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Y Fukada

Publications and source records attributed to Y Fukada.

At least 55 records · Page 3Linked to original sources

Non-visual photoreception by a variety of vertebrate opsins.

Extraretinal photoreceptors in animals are involved in a variety of physiological functions such as photo-entrainment of circadian rhythm, photoperiodicity and body colour change. We have identified pinopsin in the chicken pineal gland as a typical 'non-visual' photoreceptive molecule. Pinopsin with bound 11-cis-retinal shows a blue-light sensitivity (lambda max = 468 nm), and it may play a role in synchronizing the phase of the endogenous circadian oscillator with an environmental dark-light cycle. Pinopsin is not a unique pineal opsin in animals. In the zebrafish, we have detected expression of two rhodopsin genes, the nucleotide sequences of which are very similar but distinct from each other. One is canonical rhodopsin expressed in the retina, and the other is expressed in the pineal gland. The latter gene is widely distributed among teleosts, and we named it 'exo-rhodopsin' after extraocular rhodopsin. On the other hand, our effort to identify the 'deep brain opsin' responsible for the photoperiodic gonadal response resulted in the identification of two kinds of opsins; pinopsin in the toad anterior preoptic nucleus and rhodopsin in the pigeon lateral septum. Both of these opsins are localized in the cerebrospinal fluid-contacting neurons in the brain of the two animals. We also identified VAL opsin in zebrafish retinal horizontal cells, which have not been considered as photoreceptive cells. It has become evident that animals employ a wide variety of photoreceptive molecules for 'non-visual' purposes.

Amino Acid Sequence↗

Differentiation of pinopsin-immunoreactive cells in the developing quail pineal organ: an in-vivo and in-vitro immunohistochemical study.

The avian pineal organ contains several types of photoreceptors with different photopigments: rhodopsin, iodopsin, and pinopsin. We have previously examined the differentiation of both rhodopsin-like and iodopsin-like immunoreactive cells during pineal development in quail embryos to determine the onset of synthesis of specific proteins and their cellular localization. In the present study, we have performed pinopsin immunohistochemistry on in-vivo developing and in-vitro cultured pineal organs of quail embryos. The results were compared with those obtained with rhodopsin and iodopsin immunohistochemistry. In the developing pineal organs, pinopsin immunoreactivity was detected at embryonic day 8, i.e. five days earlier than rhodopsin-like and iodopsin-like immunoreactivities. It was localized exclusively in the protrusions extending into the lumen throughout development, whereas rhodopsin-like and iodopsin-like immunoreactivities were usually found both in cell bodies and processes. These differences were also observed under two different types of culture conditions (dissociated cell culture and organ culture) indicating that, in the avian pineal organ, the expression pattern of the pinopsin gene is basically different from those of the other two pineal photopigments. The present study suggests that pineal cells have a mechanism for the polarized transport of pinopsin molecules.

Animals↗

Role of physiologic concentrations of stem cell factor in leukemic type growth of myelodysplastic CD34+ cells.

The stem cell factor (SCF: a ligand for c-kit) plays a central role in the growth of myelodysplastic (MDS) progenitor cells with leukemic type growth. In this study, the role of physiologic concentrations of SCF on the proliferation and differentiation on MDS progenitor cells was further analyzed in the presence of combined cytokines. For this purpose, marrow CD34+ cells were purified up to 94% for 12 normal individuals and 90% for 18 MDS patients, using monoclonal antibodies and immunomagnetic microspheres. The purified CD34+ cells were cultured for 14 days with saturating doses of cytokines, including recombinant human macrophage colony stimulating factor (rM-CSF), granulocyte-CSF (rG-CSF), granulocyte/macrophage-CSF (rGM-CSF), interleukin-3 (rIL-3) and rSCF. The clonal growth of MDS CD34+ cells supported by a combination of all the above cytokines was then subdivided into the two patterns of leukemic or non-leukemic. The role of various concentrations of rSCF (0, 0.5, 5, 50 and 500 ng ml(-1)), with or without the above cytokines, in proliferation and differentiation of MDS CD34+ cells was analyzed in each group. The physiologic concentration of SCF at 5 ng ml(-1) significantly increased undifferentiated 'blast cell' colonies or clusters in leukemic type growth of MDS CD34+ cells over that seen in normal CD34+ cells. SCF is present in plasma at a level of ng ml(-1). This means that progenitor cells are continuously exposed to stimulation by SCF in vivo and that MDS leukemic cells have a growth advantage over normal blasts.

Antigens, CD34↗

Influence of phacoemulsification and intraocular lens implantation on the course of diabetic retinopathy.

PURPOSE: To study the effect of phacoemulsification and posterior chamber intraocular lens implantation on the course of diabetic retinopathy using the nonoperated fellow eye as a control. SETTING: Departments of Ophthalmology, Diabetes Center, Tokyo Women's Medical University, and University of Tokyo School of Medicine, Tokyo, Japan. METHODS: One eye of 66 diabetic patients who preoperatively had a similar stage of retinopathy in both eyes or no retinopathy bilaterally had cataract surgery. The course of diabetic retinopathy was followed for 1 year postoperatively. Patients were placed into 1 of 2 groups: Group A, progression of retinopathy in the operated eye was attributable to the surgical invasion (i.e., there was progression of retinopathy only in the operated eye or more progression in the operated eye than in the nonoperated fellow eye); Group B, no deterioration of retinopathy bilaterally, comparable level of deterioration in both eyes, or greater progression in the nonoperated eye than in the operated eye. RESULTS: Surgery resulted in retinopathy progression in 16 patients (24.2%, Group A): 13 with unilateral deterioration and 3 with greater progression in the operated than in the nonoperated fellow eye. Of the remaining 50 patients (75.8%, Group B), 39 presented no significant progression in either eye, 8 had bilaterally comparable progression, and 3 showed progression in the nonoperated fellow eye only. Retinopathy worsened in the operated eye in 24 cases (36.3%); of these, changes in 16 patients were attributed to surgical influence. There was no significant difference between Groups A and B in age, diabetes mellitus duration, diabetes treatment method, and preoperative and postoperative hemoglobin A1c levels. The distribution of preoperative retinopathy stage significantly differed between groups, with more patients without retinopathy in Group A and more patients with advanced retinopathy in Group B. CONCLUSION: Factors such as age, diabetes mellitus duration, diabetes treatment method, and hemoglobin A1c level did not affect the progression of retinopathy; however, preoperative status of retinopathy may influence the susceptibility of the retinopathy to surgical invasion. A considerable proportion of eyes with aggravation of retinopathy would reflect the natural course of the disease, systemic factors, or both rather than the influence of cataract surgery.

Adult↗

Changes in serum levels of type I collagen-related proteins after surgically induced menopause and correlations with bone loss in the lumbar spine.

The purpose of this prospective study was to characterize the changes in serum levels of two proteins produced during the synthesis and degradation of type I collagen, i.e., the carboxyterminal propeptide of type I procollagen (PICP) and the pyridinoline cross-linked carboxyterminal telopeptide of type I collagen (ICTP), respectively, after oophorectomy, and to assess the degree of correlation between changes in the serum values of these proteins and changes in bone mineral density (BMD) of the lumbar spine. Serum levels of PICP, ICTP and bone gla protein (BGP) were determined in 18 women before oophorectomy (baseline) and at 7 days, and 1, 2, 3, 6, 9 and 12 months post-oophorectomy (PO). The BMD of the lumbar spine was measured at baseline, and at 6 months and 12 months PO. ICTP had increased significantly at 7 days PO and peaked between 1 and 3 months PO. PICP and BGP had increased significantly at 2 months PO and remained at high levels thereafter. The percent changes in lumbar BMD from baseline values (% CFB) at 6 months and at 12 months PO were significantly correlated with % CFB in ICTP, but not with % CFB in PICP or BGP. Accordingly, bone resorption is a main determinant of bone mineral loss after oophorectomy and the change in recently-developed bone resorption markers, such as ICTP, is of clinical utility in predicting a degree of subsequent bone loss after surgical menopause.

Adult↗

Prenatal confirmation of the translocation between chromosome 15 and Y-chromosome by fluorescence in situ hybridization.

A 30-year-old woman and her husband visited our hospital with habitual abortion as the complaint. Chromosome examination revealed a normal 46, XX for her and 46, XY, 15, der (15) t (Y; 15) (q12; p12) for him. After her pregnancy amniocentesis was performed. The karyotype was 46, XX, 15, der (15) t (Y; 15) (q12; p12) pat. ish der (15) (DYZ1+). A female baby was delivered. The growth of the baby was normal at 12 months of age.

Abortion, Habitual↗

A pilot study of a response oriented chemotherapeutic regimen combined with autologous peripheral blood progenitor cell transplantation in aggressive non-Hodgkin's lymphoma.

Fourteen consecutive patients with poor-risk aggressive NHL who at presentation had any one of four risk factors underwent response oriented induction chemotherapy and successive high-dose chemotherapy followed by autologous PBPC transplantation. After treatment with three cycles of conventional CHOP with G-CSF support (CHOP-G), the response was evaluated. For patients who achieved a complete remission (CR), an additional three cycles of CHOP-G were administered, while for partial response patients, another induction regimen including some non-cross-resistant agents was given; three cycles of VIPDexa-G (etoposide, ifosfamide, cisplatinum and dexamethasone) +/- two cycles of ENAP-G (mitoxantrone, etoposide, cytosine arabinoside and prednisone), were given. The scheduled induction chemotherapy, was followed by treatment with a high-dose cytoreductive regimen followed by autologous PBPC transplantation. After three cycles of CHOP-G, four patients (29%) achieved a CR, and 10 (71%) achieved a partial response (PR). When all scheduled induction therapy was completed, 10 patients (71%) had a CR. All 14 patients received high-dose therapy and obtained a complete hematologic recovery, except for one with a bone marrow relapse two months after transplantation. Evaluation of response after high-dose therapy showed 12 CRs (86%) which included three additional CRs, one PR, and one toxicity-related death. With a median follow-up of 12 months (range, 4 to 40), 12 are alive, with 11 in continuous first CR, and one relapse. The 2-year overall survival (OS) rate and event-free survival (EFS) rate are 77% and 79%, respectively, while the disease-free survival (DFS) rate is 92%. In conclusion, this pilot study suggests that response oriented induction chemotherapy and successive high-dose chemotherapy followed by autologous PBPC transplantation is commendable and can be associated with a high rate of remission and DFS for poor risk subjects with aggressive NHL.

Adolescent↗

[The study of the anesthetic action of halothane on the rat spinal cord by fos immunoreactivity].

This study was performed to examine the anesthetic action of halothane on the spinal cord of rats by using fos immunoreactivity, a marker for neuronal activity following noxious stimulation. Sprague-Dawley rats were injected with 150 microliters of 5% formalin subcutaneously into the left hindpaw. Control group (n = 5) received 100% oxygen for 3 hours after injection. 1 MAC group (n = 5) and 1.5 MAC group (n = 5) of rats were anesthetized with 1 MAC or 1.5 MAC halothane, respectively, for 3 hours after injection. The number of fos immunoreactive cells was counted in the lumbar spinal cord of each rat. All rats showed escape reactions against noxious stimulation in the control group. In the 1 MAC and 1.5 MAC groups, two of five rats showed response to noxious stimulation and the another three showed no response, respectively. There was profound relation between the responding rats and the expression of fos immunoreactivity in the spinal dorsal horn. The number of fos immunoreactive cells decreased in the cord of rats that showed no response to noxious stimulation by halothane 1 or 1.5 MAC. These findings suggest that halothane has analgesic action on spinal nociceptive neurons in the rats on the condition that its reactions to noxious stimulation are suppressed by halothane of any concentration.

Anesthesia, Inhalation↗

Erythropoietin induces tyrosine phosphorylation of Jak2, STAT5A, and STAT5B in primary cultured human erythroid precursors.

We examined signaling by erythropoietin in highly purified human colony forming unit-erythroid cells, generated in vitro from CD34(+) cells. We found that erythropoietin induces tyrosine phosphorylation of Jak2, STAT5A, and STAT5B. Tyrosine phosphorylation of Jak2 reaches a peak around 10 minutes after stimulation and is maximum at 5 U/mL of erythropoietin. Tyrosine phosphorylation of STAT5 is accompanied by the translocation of activated STAT5 to the nucleus as shown by electrophoretic mobility shift assay (EMSA) using 32Pi-labeled STAT5 binding site in the beta-casein promoter. Tyrosine phosphorylation STAT1 or STAT3 was not detected in human erythroid precursors after stimulation with erythropoietin. Crkl, an SH2/SH3 adapter protein, becomes coimmunoprecipitated specifically with STAT5 from erythropoietin-stimulated erythroid cells; although it was shown to become associated with c-Cbl in the studies using cell lines. Thus, human erythroid precursors can be expanded in vitro in sufficient numbers and purity to allow its usage in signal transduction studies. This report sets a basis for further studies on signaling in primary cultured human erythroid precursors, which in turn contribute to our better understanding in the differentiation processes of erythrocytes and their precursors.

Cells, Cultured↗

Specific isoprenyl group linked to transducin gamma-subunit is a determinant of its unique signaling properties among G-proteins.

Among 11 subtypes of heterotrimeric G-protein gamma-subunit, gamma1 (rod), gamma8 (cone) and gamma11 are modified with farnesyl while the others are modified with geranylgeranyl at the C-terminus. To understand the role of specific isoprenylation (farnesylation) of retinal transducin, we examined how and to what extent the type of isoprenyl group affects transducin-beta gamma (beta1 gamma1) functions such as interactions with membranes, Galpha/receptor, and effectors. To this end, the C-terminal farnesylation signal sequence (CVIS) of gamma1 was replaced by a geranylgeranylation signal (CVIL), and the resultant mutant (S74L) or wild-type (WT) gamma1 was coexpressed with beta1 in the baculovirus-Tn5 insect cell system. Both gamma1WT and gamma1S74L expressed as a beta gamma complex were mixtures modified with farnesyl and geranylgeranyl groups. The ratio of farnesyl to geranylgeranyl in preparations of beta1 gamma1WT and beta1 gamma1S74L purified from the Tn5 cell membrane fraction was about 1:2 and 1:6, respectively. These two forms of recombinant beta1 gamma1 and retinal beta1 gamma1 were different in their abilities to associate with rod outer segment membranes with the following rank order: beta1 gamma1S74L > beta1 gamma1WT > retinal beta1 gamma1. Functionally, beta1 gamma1S74L was the most potent to promote pertussis toxin-catalyzed ADP ribosylation of transducin-alpha (Talpha), to stimulate metarhodopsin II-catalyzed GTPgammaS-binding reaction to Talpha and to modulate adenylyl cyclase and phospholipase C activities. All of the beta1 gamma1 functions absolutely required the isoprenylation of the gamma-subunit. As for the interaction with Goalpha and adenylyl cyclase, predominantly geranylgeranylated beta1 gamma1S74L was less effective than geranylgeranylated beta1 gamma2 purified from bovine brain. These results demonstrate that the properties of Gbeta gamma are strongly affected by the type of functionally indispensable isoprenylation in addition to the amino acid sequence of Ggamma. The relative contribution of the two factors depends on proteins with which Gbeta gamma interacts.

Animals↗

Identification of rhodopsin in the pigeon deep brain.

We detected rhodopsin gene expression in the pigeon lateral septum, a photosensitive deep brain region that is responsible for the photoperiodic gonadal response. The nucleotide sequence of the deep brain rhodopsin cDNA clone exactly matched that of the retinal one, indicating that a single rhodopsin gene is transcribed in the two tissues. Immunohistochemical analysis localized rhodopsin in the cerebrospinal fluid-contacting neurons, which have been assumed to be photoreceptive cells in the deep brain. Pigeon rhodopsin seems to play dual important roles in the visual and non-visual systems, the latter of which contributes to the photoperiodic response.

Amino Acid Sequence↗

A deep brain photoreceptive molecule in the toad hypothalamus.

We have isolated a cDNA clone encoding a deep brain photoreceptive molecule from the hypothalamic cDNA library of the toad, Bufo japonicus. The deduced amino acid sequence showed the highest similarity to that of pinopsin (75-76%) among vertebrate retinal opsins, indicating the expression of toad pinopsin in the deep brain. Antibodies raised against the C-terminal tail of toad pinopsin stained cell bodies and the knob-like structures of the cerebrospinal fluid-contacting neurons in the anterior preoptic nucleus. This region is known to play an important role in breeding behavior, suggesting that toad pinopsin acts as a photosensor for the photoperiodic gonadal response.

Amino Acid Sequence↗

Light-dependent expression of pinopsin gene in chicken pineal gland.

The phase of a circadian clock in the chicken pineal gland is reset by an environmental light signal, which is captured by the pineal photoreceptive molecule(s). Here we show that the mRNA level of pinopsin, a predominant photoreceptive molecule in the pineal gland, undergoes a diurnal fluctuation in chickens maintained on a light/dark cycle. The mRNA levels in the light were approximately six times higher than those in the dark. This fluctuation was not observed in constant darkness, where the mRNA levels remained low. Subsequent light exposure of chickens increased the amount of pinopsin mRNA regardless of the circadian time. Clearly, the expression of pinopsin gene is controlled by a light signal, independent of the circadian clock. In vitro experiments using cultured pineal glands isolated from the visual system also revealed the light-dependent increase in pinopsin mRNA level, indicating that the pineal photoreceptive molecule(s) is responsible for the induction. These results demonstrate the presence of a feedback loop through which the light signal captured by pinopsin stimulates the transcription of its own gene in the chicken pineal gland. In contrast, pinopsin protein remained at an almost constant level in chickens maintained under the same light/dark cycles. The protein level, however, decreased to approximately 50% of the light/dark level under constant darkness and subsequently increased upon exposure to light after the dark period. It is suggested that, under the light/dark cycles, the pinopsin protein level is kept constant by the light-dependent synthesis, which would compensate for a possible degradation of pinopsin in the daytime.

Animals↗