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Biomedical subjects

K Sakabe

Publications and source records attributed to K Sakabe.

At least 55 records · Page 3Linked to original sources

Variants of the human prostate LNCaP cell line as tools to study discrete components of the androgen-mediated proliferative response.

Androgens regulate the proliferation of their target cells through a sequential two-step mechanism. In the first step, androgens increase proliferation rates; following this proliferative response, a second step of proliferative shutoff ensues. Human prostate LNCaP cell variants were used to assess whether the proliferative and shutoff effects of androgens could be segregated selectively by manipulating the hormonal milieu. The LNCaP-FGC and LNCaP-LNO cell lines were derived from the same biopsy specimen but exhibited different proliferative responses. Cell proliferation was inhibited by treatment with 10% charcoal-dextran stripped human serum in the LNCaP-FGC variant but not in LNCaP-LNO cells. Physiological androgen concentrations induced a proliferative shutoff in LNCaP-LNO cells (G1 arrest), an effect also expressed by LNCaP-FGC cells. This G1 arrest was irreversible in the LNCaP-FGC variant but was reversed upon androgen withdrawal in LNCaP-LNO cells. A new variant (LNCaP-TJA) was selected from LNCaP-LNO cells treated with 30 nM methyltrienolone for 4 months; these cells proliferated maximally regardless of the presence of androgens. All three cell variants had functional androgen receptors, and androgens induced prostate-specific antigen secretion. The androgen-induced proliferative shutoff in LNCaP-FGC and LNO cells was partially antagonized by antiandrogens and was not mediated by autocrine factors. Finally, the variant LNCaP cell lines described herein are probably representative of phenotypes present in prostate cancer patients during the course of this disease and may arise from selective pressure imposed by therapeutic protocols aimed at modifying the hormonal milieu of the host.

Androgen Antagonists↗

Effects of sex steroids on the proliferation of thymic epithelial cells in a culture model: a role of protein kinase C.

Using a rat thymic epithelial cell line (TEC; IT-45R1), the present study attempted to elucidate the mechanism of action of sex steroid hormones (SH) on the proliferation of TEC. The findings were as follows: (a) the proliferation of TEC in response to SH was mediated through protein kinase C activity introduced as a result of interaction between SH and plasma-borne inhibitors; (b) the strong inhibitory effect of SH on TEC proliferation might be mediated through the SH receptor pathway because the proliferative response was triggered by progesterone (P) and androgen (A), whereas the inhibitory response was triggered by P, A and oestrogen. These results clearly suggest that the control of TEC proliferation is a 'shut-off' mechanism triggered by high plasma levels of SH. This further refers to the speculation that the development of the normal thymus may be due to a lack of this 'shut-off' mechanism so that development occurs at the adequate plasma SH levels that are often observed before puberty. However, this development is inhibited at the high plasma SH levels after puberty and/or during pregnancy.

Animals↗

Crystallization and preliminary X-ray analysis of gamma-glutamyltranspeptidase from Escherichia coli K-12.

gamma-Glutamyltranspeptidase (EC 2.3.2.2) from Escherichia coli K-12 has been purified and crystallized by means of vapor diffusion in hanging drops. Two kinds of crystals on cell dimensions were found for X-ray diffraction analysis, one from ammonium sulfate and the other from polyethylene glycol 6000 as precipitants. The crystals of the orthorhombic form grown in the presence of 15% polyethylene glycol and 20 mM sodium acetate buffer were chosen for further analysis. The crystals belonged to space group P2(1)2(1)2(1), with cell dimensions of a = 128.1, b = 129.9 and c = 79.2 A, and two molecules constitute an asymmetric unit. These crystals diffracted to 2.0 A resolution and were suitable for X-ray crystallographic studies.

Bacterial Proteins↗

Localization of estrogen receptors and estrogen receptor-mRNA in female mouse thymus.

The present study was performed to demonstrate estrogen receptor (ER) and ER-mRNA in female mouse thymus. The results are as follows: (i) thymic tissue contains ER in both reticuloepithelial(RE)- and T-cell fractions, the ER level being three-fold higher in the former fraction than in the latter; and (ii) thymic tissue contains ER-mRNA at 6.2 kb, a large amount of which was localized in the RE cells and less in the T cells. From these results it is suggested that estrogen (E) mediates some immune function of the mouse thymus through its receptor within RE cells and/or T cells.

Animals↗

Localization of sex steroid receptor cells, with special reference to thymulin (FTS)-producing cells in female rat thymus.

Using monoclonal antibodies against progestin receptors (PR) and estrogen receptors (ER), and polyclonal antibodies to thymulin (FTS) and keratin, localization of the sex steroid receptors was studied immunohistochemically in ovariectomized estrogen-treated rat thymus, with special reference to FTS-producing cells. Both ER- and PR-immunostained cells were mainly localized in the medullary region, especially at its periphery (i.e., the corticomedullary junction). A few cells were also situated in the subcapsular area. They were medium- to large-sized and had a dendritic cell process, some of which were immunohistochemically keratin- and FTS-positive, indicative of reticuloepithelial (RE) cells. Hassall's corpuscles were also receptor-positive and FTS-positive. T-cells were not immunostained with anti-ER, anti-PR or anti-FTS. Light microscopically, both ER and PR immunostainings were localized in the cytoplasm and/or nucleus of keratin-stained RE cells. Electron microscopically, both steroid receptors were shown more precisely to distribute as aggregates of osmiophilic black dots on polysomes and perinuclear space in the cytoplasm and on the euchromatin area in the nucleus. These results suggest that the sex steroids E and P exert their effects through receptors within RE cells which produce FTS to regulate T-cell differentiation.

Animals↗

The proliferative effect of "anti-androgens" on the androgen-sensitive human prostate tumor cell line LNCaP.

The effect of steroidal and nonsteroidal "anti-androgens" on the proliferative capacity of androgen-sensitive LNCaP-FGC human prostate tumor cells in culture was studied using charcoal-dextran stripped human serum-supplemented media. Cyproterone and medroxyprogesterone acetates, flutamide, hydroxyflutamide, and anandron (R23908) were administered alone at concentrations between 3 X 10(-12) and 3 X 10(-6) M. Results indicated that although medroxyprogesterone induced maximal proliferation at 3 X 10(-9) M, the other "anti-androgens" (with the exception of flutamide that was ineffective) were effective at 3 X 10(-8) M and higher concentrations; the amplitude of the proliferative response by these compounds was comparable to that elicited by estradiol-17 beta (3 to 5-fold over control). None of the anti-androgens tested triggered the shutoff effect characteristic of androgen action. When 3 X 10(-10) M DHT and the above mentioned anti-androgens were administered simultaneously, a synergistic pattern was seen; on the contrary, 3 X 10(-8) M DHT cancelled the proliferative effect of each of the anti-androgens when administered simultaneously. The relative binding affinity of these anti-androgens to androgen receptors present in LNCaP-FGC cells did not correlate well with their proliferative efficiency. The data collected were interpreted within the premises of the negative control hypotheses for the regulation of cell proliferation in metazoans. Within those premises, results became compatible with the notion that first, "anti-androgens" elicited the proliferation of androgen-sensitive cells by neutralizing the effect of a serum-borne inhibitor (androcolyone-I); this event seems not to be mediated by androgens receptors. Second, anti-androgens did not trigger a proliferative shutoff response like androgens do, i.e. the proliferative pattern induced by anti-androgens was comparable to that elicited by estrogens and progestins. Third, when administered simultaneously with 3 X 10(-10) M DHT, anti-androgens behaved synergistically. Fourth, the DHT-induced shutoff effect consistently overrode the proliferative effect generated by anti-androgens and estrogens when added alone. Finally, taken together these results raise important questions regarding the therapeutic role of anti-androgens in prostate cancer.

Androgens↗

Hormone and immune response, with special reference to steroid hormone. 2. Sex steroid receptors in rat thymus.

In this study, we characterized the sex hormone receptors in normal and abnormal rat thymus tissues using biochemical and immunohistochemical techniques. Judging from the experimental results, the progestin and the estrogen receptor-containing cells and the thymulin-producing cells are the same reticuloepithelial (RE) cells. This suggests that the sex steroids mediate immune functions of the thymus through receptors within the RE cells to produce thymulin which induces the thymocyte to differentiate and mature. Whether the sex hormones have any direct effects on either T or B cells is not known at this time. So, further studies are needed to clarify this point. Secondly, using the spontaneously developed thymoma tissues from BUF/Mna rat the present authors have just started to biochemically analyse the existence of sex hormone receptors and to immuno-histochemically identify sex hormone receptor-containing cells and thymulin-producing cells. As a contemporary result, progesterone and estrogen receptors were mainly located in the intact RE cells but not in the neoplastic cells, whereas thymulin-producing cells were in both intact RE cells and neoplastic cells. It seems by now that there is no correlation between steroid hormone receptors and thymulin production in the neoplastic cells, as would be in the intact RE cells. Further study is required to answer this question.

Animals↗

Hormone and immune response, with special reference to steroid hormone 1. A short review.

Substantial evidence has been accumulated to support the gonadal regulation of immune functions. They are mainly based on the following observations: i) the existence of sexual dimorphism in immune response, ii) alteration of immune response by gonadectomy or sex steroid replacement, iii) alteration of immune response during pregnancy, and iv) existence of sex steroid receptors in the thymus tissue which affect T cell function through thymic hormones produced in the gland. In the present study, we have tried to review some of this evidence by adding our own findings. We also referred to the experimental findings which show that the thymus, brain and gonads are close-related functionally, and form a functional axis, the so-called "hypothalamic-pituitary-gonadal-thymic" axis which is of great importance not only because it regulates immune response, but because its influence may extend to other organ system within the living body.

Animals↗

Hormone and immune response, with special reference to steroid hormone. 3. Sex steroid effect on T-cell differentiation.

Effect of sex steroids on differentiation of mouse thymic lymphocytes (T cells) was investigated. The result obtained are as follows: (i) the receptors for estrogen and progestin are both in the thymic cytosol, and they are mainly located in the reticuloepithelial cells in which thymulin (FTS) is also localized, (ii) estrogen and thymulin affect thymic weight and T cell differentiation, especially helper T cell subset, and (iii) estrogen may play a role through its receptor on thymic reticuloepithelial cells to produce thymulin which in turn influences T cell function.

Animals↗

Crystal structure analysis of omega-amino acid:pyruvate aminotransferase with a newly developed Weissenberg camera and an imaging plate using synchrotron radiation.

The three-dimensional structure of omega-amino acid:pyruvate aminotransferase from Pseudomonas sp. F-126, an isologous alpha 4 tetramer containing pyridoxal 5'-phosphate (PLP) as a cofactor, has been determined at 2.0 A resolution. The diffraction data were collected with a newly developed Weissenberg camera with a Fuji Imaging Plate, using synchrotron radiation. The mean figure-of-merit was 0.57. The subunit is rich in secondary structure and comprises two domains. PLP is located in the large domain. The high homology in the secondary structure between this enzyme and aspartate aminotransferase strongly indicates that these two types of enzymes have evolved from a common ancestor.

Aspartate Aminotransferases↗

Hormonal events surrounding spontaneous onset of puberty in female rats.

In an effort to define more completely the hormonal events surrounding onset of puberty in female rats, concentration of sex steroids and gonadotropins in serum, ovaries and pituitaries were quantified. Simultaneously the sites and intensity of synthesis of the hormones were observed immunohistochemically. It was found that an increase in tissue concentration of follicle stimulating hormone (FSH), luteinizing hormone (LH), progeterone (Po) and estradiol (E2) preceded vaginal opening (VO). However, the serum levels of these hormones were not significantly increased until the day of VO except for serum E2 levels which were fairly high during the early prepubertal period. Coincident with an increase in pituitary gonadotropin levels was an increase in the staining intensity for pituitary gonadotropes. However, the increase in ovarian steroid levels was not always coincident with the staining intensity for steroid-producing cells. The site or localization of steroid synthesis in the ovary was the thecal layer, but not the granulosa, of various growing follicles. The present results clearly indicated that the preovulatory changes in gonadotropins and sex steroids in blood and the tissues are similar to those noted in cycling adult rats, suggesting that prepubertal gonadotropin surge is induced via a common mechanism. They also indicated that ovarian steroids, especially estrogens, are synthesized mainly in the thecal layer of growing follicles.

Animals↗

Progestin and estrogen receptors: characterization and localization in rat submandibular glands, with special reference to epidermal growth factor.

By using progestin (P) and estrogen (E), the localization and characterization of both steroid receptors were examined in the submandibular gland (SMG) of 6-week-old immature castrated rats, with special reference to localization of epidermal growth factor (EGF). In the castrated male and female rats, both 3H-estradiol-17 beta (3H-E2 beta) and 3H-promegestone (3H-R5020) bound to SMG cytosol with high affinity and low capacity. These values were similar to those reported for other tissues. However, E-treatment after castration inhibited the specific binding. In sucrose density gradient ultracentrifugation, it was found that P receptors in both castrated males and females had a sedimentation coefficient of 7S, whereas E receptors had sedimentation coefficients of 4S and 7S. A histochemical study of the SMG of castrated male and female rats showed that the E-peroxidase complex (EPC)- and P-peroxidase complex (PPC)-stained cells were predominantly located in the epithelium of the duct system including the excretory duct and the granular convoluted tubules. Few cells were located in the intercalated duct, and none were found in the acinus. EGF-immunoreactive cells were also located in the epithelium of the same tissue region as in PPC- and EPC-stained sections. Moreover, E-treatment after castration inhibited the intensity of staining and immunoreactivity. These results clearly suggest that rat SMG contains specific P and E receptors which are mainly located in the epithelial cells of the duct system in which EGF-containing cells are identified. We discussed the possibility that P and E might affect EGF immunoreactivity, which reflects EGF production, through their receptors in the epithelium of the duct system.

Animals↗

Biochemical characterization and immunohistochemical localization of progestin and estrogen receptors in castrate rat submandibular gland.

The physicochemical property and immunohistochemical localization of progestin (P) and estrogen (E) receptors (PR and ER) were examined in the submandibular gland (SMG) of 5-8-week-old castrated rats. The localization of epidermal growth factor (EGF) was simultaneously examined in the same tissue. The tissue cytosols from male and female rats specifically bound 3H-promegestone (3H-R5020) and 3H-estradiol-17 beta with high affinity and low capacity; the values were within the range of those reported for other tissues. However, E-treatment suppressed the specific P-binding in the female, whereas it did not in the male. On the contrary, E-treatment did not at all suppress specific E-binding in both sexes. Monoclonal antibodies against PR and ER were mainly located in the epithelium of the excretory duct and granular convoluted tubule, but not in the acinus. The monoclonal antibodies were also located in the large polygonal cell with irregular cell border, probably macrophage in the tissue. The EGF-immunoreactivity was observed in the epithelium of the same tissue region as that in which the monoclonal antibodies were located. The present results clearly suggest that the rat SMG tissue contains specific PR and ER that are mainly located in the epithelium of the duct system where EGF-producing cells are also located. The possibility that P and E may influence EGF-production through their receptors in this tissue was discussed.

Animals↗

Autoradiographic and cytochemical localization of androgen in human prostatic cancer cell lines.

For basic studies of receptor dynamics in androgen-responsive tissues and cells, the autoradiographic and cytochemical procedures were applied to cultured tumor cells (DU-145 and PC-3). Uptake and retention of 3H-R1881, a potent synthetic androgen, were observed in DU-145 cells. The radioactive labelling was intense, and solely confined to the nuclei of DU-145 cells. Radioactivity over PC-3 cells was minimal. For assessing binding specificity, DU-145 cells were incubated with 3H-R1881 in the presence or absence of either unlabelled R1881, testosterone, progesterone, estradiol-17 beta, or corticosterone. The displacement of 3H-R1881 with R1881 and testosterone was significant, while no displacement was observed with other steroids. Nuclear localization of cytochemical staining of the dihydrotestosterone-peroxidase conjugate was evident in DU-145 cells. Our results indicate that androgen receptor may reside primarily in target cell nuclei of androgen-responsive tissues and tumors.

Adenocarcinoma↗

Immunohistochemical evidence of progestin target cells in the pituitary gland of ovariectomized rat.

Progestin (P) target cells were identified in the pituitary gland of gonadectomized female rats which had been primed with estrogen (E). P staining was localized using the immunohistochemical avidin-biotin-peroxidase (ABP) complex method. Dark brown precipitates were primarily found over the cytoplasm of cells in the pars distalis, but not in the pars intermedia nor in the pars nervosa. The majority of P-sensitive cells in the pars distalis were identical with luteotrophs, a few being lactotrophs. These observations suggest a role of P in the regulation of production and secretion of gonadotrophins in the pituitary glands of female rats.

Animals↗

Histochemical localization of progestin receptor cells in the rat thymus.

Using progesterone (Po)-horseradish peroxidase (HRP) conjugate (PPC), the histochemical localization of progestin (Pi) receptor in the female rat thymus was investigated. The PPC staining was predominantly detected in the large polygonal cells with irregular cell borders that contain large clear, round or oval nuclei, 'epithelial cells', but rarely in the small round cells with dark round or oval nuclei, 'thymic lymphocytes'. The PPC-positive cells were distributed everywhere in the tissue, but found more frequently at the corticomedullary junctional area than at the other tissue areas. The stained cells tended to gather to make a cell cluster. The PPC staining within the epithelial cells was predominantly localized in the cytoplasm, but only faintly in the nucleus. The steroid specificity of Pi binding was studied by simultaneous incubation of the tissue sections with PPC and a series of unconjugated steroids such as progesterone-3-O-carboxymethyl oxime (PCMO), progesterone (Po), testosterone (T), estradiol-17 beta (E2 beta) and corticosterone (CC). The incubation studies indicated that two progestins, PCMO and Po, bind to Pi receptor in the thymus with a reasonable degree of specificity, but other nonprogestational steroids do not. The method was reproducible and showed satisfactory technical stability. The present results suggest that the effect of Pi on the thymus may be mediated by Pi receptor present in the epithelial cells.

Animals↗

Self-excitation in a porous membrane doped with sorbitan monooleate (Span-80) induced by an Na+/K+ concentration gradient.

The electrical potential across a fine-pore membrane doped with sorbitan monooleate (Span-80) imposed between aqueous solutions of NaCl and KCl was studied. It was found that this system showed rhythmic and sustained oscillations of electrical potential between the two aqueous solutions. These oscillations were attributed to the change of permeability of Na+ and K+ across the membrane, which originated from the phase transition of Span-80 molecules within the fine pores. Impedance measurement across the membrane also suggested a change in permeability. It was found that this membrane exhibited the property of differential negative resistance. In relation to this, it was shown that Na+ and K+ have different effects on the aggregation of Span-80 molecules. The mechanism of oscillation is discussed in relation to the ability of Span-80 molecules to behave as a dynamic channel through the membrane. This oscillatory phenomenon is interesting because in biological nervous membranes a difference between the concentrations of Na+ and K+ across the membranes is essential for excitability.

Hexoses↗

Progestin receptor in the thymus of ovariectomized immature rats.

By using the synthetic progestin promegestone (R5020), the location and characteristics of progestin receptors in the thymic cytosols from immature ovariectomized oestrogen-treated rats were determined. Tritiated promegestone bound to the cytosol with high affinity (dissociation constant (Kd) = 2.0 +/- 0.3 nmol/l; promegestone greater than progesterone greater than oestradiol greater than corticosterone testosterone) and low capacity (number of binding sites (Bmax) = 143.0 +/- 13.5 fmol/mg protein). These values were appropriate for progestin receptors. However, an extremely high dose of dexamethasone (10 mumol/l; 1000-fold excess over [3H]promegestone) slightly inhibited the specific binding. Progestin receptors were predominantly located in the reticuloepithelial (RE)-cell fraction, with few in the thymocyte T-cell fraction. The receptor level was raised (24.9 +/- 11.3 (S.E.M.) to 143.0 +/- 13.5 fmol/mg protein) with increased doses of oestrogen (0-30 micrograms) administered in vivo. Using sucrose density gradient ultracentrifugation it was found that the thymic progestin receptor had a sedimentation coefficient of 9S under low-salt conditions. These results clearly suggest that the thymus of the immature female rat contains a specific progestin receptor which is mainly located in the RE cells.

Animals↗