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Biomedical subjects

K Horikawa

Publications and source records attributed to K Horikawa.

At least 37 records · Page 2Linked to original sources

Restriction fragment length polymorphism analysis using random chromosomal gene probes for epidemiological analysis of Campylobacter jejuni infections.

We have evaluated the ability of a new genotyping method for Campylobacter jejuni based on restriction fragment length polymorphisms using random chromosomal gene probes. DNAs from C. jejuni strains digested with each of three restriction enzymes, HhaI, HaeIII, and HpaII, were analyzed by Southern hybridization using each of two unrelated cosmid clones, P14 and P15 (respectively containing 30- and 35-kb genomic DNA fragments of C. jejuni strain OH4384). The method reported provides a stable and discriminating means for identifying C. jejuni strains and should be useful for epidemiological analyses.

Bacterial Typing Techniques↗

A novel type of factor XI deficiency showing compound genetic abnormalities: a nonsense mutation and an impaired transcription.

We studied a 29-year-old Japanese male patient with factor XI deficiency; we also studied his parents and one sibling. Factor XI coagulation activity and antigen levels were extremely low (less than 1% of normal level) in both the patient and his brother, and they were half the normal levels in both parents. Sequence analysis of all 15 exons and the exon-intron boundaries of the factor XI gene amplified by polymerase chain reaction revealed a nonsense mutation in exon 8 (Gln263-->Stop). Although the parents are first cousins, the mutation was unexpectedly heterozygous in all the family members except the father, who showed the homozygous wild type, indicating that this mutation alone was not sufficient to account for the factor XI deficiency. To explore the genetic abnormality in the father, we analyzed allele-specific expression of the platelet factor XI gene using reverse transcription-polymerase chain reaction and subsequent restriction enzyme digestion. As a result, gene expression from only one allele was severely impaired in the father. This result implies an additional mutation in some regulatory element of the factor XI gene from paternal inheritance. We concluded that the factor XI deficiency of the patient was caused by compound heterozygous genetic abnormalities.

Adult↗

Two cases showing clonal progression with full evolution from aplastic anemia-paroxysmal nocturnal hemoglobinuria syndrome to myelodysplastic syndromes and leukemia.

We report 2 paroxysmal nocturnal hemoglobinuria (PNH) patients who were initially diagnosed with aplastic anemia and sequentially developed PNH, myelodysplastic syndromes (MDS), and leukemia. Flow cytometry and cytogenetic analysis showed the initial appearance and expansion of PNH clones, gradual replacement of PNH clones by MDS clones with monosomy 7, and then expansion of MDS clones or their subclones with additional chromosomal abnormalities. In relation to these developments, expression increased of the Wilms' tumor gene WT1, a marker for leukemic progression. These patients not only shared bone marrow failure but also might have harbored a hematopoietic environment favorable for the emergence of abnormal clones leading to leukemogenesis.

Adult↗

Adhesive subdivisions intrinsic to the epithelial somites.

Developing somites express two subtypes of classic cadherin adhesion receptors, N-cadherin and cadherin-11 (cad11). To investigate the role of these adhesion molecules in somite morphogenesis, we analyzed the somites of mice whose N-cadherin and cad11 genes were disrupted. The epithelial somites of N-cadherin null mutant mice were fragmented as reported, whereas those of cad11(-/-) mice showed no structural anomaly. In mice double homozygous for N-cadherin and cad11 mutation, however, somites were further fragmented into smaller clusters than in the N-cadherin-deficient mice, suggesting that these two cadherins cooperate in the maintenance of epithelial somites. Despite the disorganization of epithelial structures, dorsoventral polarity markers were expressed in their correct patterns in all of these mutant somites. Uncx4.1, whose expression is localized only in the caudal region of each somite, was also expressed in a normal pattern in the mutant somites. However, the staining for Uncx4.1 revealed that, in the N-cadherin mutants, each somite tended to be cleaved at the border between the Uncx4. 1-positive and -negative regions and that the cleaved subunits maintained the clustered state, often exhibiting epithelioid morphology. This separation of the rostral and caudal regions was observed as soon as the epithelial somites had been formed. In the N-cadherin/cad11 double-homozygous mutants, this tendency was also observed, although each half of the somite further disintegrated into randomly arranged cell clusters. These results suggest that cells of the rostral and caudal regions of each epithelial somite have an activity to aggregate independently or separate from one another and that one role of N-cadherin and cad11 is to connect the two halves into a single unit.

Animals↗

The expression of the melatonin synthesis enzyme: arylalkylamine N-acetyltransferase in the suprachiasmatic nucleus of rat brain.

The hormone melatonin, secreted primarily from the pineal gland, plays an important physiological role in synchronizing biological rhythms and neuroendocrine. Presently, we find the expression of the serotonin N-acetyltransferase (arylalkylamine N-acetyltransferase, AA-NAT) mRNA, the rate-limiting enzyme in the conversion of serotonin to melatonin, in the rat suprachiasmatic nucleus (SCN) which contains the biological circadian clock in mammals. AA-NAT mRNA content in rat SCN did not show a significant circadian rhythm. However, AA-NAT enzyme activity was lowest at midday and highest at early night, and the rhythm persisted under constant dark conditions. These results indicate that the rat SCN is capable of synthesizing melatonin and suggest that melatonin synthesis in the SCN may be regulated by the circadian clock at the post transcriptional level.

Animals↗

Distinctive roles of Fyn and Lyn in IgD- and IgM-mediated signaling.

Src family kinases Fyn and Lyn associate with the B cell antigen receptor (BCR). Accumulating data show that Lyn plays important roles in BCR-mediated signaling, while the role of Fyn remains obscure. Here we dissected the role of Fyn and Lyn in BCR signaling using B cells from fyn(-/-), lyn(-/-) and fyn/lyn double-deficient (fyn(-/-)lyn(-/-)) mice. In contrast to previous reports, fyn(-/-) B cells were slightly hyporeactive to both anti-IgM and anti-IgD-dextran. Although lyn(-/-) B cells were hyper-reactive to anti-IgM, anti-IgD-induced proliferation was impaired in lyn(-/-) B cells. Most of the other phenotypes of fyn(-/-)lyn(-/-) mice were similar to that of lyn(-/-) mice, except that proliferative responses of B cells to various stimuli, such as BCR cross-linking and lipopolysaccharide, were significantly lower in fyn(-/-)lyn(-/-) mice than in lyn(-/-) mice. Finally, immune responses to thymus-independent type 2 antigen were affected in these mutant mice. These observations suggest that Fyn and Lyn are involved in B cell functions, and play similar, but partly distinct, roles in BCR signaling.

Animals↗

Genotypic characterization of human and environmental isolates of Salmonella choleraesuis subspecies choleraesuis serovar infantis by pulsed-field gel electrophoresis.

To determine the extent of genetic diversity of Salmonella choleraesuis subspecies choleraesuis serovar Infantis and whether environmental isolates were similar or identical to human isolates, a total of 110 isolates from humans, broiler samples, egg production facilities, riverwater, sewage, and chicken meat were analyzed epidemiologically by pulsed-field gel electrophoresis. While the isolates showed 35 distinct pulsed-field profiles, none had the genotype of the human isolates. One pulsed-field profile was shared by 43 (39%) of the 110 isolates. These results indicate that relatively fewer clonal lines of S. serovar Infantis had spread widely while multiple clonal lines, including the strain involved in the outbreak, exist in Western Japan.

Animals↗

[Characterization of enterohemorrhagic Escherichia coli O26 and development of its isolation media].

We studied 101 strains of Enterohemorrhagic Escherichia coli (EHEC) O26 isolated from diarrhea patients in six prefectural institutes of public health in Japan during June 1996 and December 1997 and tried to establish an isolation medium for EHEC O26. None of the 101 EHEC O26 strains fermented rhamnose; Whereas all of the other EHEC including O157 and non-EHEC (166 strains) fermented rhamnose except 1 strain of non-EHEC. All of the randomly selected EHEC O26 (14 strains of O26:H11.2 strains of O26:H-) showed a very high resistance to potassium tellurite (Minimal Inhibitory Concentration (MIC) > or = 50 micrograms/ml), whereas all of the randomly selected non-EHEC (26 strains) but 1 showed a high sensitivity (MIC < or = 6.25 micrograms/ml) to this compound. On the basis of these results, we developed a Rhamnose MacConkey (RMAC) medium in which lactose in the MacConkey medium was replaced by rhamnose, and Cefixime-Potassium Tellurite-RMAC (CT-RMAC) medium in which Cefixime (0.05mg/l) and Potassium Tellurite (25mg/l) was added to RMAC for the isolation of EHEC O26 strains. We then evaluated the specifcity of these selective media by growing a selected number of O26 (24 strains) and 9 selected strains of bacteria. All of the EHEC O26 strains generated rhamnose non-fermented colonies (white color) on both media. In contrast to the EHEC O26, the vast majority of E. coli strains (166/167 = 99.4%) other than EHEC O26 were theoretically assumed to generate red colonies on the RMAC medium because of their rhamnose fermenting character and most of them were assumed not to grow on CT-RMAC medium because of their sensitivity to potassium tellurite. These findings and results indicate that EHEC O26 can be easily distinguished from other strains of E. coli including O157. Although EHEC O26 strains showed somewhat poor growth on CT-RMAC medium compared with that on RMAC medium, these O26 showed almost the same degree of growth on CT-RMAC as they showed on DHL media. The results of the present study demonstrated that the use of RMAC and CT-MRAC media for the isolation of EHEC O26 is very reliable and efficient with RMAC having good sensitivity and CT-RMAC having a better specificity for the isolation of this strain of EHEC.

Culture Media↗

Epidemiological analysis of Salmonella enteritidis from human outbreaks by pulsed-field gel electrophoresis.

To determine the extent of genetic diversity among isolates of Salmonella enteritidis obtained from outbreaks in Fukuoka Prefecture, Japan, from 1989 to 1994, we analyzed a total of 55 isolates of S. enteritidis obtained from 13 distinct outbreaks with pulsed-field gel electrophoresis. These isolates showed three different patterns in pulsed-field profile with Bln I digestion. The groups A, B and C consisted of three outbreaks isolates (Dice coefficient, F = 1), of seven outbreaks (F = 0.56-0.94) and of three outbreaks (F = 0.65-0.78), respectively. This result suggests that a few limited clonal lines of S. enteritidis were successively causing outbreaks in this area from 1989 to 1994.

Animals↗

Multitissue circadian expression of rat period homolog (rPer2) mRNA is governed by the mammalian circadian clock, the suprachiasmatic nucleus in the brain.

The period (per) gene, controlling circadian rhythms in Drosophila, is expressed throughout the body in a circadian manner. A homolog of Drosophila per was isolated from rat and designated as rPer2. The rPER2 protein showed 39 and 95% amino acid identity with mPER1 and mPER2 (mouse homologs of per) proteins, respectively. A robust circadian fluctuation of rPer2 mRNA expression was discovered not only in the suprachiasmatic nucleus (SCN) of the hypothalamus but also in other tissues including eye, brain, heart, lung, spleen, liver, and kidney. Furthermore, the peripheral circadian expression of rPer2 mRNA was abolished in SCN-lesioned rats that showed behavioral arrhythmicity. These findings suggest that the multitissue circadian expression of rPer2 mRNA was governed by the mammalian brain clock SCN and also suggest that the rPer2 gene was involved in the circadian rhythm of locomotor behavior in mammals.

Amino Acid Sequence↗

Comparative tumorigenicity of 1- and 3-nitrobenzo[a]pyrenes, and 3,6- and 1,6-dinitrobenzo[a]pyrenes in F344/DuCrj rats.

Our earlier study revealed that 1- and 3-nitrobenzo[a]pyrene (NBP), 1,6- and 3,6-dinitrobenzo[a]pyrene (DNBP), nitrated derivatives of benzo[a]BP (BP), are present in the environment. These derivatives are potent mutagens for Salmonella tester strains and we have preliminarily reported them to be carcinogenic in F344/DuCrj rats. In this study, the tumorigenic action of 1- and 3-NBP, 1.6- and 3,6-DNBP, and BP induced by subcutaneous injection into rats was found to differ according to the NO2-substitution in the BP structure. The chemicals were suspended in equal volumes of beeswax and tricaprylin, and rats were subcutaneously injected with single doses of 500, 1000, and 2000 microg for 1- and 3-NBP, and of 8, 40, 200, and 1000 microg for 3,6- and 1,6-DNBP, and BP as a positive control. 3,6-DNBP and BP induced tumors in a dose-dependent manner at the injection site. Rats given 1000 microg of 3,6-DNBP (2924 nmol) and BP (3968 nmol) developed subcutaneous tumors at the rate of 70 and 80%, respectively, and those given a minimum dose of 23 nmol for 3.6-DNBP and 32 nmol for BP per rat developed tumors at a rate of 4.8 and 18.2%, respectively. However, rats given 500 and 1000 microg of 1- and 3-NBP did not develop any tumors while those given a high dose, 2000 microg, of each chemical developed tumors at only one of ten animals used. It was concluded, therefore, that these chemicals are weak carcinogens. Histologically, most of the tumors were malignant fibrous histiocytomas. Rats given various doses of 1,6-DNBP did not develop any tumors at the injection site. The failure of 1,6-DNBP to induce tumors may involve its metabolites because of the lower mutagenicity of its reduction products, 1-nitroso-6-NBP and 1-amino-6-NBP. It is suggested, therefore, that tumorigenicities of NBPs and DNBPs differ according to the NO2-substitution on the chemical structure, which may be due to the possible nitroreduction of the chemicals.

Animals↗

The localization of the site of arylalkylamine N-acetyltransferase circadian expression in the photoreceptor cells of mammalian retina.

To investigate the molecular mechanism of the melatonin rhythm in the mammalian retina, we examined the temporal mRNA expression pattern of arylalkylamine (serotonin) N-acetyltransferase (AA-NAT), the rate-limiting enzyme in melatonin synthesis in the rat retina. Rat AA-NAT mRNA was detected exclusively in the retinal photoreceptors in the outer nuclear layer--low during the day and increased more than threefold at night. The nocturnal AA-NAT expression in rat retina was also confirmed by RNase protection and the AA-NAT enzymatic activity. This is the first report to localize the site of AA-NAT mRNA circadian expression in mammalian photoreceptor cells.

Animals↗

A double-edged kinase Lyn: a positive and negative regulator for antigen receptor-mediated signals.

B cells from young lyn-/- mice are hyperresponsive to anti-IgM-induced proliferation, suggesting involvement of Lyn in negative regulation of B cell antigen receptor (BCR)-mediated signaling. Here we show that tyrosine phosphorylation of FcgammaRIIB and CD22 coreceptors, which are important for feedback suppression of BCR-induced signaling, was severely impaired in lyn-/- B cells upon their coligation with the BCR. Hypophosphorylation on tyrosine residues of these molecules resulted in failure of recruiting the tyrosine phosphatase SHP-1 and inositol phosphatase SHIP, SH2-containing potent inhibitors of BCR-induced B cell activation, to the coreceptors. Consequently, lyn-/- B cells exhibited defects in suppressing BCR-induced Ca2+ influx and proliferation. Thus, Lyn is critically important in tyrosine phosphorylation of the coreceptors, which is required for feedback suppression of B cell activation.

Animals↗

Heterogeneity in expression of lipopolysaccharide and major outer-membrane proteins by strains of Escherichia coli O157 with different H-serotypes.

A total of 11 strains of Escherichia coli (E. coli) belonging to serogroup O157 were examined for the expression of long-chain lipopolysaccharide (LPS) and major outer-membrane proteins (OMPs) by means of SDS-PAGE. The strains belonged to either one of four different flagellar (H) types or did not express flagella. Four of the eleven strains carried genes encoding Shiga-like toxins (SLTs). All the strains exhibited one of four LPS profiles, designated A, B, C or D. Electron microscopic analysis with the freeze-substitution technique demonstrated the differences in the cell surface structures of strains with each LPS profile. Strains with LPS profile A, B or C had layers of thin fibers 10, 20 and 20 nm long, respectively, on the outer membrane but strains with LPS profile D had no such structure. An analysis of the OMPs showed that all the strains had one of four OMP profiles, designated I, II, III or IV. Both LPS and OMP profiles were dependent on H-serotypes, and the combination pattern of LPS and OMP profiles of the strains was unique for each H-serotype. These data support the existence of heterogeneous groups of O157 strains.

Bacterial Outer Membrane Proteins↗

Apoptosis resistance of blood cells from patients with paroxysmal nocturnal hemoglobinuria, aplastic anemia, and myelodysplastic syndrome.

Bone marrow (BM) hypoplasia is a major cause of death in paroxysmal nocturnal hemoglobinuria (PNH). However, little is known about the molecular events leading to the hypoplasia. Considering the close pathologic association between PNH and aplastic anemia (AA), it is suggested that a similar mechanism operates in the development of their BM failure. Recent reports have indicated apoptosis-mediated BM suppression in AA. It is thus conceivable that apoptosis also operates to cause BM hypoplasia in PNH. If this is the case, PNH clones need to survive apoptosis and show considerable expansion leading to clinical manifestations. We report here that granulocytes obtained from 11 patients with PNH were apparently less susceptible than those from 20 healthy individuals to both spontaneous apoptosis without any ligands and that induced by anti-FAS (CD95) antibody in vitro. The patients' BM CD34+ cells were also resistant to apoptosis induced by treatment with tumor necrosis factor-alpha, interferon-gamma, and subsequently with anti-FAS antibody. In lymphocytes, the pathologic resistance was not discriminated from inherent resistance to apoptosis. Granulocytes from 13 patients with AA and 12 patients with myelodysplastic syndrome (MDS) exhibited similar resistance to apoptosis. CD34+ cells from MDS-BM also showed similar tendency. Thus, the comparative resistance to apoptosis supports the pathogenic implication of apoptosis in marrow injury of PNH and related stem cell disorders.

Adult↗

Differential glycosylation of Bence Jones protein and kidney impairment in patients with plasma cell dyscrasia.

Although Bence Jones protein (BJP) is generally accepted to be critically involved in the pathogenic process of kidney impairment in patients with myeloma, patients with BJP do not always have kidney dysfunction. As proteins often undergo glycosylation and alter their molecular nature, it is expected that the heterogeneity in kidney dysfunction can be explained at least partly by the differential affinity to the kidneys of BJP dependent on its glycosylation. Accordingly, we analyzed the structures of carbohydrates of urine BJP biochemically to correlate the structure with kidney function. BJP was obtained from 16 patients with myeloma, 2 patients with light chain amyloidosis, a patient with plasma cell leukemia, and a patient with Waldenstrom's macroglobulinemia. All BJP had five forms of oligosaccharides: three forms of biantennary oligosaccharides and two forms of triantennaries. The three biantennaries correspond to previously reported oligosaccharides on only lambda-type BJP, whereas the triantennaries are novel oligosaccharides found on BJP. Among the five oligosaccharides, the triantennary oligosaccharide Gal(beta)1-4GlcNAc(beta)1-2Man(alpha)1-6 [Gal(beta)1-GlcNA(beta)1-4(Gal(beta)1-4GlcNAc(beta) 1-2)Man(alpha)1-3]Man(beta)1-4GlcNAc(beta)1-4GlcNAc showed a significant negative correlation with the serum creatinine level (p = 0.015 by Spearman's correlation test, R = 0.744). Thus determination of BJP glycosylation may be useful for the evaluation of kidney impairment in patients with BJP.

Bence Jones Protein↗

Markedly high plasma erythropoietin and granulocyte-colony stimulating factor levels in patients with paroxysmal nocturnal hemoglobinuria.

In patients with paroxysmal nocturnal hemoglobinuria (PNH), we measured plasma concentrations of endogenous hematopoiesis-regulatory cytokines to characterize bone marrow (BM) hypoplasia which is a major cause of death. Contrary to 10 healthy individuals, all 14 patients with PNH showed increases of erythropoietin (Epo) and granulocyte-colony stimulating factor (G-CSF). There were no signs of infection, renal dysfunction or hypoxia. The lower the hemoglobin level and granulocyte count, the higher the plasma Epo and G-CSF levels. In contrast, marked differences were not found in the levels of interleukin-3 (IL-3), tumor necrosis factor-alpha (TNF-alpha), stem cell factor (SCF), granulocyte/macrophage-colony stimulating factor (GM-CSF), or interferon-gamma) (IF-gamma). The cytokine profiles of PNH patients were quite similar to those of patients with aplastic anemia (AA) and myelodysplastic syndrome (MDS). The cytokine profiles may support a pathological relationship between PNH and these stem cell disorders.

Adolescent↗