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81.
Tomohisa Nagasaki Masanori Sugita Hideaki Fukawa Hsin-Tung Lin 《Bioscience, biotechnology, and biochemistry》2013,77(2):363-369
Taxonomical investigation was performed on the bacterium, strain NB 320 isolated from soil, and it was identified as Enterobacter cloacae. This bacterium produced the enzyme which catalyzed the transamination reaction between 3,4-dihydroxyphenyl pyruvate and an amino acid to form l-Dopa.The optimum culture conditions for the enzyme production were studied along with the characteristics of the enzyme. The enzyme of the strain was different in some properties from that of Alcaligenes faecalis IAM 1015 which had been already studied. The former utilized glutamate as an amino donor best among the amino acids tested for transamination and was induced by the addition of glutamine and asparagine. Intact cells of the strain did not catalyze the reaction unless they were treated with sonication or with a detergent. 相似文献
82.
Tomohisa Nagasaki Masanori Sugita Hideaki Fukawa 《Bioscience, biotechnology, and biochemistry》2013,77(7):1701-1706
Some enzymatic properties were examined on the transaminase (DOPA transaminase) which catalyzes the reaction between 3,4-dihydroxy phenyl pyruvate (DOPP) and certain amino acids to form 3,4-dihydroxyphenyl-L-alanine (DOPA). The cell-free extract from Alcaligenes faecalis IAM 1015 was used as the DOPA transaminase. L-Aspartate, L-glutamate, and L-phenylalanine were utilized efficiently as amino donor. The occurrence of three kinds of transaminase—aspartate-DOPP transaminase (ADT), glutamate-DOPP transaminase (GDT), and phenylalanine-DOPP transaminase (PDT)—was postulated.The pH optima of these enzymes were observed in the alkaline pH range. The enzymes were unstable in the acidic range and inactivated above 60°C. Ca2+, Mg2+, and Mn2+ protected PDT from heat denaturation. Fe2+, Cu2+, and Al3+ remarkably inhibited the enzyme reaction. 相似文献
83.
Chie Urashi Kosuke M. Teshima Sumiko Minobe Osamu Koizumi Nobuyuki Inomata 《Ecology and evolution》2013,3(7):2251-2261
Inference of genetic structure and demographic history is fundamental issue in evolutionary biology. We examined the levels and patterns of genetic variation of a widespread mangrove species in the Indo‐West Pacific region, Bruguiera gymnorrhiza, using ten nuclear gene regions. Genetic variation of individual populations covering its distribution range was low, but as the entire species it was comparable to other plant species. Genetic differentiation among the investigated populations was high. They could be divided into two genetic clusters: the West and East clusters of the Malay Peninsula. Our results indicated that these two genetic clusters derived from their ancestral population whose effective size of which was much larger compared to the two extant clusters. The point estimate of speciation time between B. gymnorrhiza and Bruguiera sexangula was two times older than that of divergence time between the two clusters. Migration from the West cluster to the East cluster was much higher than the opposite direction but both estimated migration rates were low. The past Sundaland and/or the present Malay Peninsula are likely to prevent gene flow between the West and East clusters and function as a geographical or land barrier. 相似文献
84.
Takakazu?OkaEmail author Yoshio?Kanemitsu Nobuyuki?Sudo Haruo?Hayashi Kae?Oka 《BioPsychoSocial medicine》2013,7(1):7
Background
Low-grade fever is a common symptom in patients with chronic fatigue syndrome (CFS), but the mechanisms responsible for its development are poorly understood. We submit this case report that suggests that psychological stress contributes to low-grade fever in CFS.Case presentation
A 26-year-old female nurse with CFS was admitted to our hospital. She had been recording her axillary temperature regularly and found that it was especially high when she felt stress at work. To assess how psychological stress affects temperature and to investigate the possible mechanisms for this hyperthermia, we conducted a 60-minute stress interview and observed the changes in the following parameters: axillary temperature, fingertip temperature, systolic blood pressure, diastolic blood pressure, heart rate, plasma catecholamine levels, and serum levels of interleukin (IL)-1β and IL-6 (pyretic cytokines), tumor necrosis factor-α and IL-10 (antipyretic cytokines). The stress interview consisted of recalling and talking about stressful events. Her axillary temperature at baseline was 37.2°C, increasing to 38.2°C by the end of the interview. In contrast, her fingertip temperature decreased during the interview. Her heart rate, systolic and diastolic blood pressures, and plasma levels of noradrenaline and adrenaline increased during the interview; there were no significant changes in either pyretic or antipyretic cytokines during or after the interview.Conclusions
A stress interview induced a 1.0°C increase in axillary temperature in a CFS patient. Negative emotion-associated sympathetic activation, rather than pyretic cytokine production, contributed to the increase in temperature induced by the stress interview. This suggests that psychological stress may contribute to the development or the exacerbation of low-grade fever in some CFS patients.85.
Yoh Wada Ge‐Hong Sun‐Wada Nobuyuki Kawamura Jyunichiro Yasukawa 《Birth defects research. Part C, Embryo today : reviews》2016,108(1):33-44
Eukaryotes have evolved an array of membrane compartments constituting secretory and endocytic pathways that allow the flow of materials. Both pathways perform important regulatory roles. The secretory pathway is essential for the production of extracellular, secreted signal molecules, but its function is not restricted to a mere route connecting intra‐ and extracellular compartments. Post‐translational modifications also play an integral function in the secretory pathway and are implicated in developmental regulation. The endocytic pathway serves as a platform for relaying signals from the extracellular stimuli to intracellular mediators, and then ultimately inducing signal termination. Here, we discuss recent studies showing that dysfunction in membrane dynamics causes patterning defects in embryogenesis and tissue morphogenesis in mammals. Birth Defects Research (Part C) 108:33–44, 2016. © 2016 Wiley Periodicals, Inc. 相似文献
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88.
Supranee Phanthanawiboon Kriengsak Limkittikul Yusuke Sakai Nobuyuki Takakura Masayuki Saijo Takeshi Kurosu 《PloS one》2016,11(2)
Severe dengue is caused by host responses to viral infection, but the pathogenesis remains unknown. This is, in part, due to the lack of suitable animal models. Here, we report a non-mouse-adapted low-passage DENV-3 clinical isolate, DV3P12/08, derived from recently infected patients. DV3P12/08 caused a lethal systemic infection in type I and II IFN receptor KO mice (IFN-α/β/γR KO mice), which have the C57/BL6 background. Infection with DV3P12/08 induced a cytokine storm, resulting in severe vascular leakage (mainly in the liver, kidney and intestine) and organ damage, leading to extensive hemorrhage and rapid death. DV3P12/08 infection triggered the release of large amounts of TNF-α, IL-6, and MCP-1. Treatment with a neutralizing anti-TNF-α antibody (Ab) extended survival and reduced liver damage without affecting virus production. Anti-IL-6 neutralizing Ab partly prolonged mouse survival. The anti-TNF-α Ab suppressed IL-6, MCP-1, and IFN-γ levels, suggesting that the severe response to infection was triggered by TNF-α. High levels of TNF-α mRNA were expressed in the liver and kidneys, but not in the small intestine, of infected mice. Conversely, high levels of IL-6 mRNA were expressed in the intestine. Importantly, treatment with Angiopoietin-1, which is known to stabilize blood vessels, prolonged the survival of DV3P12/08-infected mice. Taken together, the results suggest that an increased level of TNF-α together with concomitant upregulation of Tie2/Angiopoietin signaling have critical roles in severe dengue infection. 相似文献
89.
Taku Watanabe Ichizo Tsujino Satoshi Konno Yoichi M. Ito Chisa Takashina Takahiro Sato Akira Isada Hiroshi Ohira Yoshinori Ohtsuka Yuma Fukutomi Hiroyuki Nakamura Yukio Kawagishi Chiharu Okada Nobuyuki Hizawa Masami Taniguchi Akira Akasawa Masaharu Nishimura 《PloS one》2016,11(3)