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991.
Yuta Shinohara Katsuhiko Matsumoto Kenji Kugenuma Takashi Morii Yoshio Saito Isao Saito 《Bioorganic & medicinal chemistry letters》2010,20(9):2817-2820
We have synthesized various substituted 8-arylethynylated 2′-deoxyguanosine derivatives. Among them, acetyl substituted deoxyguanosine analogue 4c showed a remarkable solvent dependent fluorescence property, that is, an intense fluorescence in non-polar solvents but extremely weak fluorescence in polar solvents like methanol. By using solvatofluorochromic deoxyguanosine analogue 4c, we have developed highly thymine (T) selective fluorescent DNA probes that can sense T opposite 4c in a target DNA regardless of the flanking sequences. We were able to demonstrate that 4c can be used as a T specific base-discriminating fluorescent (BDF) nucleoside in homogeneous fluorescence assay. 相似文献
992.
Mitsui N Inatome R Takahashi S Goshima Y Yamamura H Yanagi S 《The EMBO journal》2002,21(13):3274-3285
Collapsin response mediator proteins (CRMPs)/TOAD64/Ulips/DRPs and CRAM have emerged as strong candidates for a role in semaphorin signaling. In this study we identified Fes/Fps (Fes) tyrosine kinase in the CRMP-CRAM complex and investigated whether Fes was involved in semaphorin3A (Sema3A) signaling. In COS-7 cells, the interaction between Fes and plexinA1 (PlexA1) and the tyrosine phosphorylation of PlexA1 by Fes were observed; however, these events were significantly attenuated by co-expression of neuropilin-1 (NP-1). Even with NP-1 co-expression, Sema3A was able to enhance the association of Fes with PlexA1 and Fes-mediated tyrosine phosphorylation of PlexA1, CRAM and CRMP2. Co-expression of Fes with PlexA1 exhibited COS-7 cell contraction activity, indicating that Fes can convert inactive PlexA1 to its active form, whereas combination of Fes/NP-1/PlexA1 or Fes kinase-negative mutants/PlexA1 did not alter cell morphology. Finally, Sema3A-induced growth cone collapse of dorsal root ganglion neurons was suppressed by expression of Fes kinase-negative mutants. Taken together, our findings suggest that Fes links Sema3A signals to CRMP-CRAM, and that NP-1 negatively regulates PlexA1 activation by Fes in resting condition. 相似文献
993.
Esashi Yohji; Maruyama Akiko; Sasaki Satoshi; Tani Akinobu; Yoshiyama Makoto 《Plant & cell physiology》1996,37(4):545-549
Nitrogenous inhibitors of respiration, namely, KCN, NaN3 andNH2OH, which promote the germination of cocklebur (Xanthiumpennsylvanücum Wallr.) seeds, enhanced the accumulationof cyanogenic compounds. Urea and cyanamide, which were ineffective,did not. Part of the exogenously applied KCN was converted tocyanogenic glycosides and lipids, but these compounds were onlyproduced at low levels in NaN3-treated seeds. Exposure to NH2OHcaused a slight accumulation of both types of cyanogenic compounds.Thiourea, effective in stimulating germination, did not increasethe cyanogenic compounds, which suggests that the mechanismof its effect on germination is different from that of othernitrogenous compounds. Thiocyanate had a slightly promotiveeffect and caused minor increases in the levels of cyanogeniccompounds. Ethylene increased the metabolic utilization of the accumulatedcyanogens in response to KCN or NaN3. The response to ethyleneof seeds in secondary dormancy was restored only after pre-treatmentwith KCN or NaN3. The response occurred once the level of cyanogenshad increased. By contrast, enhancement of the effects of KCNand NaN3 on germination by propyl gallate or benzohydroxamate,inhibitors of CN-resistant respiration, was accompanied by theincreased accumulation of cyanogens within the seeds that hadbeen exposed to KCN or NaN3 in combination with the other typesof respiratory inhibitors. Thus, it is suggested that endogenouscyanogens might be involved in the germination of cockleburseeds. (Received December 20, 1995; Accepted April 9, 1996) 相似文献
994.
995.
A ribonucleolytic enzyme (RNase H) which degrades the RNA strand of a RNA-DNA double stranded hybrid has been extracted from rat brain and characterized. RNase H activity in the cerebella increased up to around 6th day after birth and then decreased in adult rat cerebella, just as DNA polymerase and DNA ligase. The RNase H activity in non-cerebellar part decreased gradually toward adult after birth. On the other hand, RNase activity did not change during development of brain. The activity of total RNase is high at newborn, and decreased to 12th day after birth. These results suggest that RNase H is implicated in DNA replication in rat brain. 相似文献
996.
Nomura H Athauda SB Wada H Maruyama Y Takahashi K Inoue H 《Journal of biochemistry》2006,139(6):967-979
Mitochondria could be a good target for anti-parasitic drugs. The alpha and beta subunits of mitochondrial processing peptidase (MPP) and the core subunits of the cytochrome bc1 complex, UCR-1 and UCR-2, are homologous to one another and are important for mitochondrial functions. However, our knowledge of these proteins in nematodes is very limited. Caenorhabditis elegans, a free-living nematode, has six genes coding for proteins homologous to these subunits. On primary structure comparison, and immunochemical and enzymological analyses, the gene products were assigned as follows: Y71G12B.24, alpha-MPP; ZC410.2, beta-MPP; F56D2.1, UCR-1; VW06B3R.1, T10B10.2; and T24C4.1, UCR-2. The primary structures of beta-MPP and UCR-1 from Brugia malayi, a parasitic nematode causing human filariasis, were deduced from their cDNA structures. Phylogenetic analysis showed that the UCR-1s from both C. elegans and B. malayi were less related to mammalian UCR-1s than to MPPs from various organisms. MPP and the bc1 complex are essential for the life cycle of C. elegans, because their reverse genetic inhibition is lethal. This suggests the possibility that these proteins are also essential for the viability of B. malayi and other parasitic nematodes, and are potential targets for anti-parasitic agents. 相似文献
997.
Yoshio Nakao Akira Imada Toshihiko Wada Kôichi Ogata 《Bioscience, biotechnology, and biochemistry》2013,77(3):151-159
Attempts were made to form 5′-mononucleotides from non-proliferating cells of various kinds of yeasts. It was found that yeasts were devided into four groups according to their ability to excrete compounds absorbing at 260 mμ, the first of which excreted UV-absorbing materials at the acid pH (I), the second at the alkaline pH (II), the third both at the acid and alkaline pHs (III), and the fourth showed weak ability to excrete UV-absorbing materials at both pHs (IV). In general, 3′-mononucleotides were excreted at the acid pH and 5′-mononucleotides at the alkaline pH. Rhodotorula pallida, however, excreted 5′-mononucleotides both at the acid and alkaline pHs. 相似文献
998.
Takeaki Ohsu Yusuke Amino Hiroaki Nagasaki Tomohiko Yamanaka Sen Takeshita Toshihiro Hatanaka Yutaka Maruyama Naohiro Miyamura Yuzuru Eto 《The Journal of biological chemistry》2010,285(2):1016-1022
By human sensory analyses, we found that various extracellular calcium-sensing receptor (CaSR) agonists enhance sweet, salty, and umami tastes, although they have no taste themselves. These characteristics are known as “kokumi taste” and often appear in traditional Japanese cuisine. Although GSH is a typical kokumi taste substance (taste enhancer), its mode of action is poorly understood. Here, we demonstrate how the kokumi taste is enhanced by the CaSR, a close relative of the class C G-protein-coupled receptors T1R1, T1R2, and T1R3 (sweet and umami receptors). We identified a large number of CaSR agonist γ-glutamyl peptides, including GSH (γ-Glu-Cys-Gly) and γ-Glu-Val-Gly, and showed that these peptides elicit the kokumi taste. Further analyses revealed that some known CaSR agonists such as Ca2+, protamine, polylysine, l-histidine, and cinacalcet (a calcium-mimetic drug) also elicit the kokumi taste and that the CaSR-specific antagonist, NPS-2143, significantly suppresses the kokumi taste. This is the first report indicating a distinct function of the CaSR in human taste perception. 相似文献
999.
Preparation and some properties of alpha-actinin-free actin 总被引:2,自引:0,他引:2
1000.
Golgi/plastid‐type manganese superoxide dismutase involved in heat‐stress tolerance during grain filling of rice 下载免费PDF全文
Takeshi Shiraya Taiki Mori Tatsuya Maruyama Maiko Sasaki Takeshi Takamatsu Kazusato Oikawa Kimiko Itoh Kentaro Kaneko Hiroaki Ichikawa Toshiaki Mitsui 《Plant biotechnology journal》2015,13(9):1251-1263
Superoxide dismutase (SOD) is widely assumed to play a role in the detoxification of reactive oxygen species caused by environmental stresses. We found a characteristic expression of manganese SOD 1 (MSD1) in a heat‐stress‐tolerant cultivar of rice (Oryza sativa). The deduced amino acid sequence contains a signal sequence and an N‐glycosylation site. Confocal imaging analysis of rice and onion cells transiently expressing MSD1‐YFP showed MSD1‐YFP in the Golgi apparatus and plastids, indicating that MSD1 is a unique Golgi/plastid‐type SOD. To evaluate the involvement of MSD1 in heat‐stress tolerance, we generated transgenic rice plants with either constitutive high expression or suppression of MSD1. The grain quality of rice with constitutive high expression of MSD1 grown at 33/28 °C, 12/12 h, was significantly better than that of the wild type. In contrast, MSD1‐knock‐down rice was markedly susceptible to heat stress. Quantitative shotgun proteomic analysis indicated that the overexpression of MSD1 up‐regulated reactive oxygen scavenging, chaperone and quality control systems in rice grains under heat stress. We propose that the Golgi/plastid MSD1 plays an important role in adaptation to heat stress. 相似文献