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Biomedical subjects

Y Kitamura

Publications and source records attributed to Y Kitamura.

At least 577 records · Page 32Linked to original sources

Histamine synthesis by mouse T lymphocytes through induced histidine decarboxylase.

When spleen cells of C57BL/6 mice or mast cell-deficient W/Wv mice were cultured, their histidine decarboxylase (HDC) activity increased with increases in the histamine concentration in the cells and the medium. Addition of concanavalin A (Con A) or Escherichia coli lipopolysaccharide (LPS) enhanced the increase. The removal of adherent cells reduced both the control HDC activity and the response to the mitogens. Purified T lymphocytes responded to Con A but not to LPS. Neither Con A nor LPS had any effect on B lymphocytes. Treatment of T cells with anti-Thy-1.2 and complement completely abrogated the induction of HDC. Histamine synthesis dependent on Con A by T cells was stimulated by the addition of conditioned medium from peritoneal adherent cells activated with LPS. The addition of recombinant interleukin-1 (rIL-1) or peritoneal adherent cells fixed with paraformaldehyde significantly enhanced HDC induction dependent on Con A in T cells. These results suggest that histamine is synthesized by T lymphocytes through HDC and that the reaction was enhanced by a soluble factor(s) released from macrophages.

Animals↗

Different repopulation profile between erythroid and nonerythroid progenitor cells in genetically anemic W/Wv mice after bone marrow transplantation.

Repopulation kinetics of erythrocytes and neutrophils and replacement of hematopoietic progenitors were studied in genetically anemic (WB x C57BL/6)F1-W/Wv (WBB6F1-W/Wv) hosts after bone marrow transplantation from C57BL/6-bgJ/bgJ or C57BL/6-bgJ/bgJ;Pgk-1a/Y mice. Electrophoretic pattern of hemoglobin was used as a marker of donor-type erythrocytes, giant granules of bgJ/bgJ mice as a marker of donor-type neutrophils, and A-type phosphoglycerate kinase-1 (PGK-1) as a marker of hematopoietic colonies produced by donor-derived progenitor cells. Repopulation of donor-type erythrocytes was significantly faster than that of donor-type neutrophils. Moreover, the extent of replacement was greater for erythroid progenitor cells than for nonerythroid progenitor cells. When nonirradiated WBB6F1-W/Wv mice with B-type PGK-1 received 10(5) bone marrow cells from C57BL/6-bgJ/bgJ;Pgk-1a donors, only approximately 20% replacement of erythroid progenitor cells gave rise to total reconstitution of erythrocytes. The present result suggests that normal multipotential stem cells may preferentially differentiate into erythroid lineage cells in anemic WBB6F1-W/Wv hosts and that normal erythroid progenitor cells may suppress the differentiation of erythroid progenitors of WBB6F1-W/Wv hosts.

Anemia↗

Suppressive effect of Sl/Sld mouse embryo-derived fibroblast cell lines on diffusible factor-dependent proliferation of mast cells.

Two modes of mast cell growth are present, one dependent on diffusible growth factors (interleukins [IL] 3 and 4) and another dependent on contact with fibroblasts. The 3T3 fibroblast cell lines derived from WCB6F1-+/+ mouse embryos supported the proliferation of cultured mast cells (CMC), whereas the 3T3 fibroblast cell lines from WCB6F1-Sl/Sld mouse embryos did not. To investigate the relationship between growth factor-dependent and fibroblast-dependent growths of mast cells, we cocultured CMC and 3T3 fibroblasts in the presence of diffusible growth factors. WCB6F1-+/+ mouse embryo-derived 3T3 cells did not affect the growth factor-dependent proliferation of CMC, but WCB6F1-Sl/Sld mouse embryo-derived 3T3 cells significantly suppressed the proliferation. Close cell-to-cell contact was necessary for the suppression. The NWS1 fibroblast cell line was established from the spleen cells of an adult WBB6F1-+/+ mouse. Although the NWS1 cell line had no supporting effect on the proliferation of CMC in the absence of diffusible growth factors, it did not suppress the proliferation of CMC induced by the growth factors. The present result suggests that a product of mutant Sl genes may be involved in the suppressive activity of WCB6F1-Sl/Sld mouse embryo-derived 3T3 cells.

Animals↗

Increase of histidine decarboxylase activity in murine myelomonocytic leukemia cells (WEHI-3B) in parallel to their differentiation into macrophages.

When cells of mouse myelomonocytic leukemia cell line, WEHI-3B, were cultured in the presence of actinomycin D plus the serum which was obtained from mice injected with bacterial endotoxin, i.e., lipopolysaccharide, their histidine decarboxylase (L-histidine carboxy-lyase, EC 4.1.1.22) (HDC) activity increased about 100-fold with a peak at 48 h. According to the increase in HDC activity, the expression of surface antigens associated with macrophages, such as Mac II, Mac III and Iad, increased markedly on WEHI-3B cells as well as their morphological changes to macrophages. Histamine levels in the culture medium increased concomitantly with the increase in the HDC activity in WEHI-3B cells, whereas the histamine contents inside the cells did not increase remarkably. Furthermore, the addition of lipopolysaccharide to the culture medium caused an additional 2-fold increase in the HDC activity of WEHI-3B cells. These results indicate that the increase in HDC activity in WEHI-3B cells may represent an event in the process of the differentiation to macrophages.

Animals↗

Activated H-ras oncogenes in human kidney tumors.

Two H-ras oncogenes were detected by NIH/3T3 transfection assay out of 16 primary kidney tumors, 15 renal cell carcinomas (RCC), and one transitional cell carcinoma in 16 patients. Analysis of ras Mr 21,000 protein suggested single point mutations within codon 12 and 61 in each case. The restriction endonuclease analysis of H-ras gene at codon 12 confirmed this in one of them, and the remaining 15 tumors did not have a mutation at this site. DNAs from the noncancerous portions of the kidney with codon 12 mutated tumor, but not leukocytes from the same patient, showed an abnormal resistance to the endonucleases MspI and HpaII, suggesting a presence of codon 12 mutated H-ras gene in the noncancerous cells. No amplification of ras genes was detected in the 16 tumors analyzed. In one of eight tumors from patients heterozygous for H-ras related BamHI restriction fragments, one allele was lost in the tumor but not in the noncancerous portion of the same kidney. Although cytogenetic studies have previously suggested nonrandom involvement of c-raf-1 gene in RCC, no abnormality in the size nor amount of raf transcript was detected in the 15 RCCs. Our results thus indicated that the genetic lesions affecting ras genes do occur in human RCC, and probably serve as one of multisteps in the carcinogenic process.

Alleles↗

Activation of H-ras oncogene in rat bladder tumors induced by N-butyl-N-(4-hydroxybutyl)nitrosamine.

Ras-oncogene activation was investigated in the bladder tumors of F344 male rats given N-butyl-N-(4-hydroxybutyl)nitrosamine (BBN) in drinking water. DNA from one of the nine transitional cell carcinomas contained an H-ras oncogene detectable by the NIH/3T3 transfection assay. Analysis of p21 ras proteins suggested that the activating mutation resided within codon 61 of the H-ras gene and that such activating mutations were not present in other tumors. In contrast to mutational activation of ras genes, enhanced expression of p21 was observed in all tumors examined by immunohistochemical techniques with the use of Formalin-fixed paraffin-embedded tissue sections and an anti-ras p21 antibody, RAP-5. Further histochemical analysis of bladder tissues at various stages of the BBN-induced carcinogenic process indicated that the enhanced expression of p21 appeared early; the reactivity with RAP-5 was observed in diffuse hyperplastic epithelia after 5 weeks of exposure to BBN. The frequency of ras oncogenes, activated either by point mutations or overexpression of p21, in BBN-induced rat bladder carcinomas has thus been shown to be similar to that observed in human bladder carcinomas.

Animals↗

Fibroblast-dependent growth of mouse mast cells in vitro: duplication of mast cell depletion in mutant mice of W/Wv genotype.

In spite of the apparent depletion of mast cells in tissues of mutant mice of W/Wv genotype, cells with many features of mast cells do develop when bone marrow cells of W/Wv mice are cultured in the presence of pokeweed mitogen-stimulated spleen cell-conditioned medium (PWM-SCM). In order to resolve this discrepancy and facilitate the analysis of the W mutation, we attempted to establish an in vitro system in which the in vivo defect of W/Wv mice can be reproduced. Cultured mast cells (CMC) were developed from bone marrow cells of either W/Wv or congenic +/+ mice, and then co-cultured with NIH/3T3 mouse fibroblasts in media supplemented only with fetal calf serum (i.e., in the absence of PWM-SCM). Under this condition, CMC from +/+ mice continued to divide and were maintained for more than 4 weeks. The supportive effect of NIH/3T3 cells required close-range interactions with CMC and was not due to synthesis of the known mast cell growth factors, interleukins 3 and 4. By contrast, CMC from W/Wv mice were not maintained, and the number of mast cells remaining after 4 weeks of co-culture was only 1% of the normal +/+ counterparts. Thus, the humoral factor-independent and cell contact-dependent system presented here revealed the intrinsic defects in growth and differentiation of CMC derived from W/Wv mice and might be useful for biochemical and molecular analysis of the gene product(s) encoded at the W locus.

Animals↗

Detection of ras oncogenes by analysis of p21 proteins in human tumor cell lines.

To detect mutationally activated ras oncogenes, we analyzed electrophoretic mobilities of ras p21 proteins utilizing the fact that many ras oncogenes produce abnormal p21 proteins that migrate at SDS/polyacrylamide gel electrophoresis as a fast-moving or slow-moving species in comparison to a normal p21 depending on the kind of mutation. Of 18 human tumor cell lines analyzed, four (SW480, SW620 and SW403 colon cancers, and SW626 ovary cancer) produced p21 belonging to the slow-moving species, suggesting a point mutation within codon 12 of a member of the three ras genes, H-, Ki- and N-ras. Subsequent DNA transfection analysis using NIH/3T3 cells as recipients identified activated Ki-ras oncogenes in the same four but not in other 14 cell lines. Thus, the analysis of p21 might serve as a rapid primary method to screen a large number of tumor materials for the presence of certain types of mutationally activated ras oncogenes.

Blotting, Western↗

Clonal nature of murine hemopoietic blast cell colonies.

Murine hemopoietic blast cell colonies obtained from spleen cells of 5-fluorouracil (5-FU)-treated mice give rise to many multilineage colonies including granulocyte - erythrocyte - macrophage - megakaryocyte (GEMM) colonies in secondary cultures. Progenitor cells for blast cell colonies are considered to be more primitive than colony forming units (CFU)-GEMM. To determine whether they are clonal, we examined the phosphoglycerate kinase-1 (PGK-1) isozyme type of colonies originally grown from spleen cells of 5-FU-treated mice which had PGK-1 isozyme mosaicism. PGK assays of whole secondary colonies derived from one blast cell colony showed that they were either of type A or type B but not both. These results suggest that murine hemopoietic blast cell colonies are clonal.

Animals↗

Infertility due to growth arrest of ovarian follicles in Sl/Slt mice.

Sl, Sld, and Slt are mutant alleles at the steel locus. All Sl/Sld and most Sl/Slt female mice are infertile, but the cause of the infertility is different. Germ cells are absent in Sl/Sld ovaries but present in Sl/Slt ovaries. The infertility of Sl/Slt female mice was attributed to the growth arrest of ovarian follicles, and the mechanism was analyzed by producing aggregation chimeras between Sl/Slt and +/+ embryos. Sl/Slt oocytes were ovulated and fertilized in Sl/Slt----+/+ chimeras. We investigated the origin of granulosa cells in the growing follicles and that of granulosa-derived luteal cells in the chimeras by using the electrophoretic pattern of phosphoglycerate kinase-1 and the histochemical activity of beta-glucuronidase as markers. Granulosa cells of Sl/Slt genotype developed and constituted pregnant corpora lutea in Sl/Slt----+/+ chimeras. Therefore, the growth arrest of Sl/Slt ovarian follicles may not be due to an intrinsic defect in granulosa cells but may instead be due to an intrinsic defect in ovarian stromal cells. This suggests that normal stromal cells are essential for the development of ovarian follicles.

Alleles↗

Increase in collagen production with loss of androgen responsiveness in cultured androgen-responsive Shionogi carcinoma 115 cells.

The collagen production of androgen-responsive and -unresponsive Shionogi carcinoma 115 cells was investigated by culturing them in a medium with or without testosterone. Androgen-unresponsive cells were obtained by culturing a cloned androgen-responsive cell in a testosterone-free medium for 12 weeks. The collagen production of androgen-responsive cells slightly increased in the absence of testosterone, whereas testosterone did not affect the collagen production of androgen-unresponsive cells. Androgen-unresponsive cells produced 3-4 times more collagen than androgen-responsive cells. The major collagen produced by both androgen-responsive and - unresponsive cells migrated to the same position in sodium dodecylsulfate:polyacylamide gel electrophoresis. The present results indicate that the collagen production of androgen-responsive Shionogi carcinoma 115 cells increases with the loss of androgen responsiveness in culture.

Animals↗

Glycation of cataractous lens in non-diabetic senile subjects and in diabetic patients.

Early- and advanced-stage products in the Maillard reaction, glycation, were measured in patients with diabetic or senile cataracts. Early-stage products were measured by means of furosine, which is an acid-hydrolysis product derived from fructose-lysine. Advanced-stage products were measured by fluorometry using high-performance liquid chromatography. Furosine levels were high (listed in descending order) in capsule, cortex and nucleus in both diabetic and senile cataracts. The advanced-stage products were also high (listed in descending order) in nucleus, cortex and capsule in both diabetic and senile cataracts. These results suggest that advanced-stage products might accumulate in larger amounts in the nucleus and cortex than in the capsule, resulting in the formation of cataracts. The study also revealed that the Maillard reaction plays an important role in causing not only diabetic cataracts but also senile cataracts.

Aged↗

A study of the age-related acceleration of glycation of tissue proteins in rats.

The relationship between age-related glycation and a fluorescent product attributable to the advanced Maillard reaction was investigated in the aortas of rats between 4 and 120 weeks of age. The early-stage product of the Maillard reaction was measured using furosine (epsilon-N-(2-furoylmethyl)-L-lysine) as a marker. The advanced product was measured by fluorescence high-performance liquid chromatography. The level of furosine in the aorta increased with aging to reach a maximum value in rats of 50 to 70 weeks of age, and decreased in rats from 90 to 120 weeks of age. By contrast, the level of the putative advanced product reached a maximum in 90-week-old rats and remained at the maximum level in 120-week-old rats. The level of glycated hemoglobin showed no significant change in rats of more than 14 weeks of age. The advanced Maillard products may play an important role in the pathophysiology of aging arteries.

Aging↗

In vitro increase of histidine decarboxylase activity and release of histamine by peritoneal resident cells of mast cell-deficient W/Wv mice; possible involvement of macrophages.

When peritoneal resident cells (PRCs) of genetically mast cell-deficient WBB6F1-W/Wv mice were cultured in vitro for 5 h at 37 degrees C, their histidine decarboxylase [HDC, L-histidine carboxylase, E.C. 4.1.1.22] activity increased 10-fold. Since inhibitors for energy production and mRNA and protein syntheses inhibited this increase of HDC activity, it appeared to represent de novo synthesis of the enzyme, i.e., induction. This increase was followed by an increase in the amount of histamine in the culture medium of the cells, indicating that histamine synthesized by the induced HDC was not stored in the cells but was quickly released. Mast cells were not involved in the HDC induction, because the extents of HDC induction in PRCs of W/Wv and wild type +/+ mice were similar. The removal of T cells with anti-Thy-1,2 antibody and complement from the PRCs did not affect the HDC induction, but the removal of phagocytes decreased the induction to one-tenth in spite of a 2-fold increase in the proportion of B cells in the PRCs. After separation of the PRCs into adherent and non-adherent fractions, the increase in HDC activity was found to be associated with the adherent fraction that was mostly positive to esterase staining. These results suggest that HDC was induced in peritoneal macrophages.

Animals↗

Fast and easy detection of mouse sex chimeras using electrophoretic polymorphism of phosphoglycerate kinase-1, an X chromosome-linked enzyme.

About half of the chimeras produced by aggregation of two mouse embryos are sex chimeras composed of both XX and XY cells. We developed a fast and easy method to identify sex chimeras by using electrophoretic bimorphism of an X-linked enzyme, phosphoglycerate kinase-1 (PGK-1), as a marker. When embryos resulting from the crossing of a Pgk-1b/Pgk-1b female and a Pgk-1a/Y male are aggregated, the genotype of sex chimeras is Pgk-1b/Pgk-1a----Pgk-1b/Y. Most of these were identifiable from the PGK-1 electrophoretic pattern of blood cells (i.e., AB type) and the appearance of genitalia (male type or apparently abnormal). Genotypes of functional sperm in the testes of the male-type sex chimeras were also identifiable from the PGK-1 electrophoretic pattern of progenies. Examination of gonads of the sex chimeras revealed that a considerable proportion was hermaphorditic. With this method, reasonable numbers of male-type sex chimeras and hermaphrodites may be selected and used as material for investigating sexual differentiation.

Animals↗