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Biomedical subjects

N Mizusawa

Publications and source records attributed to N Mizusawa.

11 recordsLinked to original sources

The application of magnetic cell sorter (MACS) to detect fetal cells in maternal peripheral blood.

OBJECTIVES: The aim of the present study was to investigate the effectiveness of sorting fetal nucleated red blood cells (FNRBC) from maternal peripheral blood, particularly during early gestation periods, by a combination of specific gravity centrifugation and magnetic cell sorter (MACS). METHODS: Without prior knowledge of the gender of the fetus, we determined gender by analyzing a Y-chromosome specific sequence by nested-PCR, using 10 ml of the peripheral blood of healthy primigravida women at different stages of gestation (first trimester: n = 17, second trimester: n = 13, and third trimester: n = 19). The results of this prenatal sex determination were compared to the sex of newborns. RESULTS: The specificity, sensitivity, positive predictive value (PPV) and negative predictive value (NPV) of the present method during the first trimester were 100, 81.8, 100, and 75%, respectively; during the second trimester, 80, 50, 80, and 50%, respectively; and during the third trimester, 25, 63.6, 53.8, and 33.3%, respectively. CONCLUSION: The results show that this prenatal sex determination method has a highly accurate diagnostic rate during the first trimester, suggesting that it could be developed as a practical, non-invasive prenatal diagnostic technique for use during early gestation periods.

Cell Separation↗

Differential regulation of the human insulin gene transcription by GG1 and GG2 elements with GG- and C1-binding factors.

Using a human growth hormone reporter system, the introduced mutations in GG1 alone or both GG elements of GG1 and GG2 in the human insulin promoter abolished 94 or 96% of the beta-cell-specific transcriptional activity in a pancreatic islet beta-cell line of MIN6, while the mutations in GG2 or its total deletion abolished 85 or 86% of the transcriptional activity. When linked to the thymidine kinase promoter, mutations in GG1 or both GG elements abolished 74% of the transcriptional activity in MIN6 cells, while the mutations in GG2 or its total deletion abolished 55 or 54%. In the electrophoretic mobility shift assay (EMSA), one nuclear factor was shown to interact with two GG elements, and another C1-binding factor with GG1 and C1. The differential effects of deletions or selective mutations in the GG2 or GG1 sequence in the oligonucleotide probes on the binding activity of GG- or C1-binding factors in EMSA proved the requirement of both GG1 and GG2 or both GG1 and C1, respectively, for the transaction of these two factors. The molecular size of the GG-binding factor was estimated about 30 kDa. Based on these, we conclude that two GG elements contribute, with GG1 more critically than GG2, to the beta-cell-specific transcription of the human insulin gene through transaction with the GG- and C1-binding factors.

Animals↗

Restoration of the high-potential form of cytochrome b559 of photosystem II occurs via a two-step mechanism under illumination in the presence of manganese ions

Spinach photosystem II membranes that had been depleted of the Mn cluster contained four forms of cytochrome (Cyt) b559, namely, high-potential (HP), HP', intermediate-potential (IP) and low-potential (LP) forms that exhibited the redox potentials of +400, +310, +170 and +35 mV, respectively, in potentiometric titration. When the membranes were illuminated with flashing light in the presence of 0.1 mM Mn2+, the IP form was converted to the HP' form by two flashes and then the HP' form was converted to the HP form by an additional flash. The quantum efficiency of the first conversion appeared to be quite high since the conversion was almost complete after two flashes. By contrast, the second conversion proceeded with low quantum efficiency and 40 flashes were required for completion. The effects of 3-(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU) suggested that the first conversion did not require electron transfer from QA to QB while the second conversion had an absolute requirement for it. It was also suggested that the first conversion involved the reduction of the heme of Cyt b559, probably by QA-, and we propose that direct reduction by QA- induces a shift in the redox potential of the heme. The second conversion was also accompanied by the reduction of heme but it appeared that this conversion did not necessarily involve the reduction. The effects of DCMU on the reduction of heme suggested that the heme became reducible by QB- after the first conversion had been completed. This observation implies that the efficiency of electron transfer from QA to QB increased upon the conversion of the IP form to the HP' form, and we propose that restoration of the high-potential forms of Cyt b559 itself acts to make the acceptor side of photosystem II functional.

Journal Article↗

CD44 variant isoform CD44v10 expression of human melanoma cell lines is upregulated by hyaluronate and correlates with migration.

CD44, a multifunctional adhesion receptor involved in cell-cell and cell-matrix interactions, plays an important role in the local progression and metastasis of malignant tumours. We investigated relative CD44 variant isoform mRNA expression in six human melanoma cell lines and determined cell migration on hyaluronic acid (HA) coated substrates. Haematopoietic form (CD44H) mRNA expression increased in all melanoma cell lines after plating on HA, whereas the relative CD44 variant exon 10 (CD44v10) mRNA expression increased in only three of the cell lines. Cell migration rates increased on substrates coated with HA in the three CD44v10-positive cell lines, whereas the three CD44v10-negative cell lines showed no modification in migration rates. Immunofluorescent labelling of CD44v10 revealed increased expression with plaques localized to the periphery of cells. Cell lines with increased relative CD44v10 expression exhibited significantly higher mean migration rates on HA. These results indicate that CD44v10 expression functionally relates to melanoma cell migration and suggest that interaction between CD44v10 and HA plays a role in the variable tissue invasion and aggressiveness of different melanoma clones.

Adjuvants, Immunologic↗

Expression of CD44 variant isoforms in leukocytes of the joint fluid of rheumatoid arthritis patients and the effect of steroids.

Several CD44 variant isoforms have been reported in the synovium of patients with rheumatoid arthritis (RA), but the physiological and pathological roles of these isoforms have not been identified. In this study, we investigated the expression of CD44 variant isoform mRNA using the reverse transcription-polymerase chain reaction (RT-PCR) and TaqMan PCR methods in leukocytes of blood and joint fluid obtained from the knee joints of 20 RA patients. We also examined the effects of steroids (prednisolone and/or dexamethasone palmitate) and some disease-modifying antirheumatic drugs (DMARDs) on the expressions of CD44 variants. The expressions of CD44H mRNA and CD44V10 mRNA of leukocytes were significantly higher in both the blood and joint fluid samples of the RA patients compared with the samples of healthy volunteers. The level of CD44V10 mRNA in the leukocytes of the joint fluid was higher than that in the blood of the RA patients. These results suggest that the increase of CD44V10 mRNA expression in the leukocytes of RA patients can induce a focusing of leukocytes on synovial tissue and an infiltration of leukocytes into the joint fluid. In the steroid-treated RA patients, the expression of CD44H mRNA in the leukocytes was significantly decreased in the joint fluid samples, whereas the expression of CD44V10 mRNA of leukocytes was a higher level. None of the DMARDs used here showed any influence on the expressions of CD44 variants. These results suggest that steroid treatment affects CD44H mRNA expression, whereas steroids and DMARDs have no influence on CD44V10 mRNA expression. Therefore, only the suppression of CD44H mRNA expression will not be enough to control RA. It is possible that the expression of CD44V10 is associated with a pathway of RA immunological processes.

Adult↗

An end-trimming method to amplify adjacent cDNA fragments by PCR.

We describe a method for cDNA cloning by PCR, which we named "an end-trimming method." This method can be used for PCR amplification and cloning of unknown cDNA fragments adjacent to a short stretch of a known sequence by using a combination of a sequence-matched primer with an ATCG sequence added to the 5' end (5'-ATCG-primer) and an adaptor-(dT)17-primer (dT-primer). The fragments amplified by PCR using a 5'-ATCG-primer, which were modified to have a 5'-ATC overhang by blocking the G site, were exclusively cloned into pUC19 with the vector having a 3'-TAG-5' complementary overhang with a confined direction of inserted fragments. Practical application of this method for the determination of rat amidophosphoribosyltransferase cDNA resulted in successful cloning of adjacent cDNA fragments.

Animals↗

Multiple fluorescence-based PCR-SSCP analysis.

Multiple fluorescence-based polymerase chain reaction single-strand conformation polymorphism (MF-PCR-SSCP) was developed. The target sequence was amplified by PCR using forward and reverse primers labeled with two different fluorescent dyes at their 5' ends. The amplified products were then heat-denatured, mixed with internal standard DNA markers labeled with a third fluorescent dye and applied to a temperature-controlled gel in an automated DNA sequencer, with a gel-temperature-controlling system. Mutations were detected as positional shifts of two-colored peaks in the electrophoretogram. The image data were analyzed by the computer program GENESCAN 672. The peak positions were standardized to internal DNA size markers. MF-PCR-SSCP analysis of 7 human tumor cell lines with 7 different single base mutations of the human K-ras oncogene detected all mutations even under the same electrophoresis conditions. Complete loss of heterozygosity was detected in two cell lines simultaneously. A gel temperature at 20 degrees C and polyacrylamide concentration of 10% gave the best separation. MF-PCR-SSCP is superior to the current PCR-SSCP in several ways: it does not involve radioactivity, migration patterns are standardized to internal standard DNA markers, there is a strict temperature-controlling system and the higher percentage of the gel enables better separation with resultant 100% detection of mutations most likely under one set of electrophoresis conditions.

Base Sequence↗

Molecular cloning of rat amidophosphoribosyltransferase.

The cDNA of rat amidophosphoribosyltransferase (EC 2.4.2.14, ATase), which is the supposed regulatory allosteric enzyme of de novo purine nucleotide biosynthesis, has been cloned by polymerase chain reaction. The predicted open reading frame encodes a protein of 517 amino acids with a deduced molecular weight of 57,436 including a supposed 11-amino acid propeptide. The 16 amino acid residues next to the propeptide were identical to the N-terminal amino acid microsequence of a purified rat liver ATase, which is consistent with the cleavage of the propeptide from the proenzyme in rat liver. The derived amino acid sequence is the first sequence reported for a mammalian ATase and it exhibits 81, 41, 36, and 31% identity with the sequences of chicken, Bacillus subtilis, Escherichia coli, and Saccharomyces cerevisiae ATases, respectively. The molecular weight (M(r)) of 57,436 suggests a tetrameric structure of native ATase with a M(r) of 240,000-248,000. Southern blot analysis suggested that the ATase gene exists as a single copy in the rat genome. Northern blot analysis revealed that ATase is expressed at a high level in brain, heart, liver, and stomach. The ATase mRNA in brain, heart, and stomach was 3.5 kilobases (kb) and in liver the 3.5-kb band was observed as well as an additional band of 4.2 kb. Reverse transcription-polymerase chain reaction analysis showed that ATase is ubiquitously expressed in all tissues examined. Comparison with chicken ATase showed that 2 cysteine residues for an iron-sulfur cluster were conserved. Three conserved and two non-conserved consensus phosphorylation sites for cAMP-dependent protein kinase were found.

Amidophosphoribosyltransferase↗

Molecular cloning of human amidophosphoribosyltransferase.

The cDNA of human amidophosphoribosyltransferase (EC 2.4.2.14, ATase), which is the supposed regulatory allosteric enzyme of de novo purine nucleotide biosynthesis, has been cloned from human hepatoma (HepG2) cDNA library. The predicted open reading frame encodes a protein of 517 amino acids with a deduced molecular weight (Mr) of 57,398, which is consistent with the molecular mass of 56 kDa on SDS-polyacrylamide gel electrophoresis (SDS-PAGE) of the ATase subunit purified from human placenta. The derived amino acid sequence exhibits 93, 82, 41, 37, and 33% identity with the sequences of rat, chicken, Bacillus subtilis, Escherichia coli, and Saccharomyces cerevisiae ATases, respectively. Southern blot analysis suggested that the ATase gene exists as multiple copies. ATase mRNA (3.5 kb) is ubiquitously expressed in various human tissues. Comparison with rat and chicken ATases showed that two cysteine residues for an iron-sulfur cluster were conserved. Four consensus phosphorylation sites for cAMP-dependent protein kinase were found.

Amidophosphoribosyltransferase↗

Detection of a new polymorphism of the human prothrombin (F2) gene by combination of PASA and mutated primer-mediated PCR-RFLP.

A new polymorphism of the human prothrombin (F2) gene was detected by a combination of polymerase chain reaction (PCR) amplification of specific alleles (PASA) and mutated primer-mediated PCR restriction fragment length polymorphism (PCR-RFLP). The method is simple and useful for detecting polymorphisms and mutations. The new polymorphism of C1 and C2 examined by this method is highly heterozygous and serves as a good human DNA marker.

Base Sequence↗