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941.
An Escherichia coli strain that exhibits a double auxotrophy for L-alanine and D-alanine was constructed. During growth in the presence of the dipeptide L-alanyl-L-alanine (Ala-Ala), this was fully consumed with concomitant extracellular accumulation of l-alanine in a twofold molar concentration compared with the dipeptide. This finding indicates that the strain not only can hardly degrade L-alanine but has an export system(s) for L-alanine. To obtain access to the system, we chemically mutagenized the L-alanine-nonmetabolizing strain and isolated mutants with increased Ala-Ala sensitivity. Two such mutants accumulated L-alanine up to 150-190 mM in the cytoplasm with a reduced rate of L-alanine export relative to the parent strain in the presence of Ala-Ala. Furthermore, when chloramphenicol was added together with Ala-Ala, the parent strain accumulated L-alanine in the cytoplasm to a level similar to that observed in the mutants in the absence of chloramphenicol. In contrast, the intracellular l-alanine level in the mutants did not change irrespective of chloramphenicol treatment. From these results, we conclude that E. coli has an inducible l-alanine export carrier, together with a second, as yet unidentified, mechanism of alanine export. 相似文献
942.
Munenori Kishida Yu Kanaji Songguang Xie Yoshiro Watanabe Tomohiko Kawamura Reiji Masuda Yoh Yamashita 《Environmental Biology of Fishes》2011,90(3):301-315
Morphometric analyses of marine pelagic fishes have generally been conducted for stock identification rather than for ecomorphological
understanding. Many papers on stock identification of Trachurus japonicus reported polymorphisms in the Japanese Islands waters. However, none of them has found polymorphism in fish less than 100 mm
standard length (SL), despite the environmental differences experienced by juvenile cohorts. The objective of this study was
to detect ecomorphological polymorphism of juvenile T. japonicus (<100 mm SL) in Wakasa Bay, Japan, where multiple juvenile cohorts appear. From analyses of size frequency distributions
and otolith microstructure, five cohorts were recognized in the bay from September 2003 to August 2004. We then compared 17
morphometric characters on body, fin, and otolith morphology, and found cohort-specific and roughly dimorphic pattern (a streamlined
morph and a compressed morph). The dimorphism was markedly observed in 50–70 mm SL, and was regarded as specific to the juvenile
stage by comparison with the senior dimorphisms (≥100 mm SL). Referring to the literatures on functional morphology, the streamlined
morph and the compressed morph were considered to be suitable to body and caudal fin (BCF) periodic propulsion and BCF transient
propulsion, respectively. The juvenile dimorphism was interpreted as adaptive in its developmental environments (i.e., ecomorphological
dimorphism) by relating the functional differences to the inferred ecological differences: the streamlined morph is adaptive
to feed on larval Engraulis japonicus in coastal waters, whereas the compressed morph is adaptive to associate with jellyfishes in offshore waters. 相似文献
943.
Nakata E Nazumi Y Yukimachi Y Uto Y Maezawa H Hashimoto T Okamoto Y Hori H 《Bioorganic & medicinal chemistry letters》2011,21(6):1663-1666
We report the synthesis and properties of two new seminaphthorhodafluor (SNARF) derivatives, SNARF-F and SNARF-Cl. Both these derivatives exhibit typical red shifts of absorption and fluorescence, and higher cell permeability as compared to traditional SNARF, while the pH-dependent dual-emission characteristics are well retained. In particular, the lower pKa (7.38) of SNARF-F makes it more suitable than traditional SNARF derivatives for intracellular applications. 相似文献
944.
Many beneficial effects of probiotics have been reported; however, few have focussed on the effects of Lactobacillus, a probiotic, on the bioconversion of isoflavonoids. We hypothesized that Lactobacillus rhamnosus will modify the metabolism of isoflavone. In an in vitro incubation, L. rhamnosus JCM 2771 produced daidzein from daidzin along with genistein. However, daidzin and genistein were not detected in the incubation
solution of daidzein with L. rhamnosus. In the fecal suspension from a male equol producer with daidzein, equol was detected in the presence of a low or high concentration
of L. rhamnosus. In the fecal incubation with daidzin, the equol concentration increased with an increasing concentration of L. rhamnosus JCM 2771. L. rhamnosus affected the equol production in the in vitro incubation of daidzein with fecal flora from a male equol producer. We demonstrated
for the first time that L. rhamnosus JCM 2771 could produce genistein from daidzin and affect the equol production of fecal flora from a male equol producer in
vitro. 相似文献
945.
Ueoka-Nakanishi H Hori N Ishida K Ono N Yamashino T Nakamichi N Mizuno T 《Bioscience, biotechnology, and biochemistry》2011,75(11):2148-2154
Sessile plants must continuously adjust their growth and development to optimize photosynthetic activity under ever-fluctuating light conditions. Among such light responses in plants, one of the best-characterized events is the so-called shade avoidance, for which a low ratio of the red (R):far-red (FR) light intensities is the most prominent stimulus. Such shade avoidance responses enable plants to overtop their neighbors, thereby enhancing fitness and competitiveness in their natural habitat. Considerable progress has been achieved during the last decade in understanding the molecular mechanisms underlying the shade avoidance responses in the model rosette plant, Arabidopsis thaliana. We characterize here the fundamental aspects of the shade avoidance responses in the model legume, Lotus japonicus, based on the fact that its phyllotaxis (or morphological architecture) is quite different from that of A. thaliana. It was found that L. japonicus displays the characteristic shade avoidance syndrome (SAS) under defined laboratory conditions (a low R:FR ratio, low light intensity, and low blue light intensity) that mimic the natural canopy. In particular, the outgrowth of axillary buds (i.e., both aerial and cotyledonary shoot branching) was severely inhibited in L. japonicus grown in the shade. These results are discussed with special emphasis on the unique aspects of SAS observed with this legume. 相似文献
946.
Yoshida A Aoki R Kimoto-Nira H Kobayashi M Kawasumi T Mizumachi K Suzuki C 《FEMS immunology and medical microbiology》2011,61(3):315-322
To explore the potential probiotic effects of diary starter strains to suppress an IgE allergic response, 10 strains of live dairy lactic acid bacteria were screened for their ability to stimulate the T-helper (Th) type 1 response that counteracts the Th2 response. Four strains with distinct patterns of interleukin(IL)-12p70 and interferon-γ production by murine splenocytes were then orally administered to Balb/c mice, and serum IgE antibody production was examined after ovalbumin sensitization. Oral administration of live Lactococcus lactis strain C59 significantly reduced the total IgE antibody levels, whereas oral administration of the other three strains had no effect on the total IgE levels in ovalbumin-sensitized mice. This inhibitory effect on IgE antibody production was lost when heat-killed C59 was used for oral administration. Ex vivo experiments showed that IL-4 production upon stimulation with the anti-CD3 antibody was significantly reduced in splenocytes of mice with an oral administration of live strain C59 compared with the control. These results indicate that the inhibition of IgE antibody production in mice treated with live strain C59 was due to the suppression of IL-4 production. 相似文献
947.
Masahiro Iwata Takayuki Inoue Yuji Asai Kiyomi Hori Mitsuhiro Fujiwara Shingo Matsuo Wakako Tsuchida Shigeyuki Suzuki 《Biochemistry and Biophysics Reports》2020
Nitric oxide (NO) is an important part of the host defense mechanism; however, it displays both pro- and anti-inflammatory properties depending on its location and concentration. Importantly, excessive or inappropriate NO production can cause tissue damage. Systemic and local administration of NO synthase (NOS) inhibitors ameliorates and may exacerbate the inflammatory response, respectively. Here, we used a carrageenan-induced pleurisy model of acute inflammation in rats to confirm the location-dependent effects of NO and investigate the underlying mechanisms. As expected, localized suppression of NO production exacerbated inflammation, as evidenced by increased pleural exudate volumes and leukocyte counts and enhanced activity of enzymes related to oxidative stress. In contrast, local NO supplementation reduced leukocyte infiltration, vascular permeability, and the activity of oxidative stress-related enzymes. Interestingly, inhibition of heme oxygenase-1 (HO-1) reversed the anti-inflammatory effects of localized NO production, while the addition of hemin (HO-1 substrate) or carbon monoxide (CO; HO-1 metabolite) decreased leukocyte migration and exudation. Together, these findings confirm a protective role for NO at the inflammatory site, which appears to be mediated via NOS induction of the HO-1/CO pathway. Thus, NO supplementation may be a potential new treatment for oxidative stress-associated inflammatory diseases. 相似文献
948.
S Takahashi K Hori K Takahashi H Ogasawara M Tomatsu K Saito 《Journal of biochemistry》2001,130(6):815-821
Renin-binding protein (RnBP) is an endogenous renin inhibitor originally isolated from porcine kidney as a complex of renin, so-called high molecular weight (HMW) renin. Our recent studies demonstrated that human RnBP is the enzyme N-acetyl-D-glucosamine (GlcNAc) 2-epimerase [Takahashi, S. et al. (1999) J. Biochem. 125, 348-353]. We have purified recombinant human, rat, and porcine RnBPs expressed in Escherichia coli JM 109 cells. The purified recombinant RnBPs existed as dimers and inhibited porcine renin activity strongly. On the other hand, porcine renin inhibited recombinant GlcNAc 2-epimerase activities. The human GlcNAc 2-epimerase activity could not be detected in the absence of a nucleotide, whereas ATP, dATP, ddATP, ADP, and GTP enhanced the human GlcNAc 2-epimerase activity. Other nucleotides had no effect on human GlcNAc 2-epimerase activity. Rat and porcine GlcNAc 2-epimerases were activated by several nucleotides. Nucleotides that enhance the activity of GlcNAc 2-epimerases protect these enzymes against degradation by thermolysin. These results indicate that mammalian RnBPs have GlcNAc 2-epimerase activity and that nucleotides are essential for formation of the catalytic domain of the enzyme. 相似文献
949.
950.
Ito M Okui H Nakagawa H Mio S Kinoshita A Obayashi T Miura T Nagai J Yokoi S Ichinose R Tanaka K Kodama S Iwasaki T Miyake T Takashio M Iwabuchi J 《Bioorganic & medicinal chemistry》2003,11(4):489-494
This paper reports the synthesis and insecticidal activity of a new type of dihydropyrrole derivatives with sulfur moieties such as sulfanyl, sulfinyl, and sulfonyl groups at the 1-position. These derivatives exhibited high insecticidal potency against Nilaparvata lugens and Nephotettix cincticeps. Investigation of the structure-activity relationships revealed that the alkoxycarbonyloxy groups at the 4-position tended to increase the systemic insecticidal activity. 相似文献