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Biomedical subjects

J Fujimoto

Publications and source records attributed to J Fujimoto.

At least 199 records · Page 11Linked to original sources

Galactosemic neuropathy in transgenic mice for human aldose reductase.

We studied the functional consequences of an enhanced polyol pathway activity, elicited with galactose feeding, on the peripheral nerve of transgenic mice expressing human aldose reductase. Nontransgenic littermate mice were used as controls. With a quantitative immunoassay, the expression level of human aldose reductase in the sciatic nerve was 791 +/- 44 ng/mg protein (mean +/- SE), about 25% of that in human sural nerve. When the transgenic mice were fed food containing 30% galactose, significant levels of galactitol accumulated in the sciatic nerve. Galactose feeding of nontransgenic littermate mice led to a 10-fold lower accumulation of galactitol. Galactose feeding for 16 weeks caused a significant and progressive decrease in motor nerve conduction velocity in transgenic mice to 80% of the level of galactose-fed littermate mice, which was not significantly different from that of galactose-free littermate mice. A morphometric analysis of sciatic nerve detected > 10% reduction of mean myelinated fiber size but no alterations of myelinated fiber density in galactose-fed transgenic mice compared with other groups. The functional and structural changes that develop in galactose-fed transgenic mice are similar to those previously reported in diabetic animals. The results of these studies suggest that transgenic mice expressing human aldose reductase may be a useful model not only for defining the role of the polyol pathway in diabetic neuropathy but also for identifying and characterizing effective inhibitors specific for human aldose reductase.

Aldehyde Reductase↗

Expression of estrogen and progesterone receptors and their mRNAs in ovarian endometriosis.

To discover the molecular mechanisms of estrogen-induced growth in ovarian endometriosis, the expression of estrogen and progesterone receptors and their mRNAs was investigated. The expression of estrogen and progesterone receptors and their mRNAs was significantly (p < 0.01) lower in endometriotic endometria than in normal endometria. The ratio of estrogen receptors: progesterone receptors was significantly (p < 0.01) higher in the endometriotic tissues than in normal proliferative- and secretory-phase endometria, as was the ratio of their respective mRNAs. These findings suggest that the absolute and relatively reduced number of estrogen receptors in ovarian endometriosis might cause the loss of control of estrogenic action, and that, furthermore, the relatively increased number of progesterone receptors might lead to an estrogen-dominant milieu, assisting in the development and growth of the ovarian endometriosis.

Adult↗

Alteration of E-cadherin, alpha- and beta-catenin mRNA expression in human uterine endometrium during the menstrual cycle.

To study the biological functions of the adherens junction in uterine endometrium at the reproductive phase, we measured the levels of E-cadherin, alpha- and beta-catenin mRNA in endometrium with or without an intramuscular injection of estradiol dipropionate in patients 5 days before hysterectomy. The levels of E-cadherin, alpha- and beta-catenin mRNA in endometria of the proliferative phase were significantly less than those of the secretory phase. The treatment with estradiol dipropionate significantly reduced the levels of alpha- and beta-catenin mRNA in endometria of the secretory phase, and tended to reduce that of E-cadherin mRNA. In conclusion, the functions of the adherens junction, which regulates the adhesive capacity of endometrial epithelial cells, are considered to be activated after ovulation, and at least in part associated with nidation.

Adult↗

Expression of basic fibroblast growth factor and its mRNA in uterine endometrium during the menstrual cycle.

To learn more about reproductive neovascularization after menstrual regression of the microvessels in uterine endometrium, the regulation of basic fibroblast growth factor (FGF) and its mRNA expression in the endometria of the menstrual cycle with or without treatment with estradiol dipropionate were determined by enzyme-linked immunosorbent assay (ELISA), and reverse transcription-polymerase chain reaction-Southern blot (RT-PCR-SB), respectively. The endometrial basic FGF level was increased in advance of proliferation, but decreased at the secretory phase. The expression of basic FGF mRNA in endometria during the proliferative phase did not alter, but it was decreased at the secretory phase. Estradiol dipropionate increased the expression of basic FGF and its mRNA in endometria of the secretory phase. Therefore, the constant high level of basic FGF mRNA might contribute to the synthesis and accumulation of basic FGF up to the late proliferative phase, and the accumulated basic FGF might be rapidly consumed in the secretory phase. Furthermore, basic FGF during the proliferative phase could plausibly contribute to capillary neovascularization, which could be regulated by sex steroids.

Adult↗

Estrogen induces expression of c-fos and c-jun via activation of protein kinase C in an endometrial cancer cell line and fibroblasts derived from human uterine endometrium.

Endometrial fibroblasts derived from uterine endometrium as controls and endometrial cancer cell lines (Ishikawa and HHUA cells) were analyzed for the induction manner of c-fos and c-jun transcripts in endometrial cancers, some of which are estrogen-dependent in growth. Estrogen increased c-fos expression and protein kinase C (PKC) activity in fibroblasts and Ishikawa cells, but not in HHUA cells. Progesterone diminished c-fos and c-jun expression and PKC activity induced by estradiol in the fibroblasts, but not in Ishikawa cells, which persistently overexpressed c-fos and c-jun. In these cells, 12-0-tetra-decanoylphorbol-13-acetate (TPA) increased c-fos and c-jun expression as did estradiol. Pretreatment with 1-(5-isoquinolinesulfonyl)-2-methylpiperazine dihydrochloride (H-7) abolished estrogen-inducible over-expression of c-fos and c-jun. The combination of both estradiol and TPA at maximum effective concentration exerted no additive and synergistic effect on induction of c-fos and c-jun expression. In conclusion, persistent activation of PKC might lead to overexpression of c-fos and c-jun in some endometrial cancers with an estrogen predominant milieu, which might be, at least in part, associated with the transformation or growth potential.

Adult↗

Lack of CD54 expression and mutation of p53 gene relate to the prognosis of childhood Burkitt's lymphoma.

Expression of the intercellular adhesion molecule-1 (CD54) as well as the mutations of p53 gene were studied in childhood Burkitt's lymphoma (BL). Expression of CD54 was identified in 6 of 15 fresh BL cases. Mutations of p53 gene, analyzed by polymerase chain reaction-single stranded chain polymorphism followed by sequencing, were found in 5 of 14 cases examined. Interestingly, all the cases with p53 mutation were CD54 negative. This high frequency of p53 mutation in the CD54 negative group prompted us to analyze the clinical features of these cases. Six of 15 cases died within 21 months after initiation of therapy and five of these were CD54 negative. In addition, four of these had p53 mutation. These results suggest that the lack of CD54 by BL cells may provide the background for the mutation of p53 gene to occur which could result in the transformation to a more aggressive phenotype.

Adolescent↗

Elevation of lymphocyte and hematopoietic stem cell numbers in mice transgenic for human granulocyte CSF.

Transgenic mice expressing human granulocyte colony stimulating factor (hG-CSF) were bred to establish an experimental model for studying the biologic function of hG-CSF. The mice produced approximately 1000 pg/ml of hG-CSF in sera and expressed hG-CSF mRNA in all of the tissues examined. Granulocytosis and elevation of hematopoietic precursor number were observed in hematopoietic tissues as expected, but lymphocytosis with 5-fold increase in peripheral blood and 2-fold increase in spleen was also evident. Hematopoietic stem cells capable of reconstituting lethally irradiated recipient mice were abundant in the circulation of these transgenic mice. No disadvantageous tissue damage was observed when various organs were analyzed. As shown in this study, G-CSF has a stimulating effect on lymphopoiesis when it is expressed in a certain condition. The lymphocytosis, as well as the high level of hematopoietic stem cell mobilization into circulation, indicates a wider range of potential G-CSF activity than expected. The mice transgenic for hG-CSF described herein will contribute greatly to the understanding of the regulatory mechanism in hematopoiesis.

Animals↗

[Endocrinological contribution for invasion and metastasis in gynecological cancers].

The development and growth of gynecological cancers are related to steroid hormone actions. Alternatively, this prompts us to study biological contribution of sex steroids for invasion and metastasis in gynecological cancers. The first step of metastasis is the detachment of tumor cells. The adherens junction forms a main cell-to-cell junctional complex, mainly consisting of E-cadherin, alpha- and beta-catenins, etc. Estrogen suppressed the expression of their mRNAs, and the adhesive function of cells via adherens junction in endometrial cancer cells. Progestin and danazol reversed the estrogen-induced suppression. Estrogen enhanced invasiveness of endometrial cancer cells though the reconstituted basement membrane and interstitium using the Boyden chamber. Progestin reduced the estrogen-induced invasiveness. The final step of metastasis is tumor-derived neovascularization for growth of metastatic cancer cells. Progestin inhibited basic fibroblast growth factor (FGF) activity, which mainly contribute to tumor-derived neovascularization, regardless of growth-inhibition in some endometrial cancers. Progestin inhibits basic FGF in well-differentiated (WD) endometrial cancer cells, but not in poorly differentiated (PD) endometrial cancer cells. TNP470, a inhibitor of vessel endothelial proliferation, inhibited directly basic FGF in the PD. Therefore, the adequate combination therapy of progestin and TNP470 could efficiently inhibit angiogenic potential of heterologous endometrial cancers. The ratio of estrogen receptor exon 5 splicing variant (ER delta E5) to wild type-ER mRNA expression increased in some metastatic lesions of cancers. The dominant expression of ER delta E5 mRNA might be related to metastatic potential of gynecological cancers. Progesterone receptor from A (PR-A), initiated from in-frame AUG present in the PR from B (PR-B) mRNA, lacks the N-terminal 164 amino acids of PR-B, and acts as a progestin-dependent, trans-dominant repressor of PR-B function and other steroid receptor function. The expression of PR-B mRNA was dominantly expressed in all metastatic gynecological cancers given. This might be related to metastatic potential of gynecological cancers. To know tumorigenic potential of sex steroid receptors, ER, PR-A and PR-B genes were transfected to NIH3T3 cells. Transfected cells with PR-A gene alone formed a few colonies in double soft agar. On the other hand, the cells with PR-B and ER genes under the presence of estradiol formed plenty of colonies. Therefore, overexpression of PR-B under the absence of PR-A might be related to tumorigenic potential. In conclusion, estrogen could enhance some steps of metastasis in endometrial cancers, and progestin could inhibit the estrogen-induced events, regardless of growth-inhibition. Relative over-expression of ER exon 5 splicing variant, and PR-B might contribute to metastatic potential in gynecological cancers.

Estrogens↗

Novel screening technique for dissemination potential of ovarian cancer cells to peritoneum.

Invasiveness to the peritoneum reconstituted with a mesothelial cell line and Engelbreth-Holm-Swam extract by metastatic cancer cell lines of the uterine cervix, endometrium, and ovary was always higher than that by primary cell lines. The invasiveness by metastatic ovarian cancer cell lines was significantly stronger than that by the other gynecological primary or metastatic cell lines. In the clinical ovarian cancers studied, cancer cells from the metastatic lesion were more invasive than those from the primary lesion. This suggests that metastatic ovarian cancer cells might inherently possess strong invasiveness to the peritoneum. The assay system used in the present study is useful in investigating the clinical behavior and basic biology of peritoneal dissemination.

Adult↗

Clinicopathologic spectrum of resected extraductal mass-forming intrahepatic cholangiocarcinoma.

BACKGROUND: The mode of tumor growth of intrahepatic cholangiocarcinoma (CC) varies considerably from patient to patient. This study describes the clinicopathologic variety of the extraductal mass-forming type of CC. METHODS: Patients with CC characterized by an extraductal mass (n = 26) who underwent hepatectomy from 1976 through 1992 were clinicopathologically classified into three types: Type I (n = 7), no biliary stricture; Type II (n = 13), biliary stricture without jaundice; and Type III (n = 6), biliary stricture with jaundice. RESULTS: Type I included three patients with microductular-trabecular arrangement and behavior reminiscent of hepatocellular carcinoma (high association with chronic liver disease, mild positivity for alpha-fetoprotein [AFP], no lymph node metastasis, but frequent intrahepatic metastasis), in contrast to the other typical cholangiocarcinoma. Hepatolithiasis was associated only with Type II CC: The serum positivity for AFP and carcinoembryonic antigen was much higher in Type I CC, whereas positivity of CA 19-9 was highest in Type III. Involvement of the portal vein, hepatic artery, or hepatic duct was most frequent in Type III CC, which necessitated resection of the extrahepatic bile duct and hepatectomy. CONCLUSION: The clinicopathologic behavior of intrahepatic CC differs considerably according to the presence or absence of stricture of the biliary tree. Thus, CC without biliary stricture behaves more like hepatocellular carcinoma, whereas CC with biliary stricture is more like hilar or extrahepatic bile duct carcinoma.

Adult↗

Overexpressions of c-fos/jun mRNA and their oncoproteins (Fos/Jun) in the mouse uterus treated with three natural estrogens.

To further understand hormonal carcinogenesis of natural estrogens (estrone, 17 beta-estradiol (E2) and estriol), we determined the expressions of c-fos/jun mRNA, and their oncoproteins (Fos/Jun) with intracellular localization in the uterus of ovarectomized mice treated with these estrogens. Mid-term chronic, as well as short-term assays were examined. Of three estrogens examined, mid-term chronic E2-treatment significantly increased the expression of c-fos/jun mRNA, and their oncoproteins (Fos/Jun). These were most prominently expressed in glandular cells of E2-treated mouse endometrium. Therefore, mid-term chronic E2-treatment might partially induce glandular cell transformation of uterine endometrium via overexpression of Fos/Jun.

Animals↗

Increase of solubility of foreign proteins in Escherichia coli by coproduction of the bacterial thioredoxin.

Eukaryotic proteins are frequently produced in Escherichia coli as insoluble aggregates. This is one of the barriers to studies of macromolecular structure. We have examined the effect of coproduction of the E. coli thioredoxin (Trx) or E. coli chaperones GroESL on the solubility of various foreign proteins. The solubilities of all eight vertebrate proteins examined including transcription factors and kinases were increased dramatically by coproduction of Trx. Overproduction of E. coli chaperones GroESL increased the solubilities of four out of eight proteins examined. Although the tyrosine kinase Lck that was produced as an insoluble form and solubilized by urea treatment had a very low autophosphorylating activity, Lck produced in soluble form by coproduction of Trx had an efficient activity. These results suggest that the proteins produced in soluble form by coproduction of Trx have the native protein conformation. The mechanism by which coproduction of Trx increases the solubility of the foreign proteins is discussed.

Animals↗

Reduced cell motility and enhanced focal adhesion contact formation in cells from FAK-deficient mice.

The intracellular protein tyrosine kinase FAK (focal adhesion kinase) was originally identified gy its high level of tyrosine phosphorylation in v-src-transformed cells. FAK is also highly phosphorylated during early development. In cultured cells it is localized to focal adhesion contacts and becomes phosphorylated and activated in response to integrin-mediated binding of cells to the extracellular matrix, suggesting an important role in cell adhesion and/or migration. We have generated FAK-deficient mice by gene targeting to examine the role of FAK during development. Mutant embryos displayed a general defect of mesoderm development, and cells from these embryos had reduced mobility in vitro. Surprisingly, the number of focal adhesions was increased in FAK-deficient cells, suggesting that FAK may be involved in the turnover of focal adhesion contacts during cell migration.

Animals↗

Possible role of protein kinase C in the regulation of intracellular stability of focal adhesion kinase in mouse 3T3 cells.

Effects of various types of protein kinase inhibitor on the adhesion and spreading of BALB/c mouse 3T3 cells and on the phosphorylation and stability of focal adhesion kinase (FAK) in the cells were studied. Inhibitors of protein tyrosine kinases, methyl 2,5-dihydroxycinnamate and herbimycin A, inhibited tyrosine-phosphorylation of FAK and the adhesion of 3T3 cells to fibronectin. Among inhibitors of serine/threonine kinases tested, calphostin C, a specific inhibitor of protein kinase C, inhibited cell spreading rather than cell adhesion, and it induced the decrease of intracellular FAK within 30 min. Inhibitors of tyrosine kinase, A kinase, G kinase, and myosin light chain kinase did not induce such a rapid and specific decrease of FAK. When calphostin C (20 microM) was added to sub-confluent monolayer cultures, serine-phosphorylation of FAK was inhibited by 67% within 2 h, and decrease in the amount of FAK and rounding up of the cells began after 4 h. Label-chase experiments indicated that about 60% of 35S-labeled FAK degraded within 1-2 h after addition of calphostin C to monolayer cultures. These results indicated that serine-phosphorylation of FAK induced by protein kinase C was important in the regulation of metabolic stability of FAK.

3T3 Cells↗

Anaplastic large cell lymphomas expressing the novel chimeric protein p80NPM/ALK: a distinct clinicopathologic entity.

Anaplastic large cell lymphoma (ALCL) is a subtype of non-Hodgkin's lymphoma characterized by the CD30+ large neoplastic cells and sometimes carries a t(2;5)(p23;q35). Recently, we found a novel hyperphosphorylated 80-kD protein tyrosine kinase, p80, in ALCLs with t(2;5). Subsequent cDNA cloning showed p80 to be a fusion protein of two genes, the novel tyrosine kinase gene and the nucleophosmin gene, in accordance with the sequence of the NPM/ALK gene (Morris et al, Science 263:1281, 1994). Meanwhile, the clinicopathologic features of p80-carrying ALCLs have remained unclear. Paraffin sections of 105 cases of ALCL were immunostained using anti-p80 antibody, and 30 of them were shown to express p80. Clinicopathologic comparison between p80-positive and -negative ALCLs showed that p80-positive cases occurred in a far younger patient age group (16.2 +/- 12.9 years; p80-negative cases, 51.0 +/- 22.3 years; P < .0001) and the patients showed a far better 5-year survival rate (79.8%; p80-negative group, 32.9%; P < .01). These data showed that p80-positive ALCL is a distinct entity both clinically and pathogenetically and should be differentiated from p80-negative ALCL.

Adolescent↗

Focal adhesion kinase is not essential for in vitro and in vivo differentiation of ES cells.

Focal adhesion kinase, FAK, is a unique protein tyrosine kinase found in cellular focal adhesions. It is widely expressed and highly phosphorylated during embryogenesis. To examine the function of FAK in cell differentiation, we made FAK-deficient embryonic stem (ES) cells by homologous recombination. However, FAK-deficiency did not interfere with differentiation of the ES cells into cells of three germ layers when implanted subcutaneously into nude mice or when treated with retinoic acid in vitro, nor was there any evidence of defects in hematopoiesis in vitro.

Animals↗

Acute hepatitis in rats expressing human hepatitis B virus transgenes.

The molecular mechanisms responsible for hepatocyte death and the events leading to viral clearance in hepatitis B virus (HBV) infections are not well understood. Elucidation of the mechanisms involved have been complicated by the difficulty of infecting human hepatocytes with HBV in vitro and the lack of an appropriate animal model. We report an animal model of human HBV infection by in vivo transfection. We have directly introduced a replication-competent, cloned HBV construct into rat liver by using a membrane fusion-promoting cationic lipid. HBV mRNA and 3.2-kb HBV DNA were expressed in the liver by this in vivo transfection method. In the majority of rats, HBV virions and hepatitis B e antigen were found in the blood 3-7 days after transfection, after which antibody to the e antigen appeared. Two to three weeks after the transfection, glutamic-pyruvic transaminase levels were elevated in serum, hepatocyte death and lymphocyte infiltration were observed in the vicinity of the portal vein of liver, and HBV virions were no longer detected in the serum. Thus, transfection of HBV into rats resulted in histological and serological changes comparable to HBV-induced acute hepatitis in humans. In contrast, no hepatocellular injury was observed in T-lymphocyte-deficient nude rats transfected with the same HBV construct, and viremia was substantially prolonged, providing direct evidence that T lymphocytes play an essential role in liver cell injury and in the clearance of HBV. This rat hepatitis model will be useful for studying pathogenesis of HBV infection.

Acute Disease↗

Acute onset of diabetic pathological changes in transgenic mice with human aldose reductase cDNA.

To investigate the role of human aldose reductase (hAR) in the pathogenesis of diabetic complications, we generated transgenic mice carrying hAR cDNA driven by the murine MHC class I molecule promoter (hAR-Tg). Northern and Western blot analyses and immunoassay of hAR revealed that both hAR mRNA and the protein were expressed in all tissues tested. Thrombosis in renal vessels and fibrinous deposits in Bowman's capsule were observed in 6-week-old hAR-Tg mice fed a normal diet. Ingestion of a 30% glucose diet for 5 days caused sorbitol concentrations in the liver, kidney, and muscle of hAR-Tg mice to be elevated significantly. Seven-week-old hAR-Tg mice fed a 20% galactose diet for 7 days developed cataracts and occlusion of the retinochoroidal vessels, in addition to pathological changes in the kidney. Despite an elevated aldose reductase level in hAR-Tg mice and their intake of an aldose diet, no histopathological changes were found in other tissues, including the brain, lungs, heart, thymus, spleen, intestine, liver, muscle, spinal cord, or sciatic nerve. Results suggest that target organs of diabetic complications, such as the kidney, lens, and retina are sensitive to damage associated with a high level of AR expression, but other organs are not; the susceptibility of each organ to diabetic complications is determined by not only hAR but also other factors.

Aldehyde Reductase↗