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Biomedical subjects

Y Tokugawa

Publications and source records attributed to Y Tokugawa.

34 records · Page 2Linked to original sources

Molecular characterization of a cloned human oxytocin receptor.

We describe here the binding and functional properties of a cloned human oxytocin receptor (OTR). We established a transient OTR expression system on COS-1 cells, which do not express vasopressin receptors. With the transfected cells and [3H]oxytocin, the dissociation constant (Kd) of OTR to oxytocin was 6.0 +/- 1.1 nmol/l; the binding properties of several oxytocin-related peptides were also examined. The functional properties of OTR were determined by an electrophysiological method, using a Xenopus laevis oocyte injected with in vitro transcribed OTR mRNA. These two methods showed that [Phe2,Orn8]vasotocin, a vasopressin agonist, was an OTR antagonist. A combination of these methods using cloned OTR cDNA is a novel and effective method for the investigation of oxytocin-related ligands.

Animals↗

Malignant cell-specific gelatinase activity in human endometrial carcinoma.

BACKGROUND: The protease activity leading to degradation of the extracellular matrix was compared between human endometrial cancer and normal uterine endometrium. METHODS: Conditioned medium from tumor cells and normal endometrial cells was subjected to electrophoresis on sodium dodecyl sulfate (SDS)-polyacrylamide gel containing gelatin as a substrate. After electrophoresis, the gel was stained with Coomassie blue, and then the enzyme activity, expressed as the zone of dye clearing, was analyzed by densitometry. RESULTS: Densitometric analysis showed that all the endometrial cancers expressed a very high molecular weight enzyme activity (Mr 220,000), which was not detected in medium from normal endometrial cells. The analysis also showed that in endometrial cancer the activity of a Mr 92,000 enzyme was always superior to that of a Mr 64,000 enzyme, which was in contrast to the situation for normal endometrium. CONCLUSIONS: These results indicate that the expression of Mr 220,000 enzyme activity and the higher activity of the Mr 92,000 enzyme than the Mr 64,000 enzyme are involved in the malignant phenotype of native endometrial cancer.

Adenocarcinoma↗

Estimation by an electrophysiological method of the expression of oxytocin receptor mRNA in human myometrium during pregnancy.

In order to evaluate the changes in uterine oxytocin receptor-specific mRNA during pregnancy, receptor expression in Xenopus oocytes are examined electrophysiologically following microinjection of mRNA from human uterus. In voltage-clamped oocytes injected with term myometrial mRNA, oxytocin elicited an inward current response. The amplitude of the oxytocin-induced current increased with increasing dose of oxytocin, but no current was elicited following stimulation with vasopressin. The oxytocin-induced current was completely eliminated as a result of pretreatment with a specific oxytocin antagonist. 21 of 27 oocytes injected with term myometrial mRNA showed a large amplitude (77.0 +/- 16.1 nA) reaction to oxytocin. In comparison, only 3 of 13 oocytes injected with early gestational myometrial mRNA exhibited a small amplitude (4.6 +/- 1.4 nA) reaction to oxytocin. No oxytocin response was observed in oocytes injected with non-pregnant myometrial mRNA. These results indicate that the striking increment in oxytocin sensitivity in term uterus depends on the increase in mRNA encoding oxytocin receptors.

Animals↗

Functional expression of human myometrial endothelin receptors in Xenopus laevis oocytes.

We demonstrate the existence of functional endothelin receptors in human uterine myometrium using the Xenopus oocyte expression system. Fifty nanograms of poly(A)+RNA from myometrium was injected into Xenopus laevis oocytes and incubated for 70-80 h. The membrane potential of the oocyte was clamped at -60 mV and membrane current was measured during and after endothelin stimulation. Endothelin-1 elicited a large inward membrane current in the oocytes injected with poly(A)+RNA; endothelin-2 elicited a small current; while endothelin-3 did not induce any membrane current. These results indicate the existence of messenger RNA encoding functional endothelin-1 receptors in human uterine myometrium.

Animals↗

The biological effects of macrophage-colony-stimulating factor induced by progestin on growth and differentiation of endometrial adenocarcinoma cells.

Progestins have biological effects of regression and differentiation on human endometrial adenocarcinoma. We investigated the effects of progestin on the induction of macrophage-colony-stimulating factor (M-CSF) and its receptor messenger RNAs in the human endometrial adenocarcinoma cell line Ishikawa which has receptors for both estrogen and progesterone. Poly(A)+RNA extracted from Ishikawa cells cultured with or without synthetic progestin R5020 was subjected to Northern blot hybridization using M-CSF and c-fms cDNA probes. The expression of M-CSF mRNA in Ishikawa cells increased about 2.3 times following treatment with R5020 at 10(-7) M. Induction of M-CSF mRNA by R5020 was antagonized by anti-progestin RU486 in a dose-dependent manner. However, c-fms mRNA, coding the M-CSF receptor, was expressed constitutively in Ishikawa cells and its expression was not affected by hormonal treatment. We further examined the biological effects of M-CSF on endometrial cancer cells. Colony formation of Ishikawa cells in soft agar, which represents anchorage-independent cell growth, was inhibited by M-CSF treatment. On the other hand, accumulation of glycogen granules in cytoplasm detected by periodicacid-Schiff staining was observed in Ishikawa cells treated with M-CSF. These results indicate that M-CSF, whose gene expression was enhanced by progestin, suppressed growth and induced differentiation of endometrial adenocarcinoma cells. These effects of M-CSF on endometrial cancer cells are similar to those of progestins, so the effects of progestins on these cells are, at least in part, probably mediated by M-CSF in an autocrine or paracrine manner.

Adenocarcinoma↗

Application of gene amplification by polymerase chain reaction to genetic analysis of molar mitochondrial DNA: the detection of anuclear empty ovum as the cause of complete mole.

To investigate the pathogenesis of complete hydatidiform mole (complete mole), we employed a newly developed gene amplification method by polymerase chain reaction (PCR) for the restriction fragment length polymorphism (RFLPs) analysis of extranuclear DNA (mitochondrial DNA) of complete mole. Whole cellular DNA was extracted from six molar tissues and from peripheral blood mononuclear cells of parents. Two hyperpolymorphic regions of mitochondrial DNA, a 1.5-kb-long fragment and a 1.9-kb-long fragment, were selectively amplified from the extracted DNA by the PCR method. The amplification products amounted to over 10 micrograms after 30 cycles of PCR. The PCR products were digested with endonucleases (HaeIII, HinfI, AluI, and TaqI) and then electrophoresed on agarose gel. The electrophoretic pattern of digested DNA showed that the RFLPs of molar mitochondrial DNA coincided with those of the patient, indicating that the mitochondrial DNA of complete mole was inherited from the ovum. As it has been identified that the intranuclear DNA of complete mole is transmitted only from the spermatozoa, our results verify that complete mole results from the fertilization of an anuclear "empty" ovum with normal sperm at the molecular level.

Base Sequence↗

The gene expressions of macrophage colony-stimulating factor (MCSF) and MCSF receptor in the human myometrium during pregnancy: regulation by sex steroid hormones.

We investigated the biological effect of sex-steroid hormones, secreted from the corpus luteum and placenta, on the induction of mRNA encoding macrophage colony-stimulating factor (MCSF) and c-fms proto-oncogene (MCSF receptor) in the human uterine myometrium. Poly(A)+RNA was extracted from the myometrium of pregnant and non-pregnant uterine myometrium and then Northern blot analysis was performed on poly(A)+RNA. The myometrium of non-pregnant women expressed neither mRNA of macrophage colony-stimulating factor (MCSF) nor any transcript related to the c-fms proto-oncogene. On the other hand the myometrium of pregnant women expressed MCSF mRNA (4.7 kb) and two kinds of transcript related to the c-fms proto-oncogene (3.9 and 1.3 kb). The mRNAs of both MCSF and c-fms proto-oncogene were induced in the uterine myometrium of non-pregnant women under pseudopregnant therapy of mestranol and norethindrone. These results indicate that sex steroid hormone secreted from the corpus luteum of pregnancy and/or placenta may be deeply involved in the hypertrophic change of uterus during pregnancy by inducing MCSF and MCSF receptor (c-fms proto-oncogene protein product) in the myometrium.

Corpus Luteum↗

Perinatal infection of human T-lymphotropic virus type I, the etiologic virus of adult T-cell leukemia/lymphoma. DNA amplification of specific human T-lymphotropic virus type I sequences.

A gene amplification technique, polymerase chain reaction, was used to detect human T-lymphotropic virus type I (HTLV-I), the etiologic agent of adult T-cell leukemia/lymphoma, in mononuclear cells in peripheral blood and breast milk of ten HTLV-I carrier gravida. The DNA in umbilical cord blood mononuclear cells of the neonates born to the HTLV-I carrier gravida were also amplified and examined for the possibility of HTLV-I infection via placenta during pregnancy. The HTLV-I sequences were detected both in the peripheral blood and milk of all ten carrier gravida by Southern blot analysis of amplified DNA. However, HTLV-I proviral DNA could not be detected in the cord blood of the carriers' neonates, indicating that transplacental infection of HTLV-I should be rare and that postpartum infection via breast milk is a likely major perinatal transmission route.

Antibodies, Neoplasm↗

Studies on the pathogenesis of choriocarcinoma by analysis of restriction fragment length polymorphisms.

The association of complete hydatidiform mole with choriocarcinoma has long been recognized, but it is unknown whether the pathogenesis of the two are identical. We investigated the pathogenesis of these trophoblastic tumors by analyzing restriction fragment length polymorphisms using a minisatellite DNA probe to choriocarcinoma, the complete mole, and normal trophoblasts as well as the parental cells. The polymorphic fragments of the complete mole were all transmitted from the paternal DNA, but some polymorphic fragments of the paternal DNA were not recognized in the complete mole. This confirms at a molecular level the androgenetic origin of the complete mole. In some cases of choriocarcinoma, the pattern of inheritance of restriction fragment length polymorphisms was the same as that in the complete mole, whereas in others all the polymorphic fragments in tumor tissues were identical to those in the host DNA. These results suggest that the pathogenesis of choriocarcinoma varies, being completely different from that of the complete hydatidiform mole in some cases.

Choriocarcinoma↗

Differential diagnosis between complete mole and hydropic abortus by deoxyribonucleic acid fingerprints.

We used a new method of deoxyribonucleic acid fingerprint analysis to obtain the differential diagnosis between complete mole and hydropic abortus. This method with a deoxyribonucleic acid minisatellite probe requires only a small amount of tissue sample and peripheral blood, and presents individual specific restriction fragment length polymorphisms (deoxyribonucleic acid "fingerprints") by simultaneous detection of many hypervariable regions (minisatellite regions) widely dispersed in the human genome. Southern blot hybridization showed that in cases of complete mole, all polymorphic fragments were exclusively inherited from the father. Some of the polymorphic bands of paternal deoxyribonucleic acid were not observed in molar deoxyribonucleic acid. However, in the hydropic abortus, the polymorphic fragments could be traced back to its parent. These results indicate that deoxyribonucleic acid fingerprints could distinguish the abnormal fertilization of complete mole (androgenesis) from the normal fertilization of hydropic abortus by identifying the difference in genetic variations between complete mole and hydropic abortus at the deoxyribonucleic acid level.

Blotting, Southern↗

Expression of the corticotropin-releasing hormone (CRH) gene in human placenta and amniotic membrane.

Immunoreactive corticotropin-releasing hormone (IR-CRH) in maternal plasma increases progressively during pregnancy and decreases rapidly after delivery, suggesting that IR-CRH is produced in the placenta. We studied the expression of the CRH gene in developing human chorionic tissue, the amniotic membrane, the uterine myometrium and a fresh surgical specimen of hydatidiform mole by Northern blot analysis. Our results were as follows: (1) CRH mRNA was demonstrated in the placenta in the third trimester and at term, but under detectable level in the first and second trimesters. (2) CRH mRNA expression was observed in the amniotic membrane, but its expression in the myometrium in normal pregnancy was under detectable level at term. (3) CRH mRNA was also under detectable level in trophoblasts of a hydatidiform mole. These results suggest that the sources of the increased level of IR-CRH in human plasma and amniotic fluid during pregnancy are the placenta and amniotic membrane, and that gene expression of placental CRH increases during pregnancy.

Amnion↗

Site-specific mutagenesis of human chorionic gonadotrophin (hCG)-beta subunit: influence of mutation on hCG production.

The heterodimeric glycoprotein hormones, human chorionic gonadotrophin (hCG), LH, TSH and FSH, consist of two non-covalently linked subunits, the alpha and beta subunits. The beta subunit is specific for each hormone and is responsible for the biological specificity, but the beta subunits of different hormones show some degree of structural homology. The CAGY (cysteine-alanine-glycine-tyrosine) region is one of the amino acid sequences that is homologous in different beta subunits and is highly conserved between species. In the present study, site-specific in-vitro mutagenesis was used to change three individual nucleotides in the centre of the CAGY region of the hCG-beta subunit, and the effects of these mutations on hCG production was determined by in-vitro transcription and then translation in Xenopus laevis oocytes. The results indicate that the CAGY region, particularly the glycine residue at position 36 in the beta subunit, is essential for the production of hCG. This finding is consistent with previous studies showing that this region is necessary for the biological activity of human TSH.

Amino Acid Sequence↗

Steroid hormones induce macrophage colony-stimulating factor (MCSF) and MCSF receptor mRNAs in the human endometrium.

We investigated the biological effects of sex-steroid hormones, secreted from the corpus luteum and placenta, on the induction of mRNAs encoding macrophage colony-stimulating factor (MCSF) and c-fms proto-oncogene (MCSF receptor) in human endometrium. RNA was extracted from the placenta and endometrium of both pregnant and non-pregnant women, and Northern blot analysis was performed on poly(A)+ RNA using MCSF or c-fms proto-oncogene cDNA as the probe. Results showed: (1) that MCSF mRNA was expressed in the placenta and endometrium of the pregnant uterus, (2) that c-fms proto-oncogene mRNA was also expressed in the placenta and endometrium of the pregnant uterus, and (3) that exogenous sex-steroid hormones could induce the expression of MCSF and c-fms proto-oncogene mRNAs in the endometrium of non-pregnant women. These results indicate that sex-steroid hormones secreted by the corpus luteum and/or placenta influence endometrial and placental growth and differentiation via a mechanism of action involving local production of MCSF and its receptor.

Corpus Luteum↗

Vertical transmission of human T-cell leukemia virus type I (HTLV-I): detection of proviral DNA in HTLV-I carrier gravida.

The seroprevalence rate of human T-cell leukemia virus type I (HTLV-I) in pregnant women in the Osaka district was determined by enzyme-linked immunosorbent assay and Western blot analysis. Twenty-one (1.0%) of 2192 samples tested were positive for both assays and the seropositive parturients were found to be integrated with HTLV-I proviral DNA in their mononuclear cells by a DNA dot blot hybridization assay using HTLV-I DNA probe or by a selective DNA amplification technique using the polymerase chain reaction (PCR). On the other hand, proviral DNA was not detected in cord blood of the neonates born to the carrier mothers, indicating that transplacental infection of HTLV-I during pregnancy could be excluded. The results support the hypothesis that postpartum infection via breast milk plays a significant role among the possible perinatal transmission routes.

Carrier State↗

A new approach using DNA fingerprinting for the determination of androgenesis as a cause of hydatidiform mole.

A new method of DNA analysis has been used for the determination of androgenesis as a cause of complete hydatidiform mole. This method, using a minisatellite core probe, requires only a small amount of DNA and detects the restriction fragment length polymorphisms (RFLPs) due to allelic differences in the number of tandem repeats containing the core sequence. Southern blot hybridization showed an individual-specific DNA fingerprint, and each polymorphic band in molar tissues could be identified as being of paternal, but not maternal, origin. Some polymorphic bands of paternal DNA were not observed in molar tissues, indicating that endoreduplication of a normal haploid sperm or fertilization by dispermy to an anuclear oocyte with no effective genome could be the cause of complete hydatidiform mole. This method is sufficiently reliable and rapid that differential diagnosis could be made between complete hydatidiform mole, partial mole and hydropic change.

Adolescent↗