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Biomedical subjects

T Kuwana

Publications and source records attributed to T Kuwana.

At least 19 recordsLinked to original sources

Apoptosis induction by caspase-8 is amplified through the mitochondrial release of cytochrome c.

Apoptosis often involves the release of cytochrome c from mitochondria, leading to caspase activation. However, in apoptosis mediated by CD95 (Fas/APO-1), caspase-8 (FLICE/MACH/Mch5) is immediately activated and, in principle, could process other caspases directly. To investigate whether caspase-8 could also act through mitochondria, we added active caspase-8 to a Xenopus cell-free system requiring these organelles. Caspase-8 rapidly promoted the apoptotic program, culminating in fragmentation of chromatin and the nuclear membrane. In extracts devoid of mitochondria, caspase-8 produced DNA degradation, but left nuclear membranes intact. Thus, mitochondria were required for complete engagement of the apoptotic machinery. In the absence of mitochondria, high concentrations of caspase-8 were required to activate downstream caspases. However, when mitochondria were present, the effects of low concentrations of caspase-8 were vastly amplified through cytochrome c-dependent caspase activation. Caspase-8 promoted cytochrome c release indirectly, by cleaving at least one cytosolic substrate. Bcl-2 blocked apoptosis only at the lowest caspase-8 concentrations, potentially explaining why CD95-induced apoptosis can often evade inhibition by Bcl-2.

Animals

Determination of L-phenylalanine based on an NADH-detecting biosensor.

An enzyme carbon paste electrode containing three different enzymes was developed for the determination of L-phenylalanine. This sensor is based on the enzymatic/electrochemical recycling of tyrosinase in combination with salicylate hydroxylase and L-phenylalanine dehydrogenase (PADH). The enzymes salicylate hydroxylase and tyrosinase were coimmobilized first in a carbon paste electrode for the sensitive detection of NADH. The principle of the bienzyme scheme is as follows: the first enzyme, salicylate hydroxylase, converts salicylate to catechol in the presence of oxygen and NADH. The second enzyme, tyrosinase, then oxidizes the catechol to o-quinone, which is electrochemically detected and reduced back to catechol at the electrode at an Eappl = -50 mV vs Ag/AgCl. This results in an amplified signal due to the recycling of the catechol and o-quinone between tyrosinase and the surface of the electrode. Prior to adding PADH, the salicylate hydroxylase-tyrosinase carbon paste electrode was characterized in terms of its sensitivity to NADH, pH dependence, buffer composition, interferences, and stability. Interference from ascorbic acid and uric acid was found to be minimal. Human serum was used to investigate whether this bienzyme system was suitable for the detection of NADH in serum and blood samples. The sensitivity for NADH was increased by a factor of 33 times using the bienzyme amplification scheme (electroreduction of o-quinone at Eappl = -50 mV) as opposed to the salicylate hydroxylase single-enzyme system (at which catechol would have been oxidized at Eappl = +150 mV vs Ag/AgCl). The detection limit for NADH achieved by the bienzyme carbon paste electrode was 1 vs 100 microM for the single-enzyme carbon paste electrode. The salicylate hydroxylase-tyrosinase system was then coupled with phenylalanine dehydrogenase for L-phenylalanine determination. This multienzyme sensor was able to achieve a linear range of 20-150 microM and a detection limit of 5 microM for L-phenylalanine. The sensitivity is sufficient since the reference clinical range for L-phenylalanine is 78-206 microM.

Amino Acid Oxidoreductases

Production of germ-line chimeras by transfer of cryopreserved gonadal primordial germ cells (gPGCs) in chicken.

Gonadal primordial germ cells (gPGCs) were collected from gonadal anlage of 5-day-old White Leghorn (WL) embryos. Collected gPGCs were suspended in freezing medium containing 10% dimethyl sulphoxide (DMSO). The cell-suspension was frozen at 1 degree C/min until the temperature reached -80 degrees C; cells were then immersed in liquid nitrogen at -196 degrees C and stored up to 3 mo. Approximately 100 frozen/thawed gPGCs were injected into the dorsal aorta of each Barred Plymouth Rock (BPR) embryo from which blood was drawn prior to germ-cell injection. The injected embryos were incubated until hatched, and hatched chicks were raised until sexually mature. Upon reaching sexual maturity, a progeny test was performed by mating recipient chicks with normal BPR of the opposite sex. Of 840 progeny produced from 4 gPGC recipients, 74 chicks (8.8%) were phenotypically white. Present results demonstrate that frozen/thawed gPGCs collected from gonadal anlage are capable of producing germ-line chimeras in chicken.

Animals

Exit of major histocompatibility complex class II-invariant chain p35 complexes from the endoplasmic reticulum is modulated by phosphorylation.

The Iip35 isoform of the major histocompatibility complex (MHC) class II-associated invariant chain (Ii) contains an endoplasmic reticulum (ER) targeting motif, but in B cell lines the ER retention is ineffective and a fraction of Iip35 is transported through the Golgi complex associated with class II molecules. We found Iip35 (but not Iip33, the major form of Ii) to be phosphorylated in B cell lines, as well as in transfected HeLa cells. The phosphorylation of Iip35 was found to be necessary for the exit of Iip35-class II complexes out of the ER. This requirement suggests that phosphorylation may change the interaction with factors responsible for ER retention/retrieval, and we did find that phosphorylated Iip35 associates with 14-3-3 proteins, a family of adaptor proteins that are involved in coordinating signal transduction pathways. This finding raises the intriguing possibility that the exit of Ii-class II complexes from the ER is regulated by intracellular signaling events.

14-3-3 Proteins

Donor primordial germ cell-derived offspring from recipient germline chimaeric chickens: absence of long-term immune rejection and effects on sex ratios.

1. Germline chimaeric chickens were produced by the transfer of primordial germ cells, and the generation of donor-derived offspring was examined for a maximum of 146 weeks. 2. The frequencies of donor-derived offspring from the chimaeras were 47% to 97%, and no apparent changes in frequency were observed with increasing age during the test period. 3. Differentiation of donor primordial germ cells into functional gametes appeared to be restricted to a degree at some developmental stage in the gonads of chimaeric chickens of the opposite sex.

Animals

Expression of exogenous DNA in the gonads of chimaeric chicken embryos produced by transfer of primordial germ cell transfected in vitro and subsequent fate of the introduced DNA.

The expression and fate of exogenous DNA (lacZ gene), introduced into the gonads of chimaeric embryos and chickens that had been produced by transfer of primordial germ cells (PGCs) transfected in vitro, were examined. PGCs obtained from embryonic blood were transfected in vitro by lipofection and transferred to the partially sterilized recipient embryos. Expression of the lacZ gene was observed in the gonads of chimaeric embryos incubated for 3 days after the PGC injection (71.2%, 37/52). Introduction of the lacZ gene into the gonads of chimaeric embryos was confirmed by PCR analysis. The percentage of embryos with gonads positive for the lacZ gene was 95% (38/40) after 3 days of incubation after the PGC injection. The lacZ gene, however, appeared to persist episomally but was gradually lost during embryonic development. After 17 days of incubation after the PGC injection, the lacZ gene was detected in only 14.3% (3/21) of the embryos examined. Although the lacZ gene was detected in the gonads of two hatched chicks (11.1%), it was not detected in the gonads of chimaeric chickens at sexual maturity. Offspring derived from the lipofected PGCs were obtained from the chimaeric chickens at frequencies of 12.1-69.9% in males and 71.6-97.6% in females. The technique developed in the present work could be used to test the expression of exogenous DNA in the gonads of early chicken embryos and should facilitate the production of transgenic chickens.

Animals

Reaper-induced apoptosis in a vertebrate system.

The reaper protein of Drosophila melanogaster has been shown to be a central regulator of apoptosis in that organism. However, it has not been shown to function in any vertebrate nor have the cellular components required for its action been defined. In this report we show that reaper can induce rapid apoptosis in vitro using an apoptotic reconstitution system derived from Xenopus eggs. Moreover, we show that a subcellular fraction enriched in mitochondria is required for this process and that reaper, acting in conjunction with cytosolic factors, can trigger mitochondrial cytochrome c release. Bcl-2 antagonizes these effects, but high levels of reaper can overcome the Bcl-2 block. These results demonstrate that reaper can function in a vertebrate context, suggesting that reaper-responsive factors are conserved elements of the apoptotic program.

Amino Acid Sequence

The developmental origin of primordial germ cells and the transmission of the donor-derived gametes in mixed-sex germline chimeras to the offspring in the chicken.

A novel system has been developed to determine the origin and development of primordial germ cells (PGCs) in avian embryos directly. Approximately 700 cells were removed from the center of the area pellucida, the outer of the area pellucida, and the area opaca of the stage X blastoderm (Eyal-Giladi and Kochav, 1976; Dev Biol 49:321-337). When the cells were removed from the center of the area pellucida, the mean number of circulating PGCs per 1 microliter of blood was significantly decreased to 13 (P < 0.05) in the embryo at stage 15 (Hamburger and Hamilton, 1951: J Morphol 88:49-92) as compared to intact embryos of 51. When the removed recipient cells from the center of the area pellucida were replenished with 500 donor cells, no reduction in the PGC number was observed. The removal of cells from the outer of area pellucida or from the area opaca had no effect on the number of PGCs. When another set of the manipulated embryos were cultured ex vivo to hatching and reared to sexual maturity, the absence of germ cells and the degeneration of seminiferous tubules were observed in resulting chickens derived from the blastoderm from which the cells were removed from the center of the area pellucida. Chimeric embryos produced by the male donor cells and the female recipient contained the female-derived cells at 97.2% in the whole embryo and 94.3% in the erythrocytes at 5 days of incubation. At 5-7 days of incubation, masculinization was observed in about one half of the mixed-sex embryos. The proportions of the female-derived cells in the whole embryo and in the erythrocytes were 76.5% and 80.2% at 7 days to 55.7% and 62.5% at 10 days of incubation, respectively. When the chimeras reached their sexual maturity, they were test mated to assess donor contribution to their germline. Five of six male chimeras (83%) and three of five female chimeras (60%) from male donor cells and a female recipient embryo from which 700 cells at the center of area pellucida were removed were germline chimeras. Three of the five male germline chimeras (60%) and one of the three female germline chimeras (33%) transmitted exclusively (100%) donor-derived gametes into the offspring. When embryonic cells were removed from the outer of area pellucida or area opaca, regardless of the sex combination of the donor and the recipient, the transmission of the donor-derived gametes was essentially null. The findings in the present studies demonstrated, both in vivo and in vitro, that the PGCs originate in the central part of the area pellucida and that the developmental fate to germ cell (PGCs) had been destined at stage X blastoderm in chickens.

Animals

The mesenchymal factor, FGF10, initiates and maintains the outgrowth of the chick limb bud through interaction with FGF8, an apical ectodermal factor.

Vertebrate limb formation has been known to be initiated by a factor(s) secreted from the lateral plate mesoderm. In this report, we provide evidence that a member of the fibroblast growth factor (FGF) family, FGF10, emanates from the prospective limb mesoderm to serve as an endogenous initiator for limb bud formation. Fgf10 expression in the prospective limb mesenchyme precedes Fgf8 expression in the nascent apical ectoderm. Ectopic application of FGF10 to the chick embryonic flank can induce Fgf8 expression in the adjacent ectoderm, resulting in the formation of an additional complete limb. Expression of Fgf10 persists in the mesenchyme of the established limb bud and appears to interact with Fgf8 in the apical ectoderm and Sonic hedgehog in the zone of polarizing activity. These results suggest that FGF10 is a key mesenchymal factor involved in the initial budding as well as the continuous outgrowth of vertebrate limbs.

Amino Acid Sequence

HLA-DO is a lysosomal resident which requires association with HLA-DM for efficient intracellular transport.

The murine MHC class II molecule H2-O is expressed in B-cells and in thymic epithelium but the human equivalent, HLA-DO (DO), has not been detected, though the corresponding genes, HLA-DNA and HLA-DOB, are well known. Here we show DO to be a lysosomal resident in B-cells. Surprisingly, DO forms stable complexes with HLA-DM (DM), another lysosomal class II-like molecule which is important for class II-restricted antigen presentation. Association with DM is necessary for efficient exit of DO from the endoplasmic reticulum (ER) and thus for accumulation in lysosomes. The association is evolutionarily conserved and in mice lacking H2-M, the mouse equivalent of DM, the amount of intracellular H2-O is decreased and only minor amounts of H2-O appear to leave the ER. The DO-DM complexes survive in the lysosomal system suggesting that DO and DM functions may be intertwined.

Animals

BMP signaling during bone pattern determination in the developing limb.

To examine the role of BMP signaling during limb pattern formation, we isolated chicken cDNAs encoding type I (BRK-1 and BRK-2) and type II (BRK-3) receptors for bone morphogenetic proteins. BRK-2 and BRK-3, which constitute dual-affinity signaling receptor complexes for BMPs, are co-expressed in condensing precartilaginous cells, while BRK-1 is weakly expressed in the limb mesenchyme. BRK-3 is also expressed in the apical ectodermal ridge and interdigital limb mesenchyme. BRK-2 is intensely expressed in the posterior-distal region of the limb bud. During digit duplication by implanting Sonic hedgehog-producing cells, BRK-2 expression is induced anteriorly in the new digit forming region as observed for BMP-2 and BMP-7 expression in the limb bud. Dominant-negative effects on BMP signaling were obtained by over-expressing kinase domain-deficient forms of the receptors. Chondrogenesis of limb mesenchymal cells is markedly inhibited by dominant-negative BRK-2 and BRK-3, but not by BRK-1. Although the bone pattern was not disturbed by expressing individual dominant-negative BRK independently, preferential distal and posterior limb truncations resulted from co-expressing the dominant-negative forms of BRK-2 and BRK-3 in the whole limb bud, thus providing evidence that BMPs are essential morphogenetic signals for limb bone patterning.

Amino Acid Sequence

Long-term culture of avian embryonic cells in vitro.

The pH of the embryonic blood, one of the most important environmental factors for embryonic cells, was found to range from 8.1 to 8.5 in chick embryos until 108 h after incubation. Based on these results, the culture medium adjusted to pH 8.0 was used to culture embryonic chick and quail cells. They were easily subcultured for a long period of time at pH 8.0. This pH culture condition may have wide application for manipulating embryonic cells or tissues and establishing cell lines from avian embryos.

Animals

[Clinical evaluation of immuno-serological laboratory data].

Clinical evaluations of various laboratory data from immuno-serological tests such as rheumatoid factor, anti-nuclear antibody, and other auto antibodies were reviewed. Rheumatoid factors (RF) were discussed in relation to positivity in various diseases, immunoglobulin class of RF, and correlation between titers of RF and circulating immune complex (IC). As a result, higher frequency and higher titers of IgA-RF were found in Sjögren syndrome patients. Titers of RF did not show disease activity of RA, but those of ESR and CRP did. Anti-nuclear antibodies (ANA) were discussed in relation to positivity in healthy subjects, specific antibodies and corresponding specific disease, correlation among titers of anti-dsDNA antibody, CH50 and circulating immune complex. As a result, an ANA frequency of 40% was found in healthy young women. Values of CH50 were much better than ANA titers for evaluating clinical activity in SLE patients. Findings of anti-cardiolipin antibody in thrombosis patients with connective tissue vascular disease (CVD), anti-centromere antibody in various CVD patients as well as CREST patients and primary biliary cirrhosis patients and anti-neutrophil cytoplasmic antibodies in various vascular diseases along with inflammatory bowel disease patients were presented. Finally, useful laboratory data at different clinical steps such as diagnosis, evaluation of disease activity and estimation of prognosis were demonstrated in CVD.

Adult

Identification of a lysosomal protein causing lipid transfer, using a fluorescence assay designed to monitor membrane fusion between rat liver endosomes and lysosomes.

In the present and previous studies [Mullock, Perez, Kuwana, Gray and Luzio (1994) J. Cell Biol. 126, 1173-1182], we have attempted to investigate endosome-lysosome fusion using an assay based on the dilution of the self-quenching fluorescent lipid probe octadecylrhodamine. Although some characteristics of fluorescence dequenching were consistent with those observed in other cell-free assays, we have now demonstrated that increased fluorescence was due to leakage of an intralysosomal lipid-transfer protein. This protein was purified and found to be a 22 kDa molecule with sequence, immunological and functional characteristics strongly suggesting that it is the rat homologue of human GM2-activator protein. Both the 22 kDa protein and recombinant human GM2-activator protein caused fluorescence dequenching either when mixed with octadecylrhodamine-loaded endosomes and lysosomal membranes or in a liposome system. The data were consistent with GM2-activator protein acting as an octadecylrhodamine-transfer protein. Antibodies to the 22 kDa protein added to cell-free endosome-lysosome content-mixing assays had no effect, although they could inhibit fluorescence dequenching caused by the protein. Thus this protein is not required in any fusion event involved in delivery of ligands from endosomes to lysosomes. The existence within an intracellular organelle of a protein capable of acting as an octadecylrhodamine-transfer protein suggests the need for caution in the interpretation of fluorescence-dequenching assays using mammalian subcellular fractions.

Amino Acid Sequence

An additional limb can be induced from the flank of the chick embryo by FGF4.

To elucidate what initiates formation of the limb, we have attempted to induce an additional limb from the flank of the chick embryo by infecting retrovirus or implanting cells. We report here that an additional limb can be formed from the flank when we implant fibroblast growth factor 4 (Fgf4)-expressing cells into the lateral plate mesoderm at the pre-limb bud stage. In a newly formed limb bud, expressions of both Sonic hedgehog and chick Fgf4, which are authentic morphogenetic signals from the zone of polarizing activity and the apical ectodermal ridge, respectively, are induced by the implanted cells. Thus, it is concluded that the competence for limb development is present along the flank of the chick embryo and that FGF4 applied ectopically at the pre-limb bud stage can alter the developmental fate of flank cells to become limb cells. The present experimental system will contribute to a further elucidation on how the limb is formed.

Animals

Clinical effectiveness of lansoprazole in patients with gastric ulcers: evaluation of quality of ulcer healing based on endoscopic ultrasonographic findings.

The effects of lansoprazole (30 mg/day) in 18 patients with gastric ulcers and the quality of ulcer healing were studied using endoscopy (including dye endoscopy) and endoscopic ultrasonography (EUS). The results showed an 8-week endoscopic healing rate of 94.4% and an S2-stage shift rate of 11.1%. In dye endoscopic findings of 11 S1-stage patients, S1b healing with regenerated mucosa close to S2 was seen in 63.6%. In a study of EUS findings, E0 with few relapses and high quality of healing accounted for 44.4%. When E0 rates were compared with the scarring images seen in endoscopic findings, the rates were 100% for S2, 66.7% for S1b, and 33.3% for S1a. These results indicate that a high degree of ulcer healing was achieved with lansoprazole, as good contraction of the ulcer tissue and early maturation of regenerated epithelium were observed.

2-Pyridinylmethylsulfinylbenzimidazoles

[A successful 5'-DFUR and CDDP combination therapy for an advanced gastric cancer complicated with multiple liver metastases].

A 71-year-old man with Borrmann type 3 gastric cancer with multiple liver metastases had been treated with 5'-DFUR 1400 mg/m2/day, p.o. day 1-day 4/2w and CDDP 80 mg/m2 i.v. day 5/4w, which was repeated for 4 cycles. After 2 cycle treatment, all metastatic lesions in the liver disappeared on the computed tomography scan, indicating a complete response. The primary gastric lesion was reduced, indicating a partial response. There was no significant side effect during the 4 cycles of this therapy. He is alive 6 months after the therapy with a partial response. This 5'-DFUR and CDDP combination therapy seemed to be effective for advanced gastric cancer.

Adenocarcinoma