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151.
Warshakoon NC Wu S Boyer A Kawamoto R Sheville J Renock S Xu K Pokross M Zhou S Winter C Walter R Mekel M Evdokimov AG 《Bioorganic & medicinal chemistry letters》2006,16(21):5517-5522
A new series of potent 8-hydroxyquinolines was designed based on the newly resolved X-ray crystal structure of EGLN-1. Both alkyl and aryl 8-hydroxyquinoline-7-carboxyamides were good HIF-1alpha prolyl hydroxylase (EGLN) inhibitors. In subsequent VEGF induction assays, these exhibited potent VEGF activity. In addition, this class of compounds did show the ability to stabilize HIF-1alpha. 相似文献
152.
Y Mikata M Kishigami M Nishida S Yano T Kawamoto Y Ikeuchi F Yoneda 《Bioorganic & medicinal chemistry letters》1999,9(15):2141-2144
Electrolytically reduced 6- and 8-nitro-5-deazaflavin derivatives have been found to interact to react specifically with guanine base by means of cyclic voltammetry. Electrolytic reductions of 6- and 8-nitro-5-deazaflavin derivatives in the presence of the 2'-deoxyguanosine under anaerobic conditions resulted in prominent formation of 8-oxo-7,8-dihydro-2'-deoxyguanosine. 相似文献
153.
Kee K. Kim Robert S. Adelstein Sachiyo Kawamoto 《The Journal of biological chemistry》2009,284(45):31052-31061
NeuN (neuronal nuclei) is a neuron-specific nuclear protein which is identified by immunoreactivity with a monoclonal antibody, anti-NeuN. Anti-NeuN has been used widely as a reliable tool to detect most postmitotic neuronal cell types in neuroscience, developmental biology, and stem cell research fields as well as diagnostic histopathology. To date, however, the identity of its antigen, NeuN itself, has been unknown. Here, we identify NeuN as the Fox-3 gene product by providing the following evidence: 1) Mass spectrometry analysis of anti-NeuN immunoreactive protein yields the Fox-3 amino acid sequence. 2) Recombinant Fox-3 is recognized by anti-NeuN. 3) Short hairpin RNAs targeting Fox-3 mRNA down-regulate NeuN expression. 4) Fox-3 expression is restricted to neural tissues. 5) Anti-Fox-3 immunostaining and anti-NeuN immunostaining overlap completely in neuronal nuclei. We also show that a protein cross-reactive with anti-NeuN is the synaptic vesicle protein, synapsin I. Anti-NeuN recognizes synapsin I in immunoblots with one order of magnitude lower affinity than Fox-3, and does not recognize synapsin I using immunohistology. Fox-3 (also called hexaribonucleotide-binding protein 3 and D11Bwg0517e) contains an RNA recognition motif and is classified as a member of the Fox-1 gene family that binds specifically to an RNA element, UGCAUG. We demonstrate that Fox-3 functions as a splicing regulator using neural cell-specific alternative splicing of the non-muscle myosin heavy chain II-B pre-mRNA as a model. Identification of NeuN as Fox-3 clarifies an important element of neurobiology research. 相似文献
154.
Hao-Man Li Eric V. Virtudazo Akio Toh-e Masashi Yamaguchi Susumu Kawamoto Kiminori Shimizu 《Mycoscience》2010,51(4):272-280
The efficiency of gene targeting by integration through homologous recombination (homologous integration, HI) in the human
pathogen Cryptococcus neoformans remains unsatisfactory. In order to achieve a much more efficient gene targeting system in C. neoformans, a new double knockout strain in genes involved in the non-homologous end joining (NHEJ) pathway was constructed. HI frequency
was elevated by as much as approximately fivefold in the single or double knockout strains in NHEJ genes, and the frequency
depended on the gene targeted. None of the NHEJ gene knockouts showed significant differences in regular growth, sensitivity
to DNA-damaging drugs or UV, and virulence compared to the wild-type control, suggesting that the NHEJ pathway does not play
a significant role in these biological stresses in C. neoformans. It was also suggested that the genes analyzed in this study are components of a single NHEJ pathway, as the mutants (including
the double mutant) displayed the same phenotypes. 相似文献
155.
156.
Allam KA Wan DC Kawamoto HK Bradley JP Sedano HO Saied S 《Plastic and reconstructive surgery》2011,127(2):812-821
Given the multiple permutations in craniofacial malformations, classification of median craniofacial dysplasia or midline Tessier no. 0 to 14 clefts has been difficult and disjointed. In this review, the authors present a summary of normal embryology, prior terminology, and their proposed new classification system. Median craniofacial dysplasia has tissue agenesis and holoprosencephaly at one end (the hypoplasias), frontonasal hyperplasia and excessive tissue (the hyperplasias) at the other end, and abnormal splitting or clefting and normal tissue volume (dysraphia) occupying the middle portion of the spectrum. These three distinct subclassifications have different forms of anomalies within their groups. 相似文献
157.
158.
159.
Kaneko S Uchida T Shibuya S Honda T Kawamoto I Harasaki T Fukuoka T Konosu T 《Bioorganic & medicinal chemistry letters》2002,12(5):803-806
Sordaricin derivatives possessing a cyclohexane ring appendage attached via an ether, thioether, amine, oxime, ester or amide linkage were synthesized and their antifungal activity was evaluated in vitro. Compounds containing a thioether bond or an oxime bond as a linkage exhibited potent MICs (< or = 0.125 microg/mL) against four Candida albicans strains including azole-low-susceptible strains. They were also active (MIC < or = 0.125 microg/mL) against Candida glabrata. Their in vivo efficacy was confirmed in a murine intravenous infection model with Candida albicans. 相似文献
160.
Seiji Kawamoto Naoko Iemura Yuichi Inoue Yoshinori Katakura Sanetaka Shirahata 《Cytotechnology》2000,33(1-3):253-257
We have previously shown that 14-3-3 protein, amultifunctional adaptor molecule involved in many aspects ofsignal transduction pathways, is a target antigen for thecancer-associated human monoclonal antibody. Although recentevidences suggest a crucial role of 14-3-3 family members inthe control of cell growth and differentiation, their actualcontribution toward tumor development is still controversial. Inthis article, we examined the effect of enforced 14-3-3overexpression on cell growth of the human lung adenocarcinomacell line, A549. To address this issue, we obtained14-3-3 protein-inducible A549 sublines by transfection with14-3-3 expression vector under the control ofdexamethasone-inducible promoter. We found that 14-3-3 proteininduction in some of these sublines promoted their cell proliferation. Microscopic observation revealed that morphologyof these cells became aggressive multilayer condition,suggesting that malignant phenotypes are also acquired uponectopic induction of 14-3-3 protein. 相似文献