human chromosomal region 15q11-q13.

A human chromosomal region, 15q11-q13, was microdissected, its DNA was amplified with the primer-linker PCR method, and the PCR products were cloned into a plasmid vector to construct a microclone library. Of 193 microclones analyzed with Southern blot hybridization on hybrid cell panels, 26 (13.5%) were either single-copy (unique) or low-repetitive fragments. By screening of a cosmid library of human genomic DNA using the 26 microclones as probes, 47 positive cosmids were obtained and underwent regional mapping with chromosome fluorescence in situ hybridization (FISH). Sixteen cosmids gave FISH signals at 15p-cen, 5 at 15q11-q13, 6 at 15q22-q26, 3 at other chromosomes, and 17 no signal. These 27 cosmids mapped to chromosome 15 are useful additions to the inventory of DNA markers of this chromosome including the much interested Prader-Willi/Angelman syndrome region.

Base Sequence↗

The Costello syndrome: a boy with thick mitral valves and arrhythmias.

A 3-year-old boy with Costello syndrome is reported. He had typical clinical features of the syndrome including severe postnatal growth retardation, poor sucking, mild developmental delay, a coarse characteristic facies, thick and loose skin of the hands and feet, sparse and curly hair, dark skin, and relative macrocephaly but lacked nasal papillomas. In addition, he had cardiac anomalies with extrasystoles and thick mitral valve tips. Mitral valve defects may be a clinical feature of the syndrome.

Abnormalities, Multiple↗

Pigmentary dysplasias and chromosomal mosaicism: report of 9 cases.

Chromosomes were studied in 9 individuals with pigmentary dysplasias of the skin and other abnormalities. Of the 9 individuals, 5 were chromosomal mosaics in both blood lymphocytes and skin fibroblasts (46,XY/47,XY, + 13;46,XX/47,XX, + 14;46,XY/47,XY, + 18;46,XX/47,XX, + 18;46, XX/47,XX, + mar), while the other 4 individuals were chromosomally normal in both tissues studied. The pigmentary dysplasias involved hypo- or hyperpigmented patches/flecks or lines/whorls. The latter ran along Blachko lines on the back, abdomen and the limbs. These patterns varied not only between individuals but also between different regions of an individual. The possibility of chimerism was studied but ruled out (1/32 to 1/256) in 7 individuals, using chromosomal heteromorphisms in the patients and their parents as markers.

Adolescent↗

Y-derived sequence detected in minute chromosomes by polymerase chain reaction and in situ hybridization.

A 10-year-old girl and a 10-month-old girl, both with ambiguous genitalia, were found to have 45,X/46,X,mar and 45,X/46,X,r(?) mosaicism. The marker chromosomes in both girls were very small. Polymerase chain reaction, with synthetic oligonucleotide primers from Y-specific DNA sequences pY-80 and pY53.3 containing the sex-determining region Y(SRY), proved the marker chromosomes to contain the Y short arm material. In situ hybridization with probe pY-80 confirmed that the marker chromosomes included the Y short arms. These findings, together with ambiguous genitalia in the girls, indicate that the marker chromosomes include the testis-determining factor gene.

Base Sequence↗

Diagnostic hand anomalies in Smith-Magenis syndrome: four new patients with del (17)(p11.2p11.2)

We report clinical and cytogenetic findings of 4 children (2 boys and 2 girls) with the Smith-Magenis syndrome. All 4 patients had an interstitial deletion of 17p: del(17) (p11.2p11.2). Their clinical manifestations included brachycephaly, midface hypoplasia, prognathism, upper lip eversion, short and broad hands with short fingers, clinodactyly of the fifth fingers, fingertip pads, moderate mental retardation, and behavior problems. Analysis of the metacarpophalangeal pattern profiles in patient 2 showed progressive shortness from the metacarpals to the proximal, middle, and the distal phalanges. The fingerpads observed in all 4 patients have hitherto been noted in only one of 26 previously reported patients with the syndrome. These findings serve as a useful clue to the diagnosis of the syndrome.

Abnormalities, Multiple↗

Replication asynchrony between homologs 15q11.2: cytogenetic evidence for genomic imprinting.

Replication kinetics of the Prader-Willi syndrome critical region (15q11.2) was investigated in seven normal healthy adult females using RBG replication bands. Replication asynchrony between homologs 15q11.2 was identified consistently in about 40% of cells in all individuals. It was limited to the stages in which Xp22, Xp11, Xq13 and Xq24/26 were visible in the late-replicating X chromosome. This asynchrony suggested that replication timing overlapped between 15q11.2 and the early replicating R-bands of the late X chromosome in some cells, and that the difference in replication timing between homologs was probably related to genomic imprinting; the latter has been suggested as a pathogenetic basis of Prader-Willi syndrome. As a result of an analysis of the proportions of asynchronous and synchronous cells in each replication stage, two types of cells were deduced providing 1:1 methylation mosaicism of genomic imprinting was assumed. The first type was composed of cells with normal replication in one homolog and delayed replication in the other. The second type was composed of cells with normal replication in both homologs. Our results provide cytogenetic evidence of methylation mosaicism for mammalian genomic imprinting.

Cell Cycle↗

Cytogenetic and molecular study of Angelman syndrome.

Six patients, including two sibs, with Angelman syndrome (AS; three females and three males, aged 11 to 18 years) were studied cytogenetically. Molecular analysis was also performed. Using high-resolution banding technique, we detected a microdeletion in the proximal region of chromosome 15q in four cases. The deleted segment was heterogenous between these patients, and the common deleted region appeared to be 15q11.2. Four patients with deleted 15q were all sporadic cases, whereas in the sib cases we could not detect a visible deletion in the long arm of chromosome 15. However, there was no clinical difference between sporadic cases and sib cases. Densitometric analysis of autoradiographic bands of Southern hybridization using two DNA segments, pML34 and pTD3-21, as probes demonstrated that two patients had only one copy for each of the probes. In the remaining four patients, including the sibs, two copies of each sequence were retained. The probes used here detect a molecular deletion in most Prader-Willi syndrome patients. Thus the segment causing AS is localized adjacent to the critical segment of Prader-Willi syndrome. There seemed to be heterogeneity for the molecular deletion within AS individuals.

Adolescent↗

Gene assignment of Zellweger syndrome to 7q11.23: report of the second case associated with a pericentric inversion of chromosome 7.

The case of a newborn girl with Zellweger syndrome and a pericentric inversion of chromosome 7, 46,XX, inv(7)(p12q11.23), is reported. The diagnosis was confirmed by marked deficiency of peroxisomal beta-oxidation enzymes in hepatic cells from autopsy samples. This is the second case of Zellweger syndrome associated with a rearrangement of chromosome 7, the tentative gene assignment to 7q11 being further supported; the gene is probably confiend to 7q11.23.

Acetyl-CoA C-Acyltransferase↗

Partial trisomy of distal 8q derived from mother with mosaic 8q23.3----24.13 deletion, and relatively mild expression of trichorhinophalangeal syndrome I.

A 17-month-old girl with a partial trisomy of distal 8q derived from her mother, who has a mosaic 8q23.3----q24.13 deletion, was studied. Both showed a relatively mild phenotype of trichorhinophalangeal syndrome I. The karyotype of the proposita was designated as: 46,XX,-8,+der(8),inv ins(8;8)(p23.1;q24.13q23.3)mat. Her phenotype was considered similar to that of her mother despite the trisomies of distal 8q. She seems to be the first example of a partial trisomy of distal 8q derived from a parent with an interstitial deletion of a distal 8q segment and trichorhinophalangeal syndrome I.

Adult↗

Application of personal computer to an analysis of small de novo chromosomal insertion: a case of de novo 3q2 trisomy with ins(8;3).

To identify the origin of a small inserted segment in a de novo 8p+ chromosome, an originally programmed computerized database for chromosomal aberration syndromes was utilized. The system selected 3q2 trisomy and 10q2 trisomy as candidates. As a result of a careful comparison of several high-resolution banding patterns among chromosomes 3, 10 and the inserted segment, her karyotype was disignated as: 46,XX,-8,+der(8), inv ins(8;3)(p21.1;q26.32q24) de novo. A small segment from 3q24 to 3q26.32 was trisomic, and invertedly inserted into the short arm of chromosome 8. This computerized database was considered to be useful for analyses of the small de novo inserted chromosomal segment.

Chromosomes, Human, Pair 3↗

Trisomy 9q3 syndrome: a case report and review of the literature.

A girl with partial trisomy 9q is reported. She was characterized by dolichomorphism, abnormalities of the digits, a cardiac defect and craniofacial dysmorphism. A high-resolution analysis revealed the karyotype to be: 46,XX,-3,+ der(3)t(3;9)(q29;q13) de novo. A phenotype-karyotype correlation study in 22 cases of partial trisomies 9q supported the delineation of a trisomy 9q3 syndrome. The smallest region of overlap was confined to 9q32.

Abnormalities, Multiple↗