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Biomedical subjects

Y Ohmori

Publications and source records attributed to Y Ohmori.

At least 37 records · Page 2Linked to original sources

An integrase facilitates long-lasting foreign gene expression in vivo in mouse spermatogenic cells.

The objective of the present study was to attain long-lasting foreign gene expression in vivo in spermatogenic cells in the mouse testis for establishing spermatogenic-cell mediated gene transformation. Prior to in vivo gene transfer, surgical cryptorchidism was performed by retaining the testis into the abdominal cavity for 1 month to remove differentiated spermatogenic cells. Subsequently, in vivo gene transfer was conducted by electroporation with a lacZ reporter gene in combination with a retroviral integrase gene, and the testis was descended immediately to the scrotum to recover from the cryptorchidism, and restart spermatogenesis. At 1 month post-transfection in vivo, lacZ gene expression was detected in some spermatocyte-like cells in seminiferous tubules of the mouse testis. However, the recovery period of 1 month appeared to be too short, since no elongated and fully differentiated spermatids were found. At 2 months post-transfection, fully differentiated spermatogenic cells expressing the lacZ gene, albeit at low frequency, were detected when the integrase gene was co-transfected, while virtually no lacZ-positive cells were found in the absence of the integrase gene. It was concluded, therefore, that stable transformation of spermatogenic cells in vivo would be facilitated by integrase gene co-transfection.

Journal Article↗

Requirement for STAT1 in LPS-induced gene expression in macrophages.

This study examines the role of the signal transducer and activator of transcription 1 (STAT1) in induction of lipopolysaccharide (LPS)-stimulated gene expression both in vitro and in vivo. LPS-induced expression of an interferon (IFN)-inducible 10-kDa protein (IP-10), IFN regulatory factor-1 (IRF-1), and inducible nitric oxide synthase (iNOS) mRNAs was severely impaired in macrophages prepared from Stat1-/- mice, whereas levels of tumor necrosis factor alpha and KC (a C-X-C chemokine) mRNA in LPS-treated cell cultures were unaffected. A similar deficiency in LPS-induced gene expression was observed in livers and spleens from Stat1-/- mice. The reduced LPS-stimulated gene expression seen in Stat1-/- macrophages was not the result of reduced activation of nuclear factor kappaB. LPS stimulated the delayed activation of both IFN-stimulated response element and IFN-gamma-activated sequence binding activity in macrophages from wild-type mice. Activation of these STAT1-containing transcription factors was mediated by the intermediate induction of type I IFNs, since the LPS-induced IP-10, IRF-1, and iNOS mRNA expression was markedly reduced in macrophages from IFN-alpha/betaR-/- mice and blocked by cotreatment with antibodies against type I IFN. These results indicate that indirect activation of STAT1 by LPS-induced type I IFN participates in promoting optimal expression of LPS-inducible genes, and they suggest that STAT1 may play a critical role in innate immunity against gram-negative bacterial infection.

Animals↗

[Mechanisms of bone resorption in periodontal disease].

Periodontal diseases are infectious, chronic inflammatory diseases that result both in loss of alveolar bone and destruction of connective tissue in periodontal regions. The bone resorption is triggered through immune responses, and results from inflammatory reactions directed against periodontopathic bacteria. Osteoclasts, bone resorbing cells, differentiate from macrophage/monocyte lineage cells, and are activated by various cytokines including osteoclast differentiation factor (ODF) / receptor activator of NF-kappaB ligand (RANKL). Activated antigen-specific CD4 positive T-cells directed against periodontopathic bacteria produce ODF/RANKL, which has been shown to play a critical role in bone resorption in periodontal diseases. This review describes recent progress towards elucidating mechanisms of bone resorption in periodontal disease.

English Abstract↗

Interleukin-4/STAT6 represses STAT1 and NF-kappa B-dependent transcription through distinct mechanisms.

STAT6 mediates interleukin-4 (IL-4)-dependent positive and negative regulation of inflammatory gene expression. In the present report we examined the molecular mechanisms involved in IL-4-induced repression of reporter gene transcription driven by STAT1 and/or NF-kappaB. Transient expression of STAT6 in a STAT6-deficient cell line (HEK 293) conferred sensitivity to IL-4 for STAT6-dependent transcription and for repression of interferon-gamma (IFNgamma)/STAT1- and/or tumor necrosis factor-alpha (TNFalpha)/NF-kappaB-driven reporter gene expression. In cells transfected with a deletion mutant of STAT6 lacking its transactivating domain, IL-4 could not mediate either positive or negative control of reporter gene expression. Overexpression of CREB-binding protein dramatically enhanced IL-4/STAT6-stimulated transcription and overcame IL-4-mediated repression of TNFalpha/NF-kappaB-dependent but not IFNgamma/STAT1-dependent transcription. A single amino acid change in the DNA-binding domain of STAT6 (H415A) selectively reduced the affinity of STAT6 for IL-4-responsive STAT sequence motifs (N4) without affecting the affinity for IFNgamma-responsive (GAS) sequences (N3) and, accordingly, eliminated transcription from an IL-4-responsive promoter. Interestingly, this mutation eliminated IL-4-mediated suppression of reporter gene transcription stimulated by TNFalpha/NF-kappaB but retained nearly full capacity to suppress IFNgamma/STAT1-stimulated transcription. Taken together these results demonstrate that STAT6 mediates suppression of STAT1 and NF-kappaB-dependent transcription by distinct mechanisms. Both processes are dependent upon the STAT6 transactivation domain and may involve sequestration of necessary but different transcriptional coactivator proteins. These two suppressive mechanisms are controlled differentially by the nature of the STAT6 DNA-binding site (i.e. N3 versus N4).

Base Sequence↗

Interleukin-1-mediated stabilization of mouse KC mRNA depends on sequences in both 5'- and 3'-untranslated regions.

mRNA transcribed from the mouse KC chemokine gene accumulated to significantly higher levels in multiple cell types after treatment with interleukin 1alpha (IL-1alpha) as compared with tumor necrosis factor-alpha (TNFalpha). Although TNFalpha and IL-1alpha both signaled the activation of nuclear factor kappaB and enhanced transcription of the KC gene with equal potency, only IL-1alpha treatment resulted in stabilization of KC mRNA. Nucleotide sequences that confer sensitivity for IL-1alpha-mediated mRNA stabilization were identified within the 5'- and 3'-untranslated regions (UTRs) of KC mRNA using transient transfection of chimeric plasmids containing specific portions of KC mRNA linked to the chloramphenicol acetyltransferase (CAT) gene. When plasmids containing either the 3'- or 5'-UTR of KC mRNA were used, the half-life of CAT mRNA was unaltered either in untreated or IL-1alpha-stimulated cells. In contrast, CAT mRNA transcribed from plasmids that contained both the 5'- and 3'-UTRs of the KC mRNA decayed more rapidly than control CAT mRNA, and this enhanced decay was prevented in cells treated with IL-1alpha. A cluster of four overlapping AUUUA motifs within the 3'-UTR was required, whereas the 5'-UTR region exhibited orientation dependence. These findings indicate that cooperative function of the two nucleotide sequences involves a distinct signaling pathway used by IL-1alpha but not TNFalpha.

3' Untranslated Regions↗

Effect of administration of nucleosides and nucleotides on protein turnover and the hypoxic myocardium.

Nucleotides and nucleosides have effects on improving energy metabolism and enhancing immune function. Under a surgical stress, requirement of nucleotides are increased as well as nitrogen. A well-balanced nucleoside solution (OG-VI) was developed for parenteral administration and its effect was examined in animals. The OG-VI solution contained 3.11% of nucleosides which was composed of inosine, guanosine monophosphate, cytidine, uridine and thymidine of 4:4:4:3:1 in molar ratio. The whole body protein turnover increased significantly in rats received total parenteral nutrition (TPN) with OG-VI after 70% hepatectomy and enhanced the fractional protein synthesis rates of the muscle and liver. Also myocardial contractility (%segment shortening, %SS) in dogs after occlusion of left anterior descending artery (LAD) was recovered to 70% after reperfusion in the OG-VI group. The creatine phosphate (PCr) / inorganic phosphate (Pi) was maintained the baseline level and did not decrease after hypoxia in the OG-VI group while PCr/ Pi was decreased after hypoxia in normal rat. These data suggested that the nucleoside-nucleotide (OG-VI) improved nitrogen metabolism and might stimulate synthesis of high-energy phosphate in recovery after severe surgical stress.

Animals↗

[Thrombomodulin].

Thrombomodulin (TM), a membrane-bound receptor for thrombin on the endothelial cell surface, contributes to the regulation of the coagulation system. TM is known to exist in human plasma and urine as soluble forms. We purified soluble TM from human urine (MR-33) and investigated the anticoagulant effects of MR-33 in vitro and in vivo. In human plasma, MR-33 inhibited not only the procoagulant activity of thrombin, but also the thrombin generation via accelerating the thrombin-catalyzed protein C activation. In rat disseminated intravascular coagulation (DIC) models, intravenous infusion of MR-33 improved the hematological abnormalities without excessive prolongation of APTT and bleeding time. Benefit (dose required for 50% inhibition of fibrinogen decrease: ED50) to risk (minimum dose required for significant prolongation of bleeding time) ratio was 1:27 for MR-33. Furthermore, the anticoagulant activities of MR-33 was independent of AT III activity, and MR-33 was effective on heparin-resistant DIC models with low AT III level in rats. Intravenous injection of MR-33 prevented the endotoxin-induced increases in TAT, TNF-alpha and IL-6 level and pulmonary vascular permeability in mice. These results indicate that MR-33 may be a clinically useful antithrombotic agent with reduced risk for hemorrhage, and this drug also has anti-inflammatory effects. Clinical trials of MR-33 for the treatment of DIC are now in progress in Japan.

Animals↗

Neural features of recovery from CNS injury revealed by PET in human brain.

Dysfunction of the brain occurring after local brain injury often improves clinically; however, the reason for this improvement has not been scientifically clarified. We used a new technique for imaging phosphoinositide turnover, carbon-11-labeled diacylglycerol-positron emission tomography, to observe the process of recovery from injury in human brain. Patients with local brain injury exhibited radioactive spots located in the association areas distant from the lesion, while normal controls did not exhibit such spots. These findings indicated one of possible features of the neural recovery from the central nervous system injury, which appears to play a role in modulation of synaptic transmission in the intact brain. Conventionally, attention has been directed primarily to areas surrounding brain injury, such as the penumbra; however, the present study suggests that initiation of reorganization of neural connections occurs in remote cortex.

Adult↗

Primary T-cell lymphoma of the duodenum: report of a case.

A case of primary non-Hodgkin's T-cell lymphoma of the duodenum is presented. A 41-year-old man was hospitalized in 1984 complaining of abdominal distention and vomiting. Hypotonic duodenography showed an encircling filling defect in the second portion of the duodenum, and a biopsy specimen revealed features of malignancy suggestive of either undifferentiated carcinoma or malignant lymphoma. Radical surgery (pancreaticoduodenectomy) was performed, after which chemotherapy was administered. A histological evaluation of the duodenal tumor showed it to be non-Hodgkin's lymphoma. It was a diffuse, large-cell type, which immunohistochemically suggested it to be of T-cell origin. Currently the patient is doing well, with no evidence of disease recurrence 13 years after surgery.

Adult↗

Location of sympathetic postganglionic and sensory neurons innervating the testis in the male chicken.

Sympathetic postganglionic and sensory neurons were labelled by injections of horseradish peroxidase into the testis of the male chicken. The total number of labelled neurons in the paravertebral, prevertebral, dorsal root and nodose ganglia was 943 on average for five chickens. Sympathetic postganglionic neurons were located in the paravertebral ganglia T3-LS3 (10% of the total number of labelled neurons), especially in T6 and T7, and in the prevertebral ganglia adjacent to the adrenal glands and aorta (19%). They were found almost ipsilaterally. No labelled neurons were observed in the dorsal motor nucleus of the vagus. Sensory neurons were found bilaterally in the dorsal root ganglia T2-LS3 (71%), especially in T5 to T7. Over a quarter of labelled sensory neurons were located in the contralateral dorsal root ganglia. In the nodose ganglia, only a few labelled sensory neurons were observed (much less than 1%). These results indicate that, unlike the ovary, the testis of the chicken tends to be innervated by ipsilaterally located sympathetic postganglionic and sensory neurons, with the sensory neurons being more numerous than the sympathetic postganglionic neurons.

Animals↗

Regulation of macrophage gene expression by pro- and anti-inflammatory cytokines.

The anti-inflammatory cytokines IL-4 and IL-10 are well recognized as important negative regulators of proinflammatory gene expression in mononuclear phagocytes. The intracellular mechanisms which mediate these responses appear to be multifactorial. IL-4 is able to markedly suppress transcriptional activation of IFNgamma-responsive genes and the promoter sequences required for both IFNgamma and IL-4 sensitivity are identical. IFNgamma-activated STAT1 and IL-4-activated STAT6 can both form complexes on the same regulatory sequence element; while STAT1 functions to promote transcription, STAT6 is inactive. STAT6 is, however, required for the suppressive activity of IL-4. In this model, IL-4 appears to suppress IFNgamma-inducible proinflammatory gene expression through the ability of STAT6 to compete with STAT1 for occupancy of promoter sites necessary for IFNgamma-induced transcriptional initiation. In a second model, IL-10 suppresses the expression of genes induced in LPS-stimulated macrophages through a pathway involving destabilization of specific mRNAs. We have demonstrated that nucleotide sequences in the 3'-untranslated region of an IL-10-sensitive gene can both destabilize a stable reporter mRNA (CAT) and confer sensitivity to IL-10-mediated destabilization. Deletion and site-specific mutagenesis have mapped this to an AU-rich sequence motif similar to that found in many cytokine and growth factor mRNAs. IL-10 is able to modulate the activity of proteins capable of binding to this sequence and one or more of these may regulate the rate of mRNA degradation. Thus mechanisms through which IL-10 and IL-4 act to dampen inflammatory responses are mechanistically distinct and involve diverse intracellular signaling pathways.

Animals↗

Localization of sympathetic, parasympathetic and sensory neurons innervating the heart of the Beijing duck by means of the retrograde transport of horseradish peroxidase.

Sympathetic, parasympathetic and sensory neurons were labeled by injections of horseradish peroxidase into various regions of the heart in 33 Beijing ducks. Sympathetic postganglionic neurons innervating the heart were located in the paravertebral ganglia C15 (C16 is the last cervical segment in the duck) to T3, especially in the ganglion T1. The coronary sulcus and ventricle were more abundantly innervated by sympathetic neurons than the atrium. The left side of the heart was preferentially innervated by sympathetic postganglionic neurons in the left side of paravertebral ganglia but the right side of the heart were equally supplied from the right and left ganglia. Within the medulla oblongata, the number of labeled vagal preganglionic neurons in the nucleus ambiguus was much greater than that in the dorsal motor nucleus of the vagus nerve. Labeled neurons of the nucleus ambiguus were found in many ducks injected into the coronary sulcus. Cardiac sensory neurons were observed in the dorsal root ganglia C15 to T2 (highest in the ganglion T1) and in the nodose and jugular ganglia of the vagus nerve. These labeled neurons probably form the afferent and efferent limbs of cardiac reflexes and control circulation in the Beijing duck.

Animals↗

Evaluation of phosphoinositide turnover on ischemic human brain with 1-[1-11C]-butyryl-2-palmitoyl-rac-glycerol using PET.

UNLABELLED: It is important to evaluate cerebral function from neural signal transduction in ischemic brain in judging morbid state and prognosis. We synthesized 1-[1-(11)C]-butyryl-2-palmitoyl-rac-glycerol (DAG) for the purpose of imaging the second messenger on PET and applied it to clinical cases of cerebral infarction. METHODS: Five patients, who had ischemic stroke, were examined with PET. [15O]-CO2 and [15O]-O2 inhalation methods were applied to cerebral blood flow (CBF), oxygen extraction fraction (OEF) and cerebral metabolic rate of oxygen (CMRO2). For the measurement of phosphoinositide turnover after intravenous injection of DAG, dynamic PET data were collected continuously for 46 min. Arterial blood samples were taken to evaluate changes in the serum concentration of DAG. To quantify the metabolic activity of inositol phospholipid, the incorporation constant k*(DAG) was calculated on the basis of the kinetics of DAG. RESULTS: The plasma concentration of DAG increased rapidly and peaked 30 s after injection of DAG solution. In the normal cortex, DAG concentration increased gradually and reached a plateau between 15 and 20 min after injection. In the ischemic core (infarction), DAG concentration increased slowly, and its peak concentration was lower than that in normal tissue. In comparison with blood flow and metabolic parameters, k*(DAG) showed the best correlation with CMRO2, suggesting a reflection of neuronal activity. Locally, CBF and CMRO2 gradually decreased from the normal area toward the ischemic center (infarction), whereas k*(DAG) and OEF significantly decreased only in the ischemic center. CONCLUSION: The k*(DAG) of ischemic brain, including that caused by infarction, significantly correlated with CMRO2, suggesting that metabolic activity of inositol phospholipid reflects neural viability. Maintained metabolic activity of inositol phospholipid in the region around the ischemic core indicated preservation of the signal transduction system through the metabotropic receptor.

Aged↗

STAT6 is required for the anti-inflammatory activity of interleukin-4 in mouse peritoneal macrophages.

Interleukin-4 (IL-4) is an anti-inflammatory cytokine which inhibits many inducible macrophage functions. The present study demonstrates that the ability of IL-4 to inhibit interferon gamma (IFNgamma)-dependent gene transcription is dependent upon STAT6. IL-4 suppressed IFNgamma-induced expression of the MIG (monokine induced by IFNgamma) gene, a C-X-C chemokine, in mouse macrophages. IFNgamma-induced expression of MIG mRNA was abolished in peritoneal macrophages from Stat1-/- mice, and the suppression of MIG mRNA by IL-4 was abolished in macrophages from Stat6-/- mice. Transient transfection assays using a reporter gene containing the MIG gene promoter or the IFNgamma-responsive element (gammaRE) from the MIG gene revealed that the IFNgamma-dependent transcription was suppressed by IL-4, although IL-4 alone had no transactivating function. IFNgamma and IL-4 activated STAT1 and STAT6, respectively, and both proteins were able to bind the gammaRE motif. Furthermore, STAT6 was associated with the co-activator CREB-binding protein in RAW264.7 cells. These observations indicate that STAT6 is necessary for the IL-4-mediated suppression of IFNgamma-induced, STAT1-dependent transcription and suggest that STAT6 may directly suppress the STAT1-dependent transcription by competing with STAT1 for occupancy of the gammaRE motif and/or by competing with limiting quantities of the transcriptional coactivator.

Animals↗