Assignment of the closest human homologue (DNA2L:KIAA0083) of the yeast Dna2 helicase gene to chromosome band 10q21.3-q22.1.
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Biomedical subjects
Publications and source records attributed to A Shiratori.
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The human Chromosome (Chr) 21q22.1 region contains several genes for cytokines and neurotransmitters and the gene for superoxide dismutase (mutant forms of which can cause familial amyotrophic lateral sclerosis). A region of approximately 5.8 Mb encompassing D21S82 and the glycinamide ribonucleotide transformylase (GART) loci was covered by overlapping YAC clones, which were contiguously ordered by clone walking with sequence-tagged site (STSs). A total of 76 markers, including 29 YAC end-specific STSs, were unambiguously ordered in this 5.8-Mb region, and the average interval between markers was 76 kb. Restriction maps of the YAC clones with rare-cutting enzymes were simultaneously prepared, and the restriction sites were aligned to obtain a consensus restriction map of the proximal region of the 21q22.1 band. The restriction map made from 44 overlapping YACs contains 54 physically assigned STSs. By integrating the consensus map of the adjacent 1.8-Mb region, we obtained a fine physical map spanning 6.5 Mb of human Chr 21q22.1. This map contains 24 precisely positioned end-specific STSs and 12 NotI-linking markers. More than 39 potential CpG islands were identified in this region and were found to be unevenly distributed. This physical map and the YACs should be useful as a reference map and as a resource for further structural analysis of the Giemsa-negative band (R-band) of Chr 21q22.1.
We report a 51-year-old woman with alopecia caused by sarcoidosis. The lesion enlarged within 4 years and only repeated biopsies enabled the diagnosis. The medical work-up revealed that the patient had asymptomatic pulmonary involvement. Scarring alopecia is a rare complication of sarcoidosis and biopsy from the active margin may lead to the diagnosis.
A long-range restriction map of the 1.8-megabases (mb) region encompassing the area between the interferon-alpha receptor and the acute myelogenous leukemia loci on human chromosome 21q22.1 was constructed after analysis of both the contiguous yeast artificial chromosome (YAC) clones and genomic DNA. Analysis of pulsed-field gel electrophoresis of lymphoblastoid DNA digested with three rare-cutting enzymes, Not I, Mlu I, and Nru I, revealed the positions of 17 markers on each restriction map. The 1.8-mb YAC contig that covers this region was obtained through YAC walking mediated by sequence-tagged sites (STSs), with 29 STSs including 12 newly generated YAC end-specific STSs. The consensus restriction map from 15 overlapping YACs and the positioning of the STS markers on each clone allowed 24 markers including 4 Not I-linking STSs to be ordered and mapped physically. Comparison of the maps revealed that the proximal region contains more unmethylated CpG islands than the distal region, which suggests that many expressed genes are in the proximal region. This fine consensus physical map will be informative and useful for construction of contigs of cosmid, P1, or BAC clones for further large-scale sequencing in this gene-rich region.
DNA primase is an essential replication protein that catalyzes the synthesis of oligoribonucleotide primers. DNA primase, consisting of two subunits (p49 and p58), plays a key role in both the initiation of DNA replication and the synthesis of Okazaki fragments for lagging strand synthesis. We mapped the locations of human chromosomes of the genes coding for both subunits [p49 (PRIM1) and p58 (PRIM2)] by PCR amplification using DNAs of a panel of somatic hybrids, to chromosomes 1 and 6, respectively. The PRIM1 gene was mapped to 1q44, and two PRIM2 loci (PRIM2A and PRIM2B) were detected at 6p11.1-p12 by fluorescence in situ hybridization using several genomic DNA probes.
Replication factor C is a multimeric primer-recognition protein consisting of five subunits (p145, p40, p38, p37, and p36.5) and is essential for the processive elongation of DNA chains catalyzed by DNA polymerase delta or epsilon in human cells. We have mapped the locations on human chromosomes of the genes coding for the four smaller subunits [p36.5 (RFC5), p37 (RFC4), p38 (RFC3), and p40 (RFC2)] using both PCR amplification from DNAs of a panel of somatic hybrids and fluorescence in situ hybridization to bands 12q24.2-q24.3, 3q27, 13q12.3-q13, and 7q11.23, respectively.
Twenty-eight sequence-tagged sites (STSs) were newly generated from the DNA sequences of vector-insert junctions from yeast artificial chromosomes (YACs) anchored at chromosome 21q22.1 region. The insert DNAs adjacent to vector arms were specifically amplified through inverse PCR method to clone into pUC19 vector for sequencing. Sixty DNA junctions from 44 CEPH YAC clones were cloned and sequenced. Of these DNA sequences of junctions between vector-arms and DNA inserts, twenty-eight STSs were finally obtained to show the accurate amplification, which is specific for human chromosome 21. The sets of 28 STSs were useful to build fine YAC contigs by STS-mediated YAC walking at the 21q22.1 region.
Human single-stranded DNA binding protein (hSSB/RPA) is a multimeric single-stranded DNA binding protein consisting of three subunits of 70 kDa, 34 kDa, and 11 kDa. Human SSB was isolated from HeLa cells as an essential factor for the in vitro replication of simian virus 40 DNA. We and others have isolated and sequenced cDNAs for each subunit of the SSB. The chromosome on which each gene is located was determined through the analysis of a panel of human/hamster somatic cell hybrids using the polymerase chain reaction with pairs of synthetic oligonucleotide primers from the 3'-untranslated sequences of the genes. Genomic clones for each gene were isolated from a genomic cosmid library prepared from human lymphoblastoid cells. Using those clones as probes, we have carried out fluorescence in situ hybridization to human metaphase chromosomes and have mapped the 70 kDa subunit gene to 17p13, the 34 kDa subunit gene to 1p35-p36.1, and the 11 kDa subunit gene to 7p21-p22. Since hSSB participates in replication, recombination and repair of DNA, the physical mapping of hSSB genes may aid in the identification of human hereditary diseases associated with aberrant DNA reactions caused by genetic alterations of the hSSB.
Ten patients with primula dermatitis observed in Hokkaido were reported. All patients presented positive patch test reactions to a part of an extract of primula obconica. Postlesional pigmentation is prominent in patients with recurrent dermatitis. Histologic features were liquefaction degeneration of a basal layer of the epidermis and incontinentia pigmenti histological, i.e., lichenoid tissue reaction.
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Explore the source record for details and available documents.