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排序方式: 共有337条查询结果,搜索用时 250 毫秒
91.
Gregory M. L. Patterson Cynthia L. Baldwin Christine M. Bolis Faith R. Caplan Helen Karuso Linda K. Larsen Ira A. Levine Richard E. Moore Carrie S. Nelson Kathryn D. Tschappat Grace D. Tuang Eiichi Furusawa Shinobu Furusawa Ted R. Norton Richard B. Raybourne 《Journal of phycology》1991,27(4):530-536
A large-scale screening program was initiated to evaluate laboratory-cultured blue-green algae (cyanobacteria) as a source of novel antineoplastic agents. Approximately 1000 cyanophyte strains from diverse habitats were cultured to provide extracts for testing. The screening program identified the families Scytonemataceae and Stigonemataceae as prolific producers of novel cytotoxic compounds. Rates of rediscovery of known compounds were relatively low. 相似文献
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93.
The ability of Toxoplasma gondii tachyzoites to penetrate erythroid-differentiating Friend erythroleukemia cells (FL cells) was examined in vitro. The parasites were incubated for 4 hr with FL cells which had been induced to synthesize spectrin, a major erythrocyte membrane protein, or hemoglobin by culturing the cells in the presence of dimethylsulfoxide (DMSO) or sodium butyrate. The penetration rate, in terms of both the average number of T. gondii per cell and the percentage of cells containing parasities, observed in the DMSO-treated FL cells was depressed as compared with that found in untreated cells. However, this depression was not related to the presence of spectrin or hemoglobin. This conclusion was based on the fact that the penetration rate in the butyrate-treated cells was the same as that in untreated cells. These results suggest that it is not the presence of spectrin and hemoglobin that inhibits penetration by T. gondii. The failure of T. gondii to enter mammalian erythrocytes is discussed in relation to surface changes in FL cells undergoing erythroid differentiation. 相似文献
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97.
Yasumo H Masuda N Furusawa T Tsukamoto T Sadano H Osumi T 《Biochimica et biophysica acta》2000,1490(1-2):189-197
A protein named nuclear receptor binding factor-2 (NRBF-2) was identified by yeast two-hybrid screening, as an interaction partner of peroxisome proliferator-activated receptor alpha as well as several other nuclear receptors. NRBF-2 exhibited a gene activation function, when tethered to a heterologous DNA binding domain, in both mammalian cells and yeast. 相似文献
98.
Mobarakeh JI Takahashi K Sakurada S Nishino S Watanabe H Kato M Yanai K 《Peptides》2005,26(5):767-777
Orexins are neuropeptides located exclusively in neurons of the lateral hypothalamic area, which send projections to most monoaminergic nuclei, such as noradrenergic locus coeruleus, dopaminergic ventral tegmental areas, and histaminergic tuberomammillary nuclei. The present work was carried out to examine the role of orexins in nociception in mice. C57BL/6 mice were administered with orexin A and B intracerebroventricularly (i.c.v.), intrathecally (i.t.) and subcutaneously (s.c.) to reveal the sites of action of these peptides and to examine the pain thresholds using four kinds of nociceptive tasks. Orexins showed antinociceptive effects in all four types of assays for thermal (hot-plate, tail-flick, paw-withdrawal), mechanical (tail-pressure), chemical (formalin, capsaicin and abdominal stretch) nociceptions and nociceptin-induced behavioral responses, when administered i.c.v. or i.t., whereas the s.c. administration was ineffective. The antinociceptive effects of orexin A were more remarkable than those of orexin B. The i.c.v. administration of orexin A was as effective as, or more potent than the i.t. administration. The effects of orexin A were completely blocked by adenosine type 1 receptor antagonists, 1,3-dipropyl-8-cyclopentylxanthine (DPCPX) and theophylline, but not by naloxone, suggesting a possible involvement of the adenosine-containing neurons and/or the adenosine pathway in these orexin actions. The i.c.v. administration of nociceptin had no significant effects on orexin expression in the brain and spinal cord. The present findings suggest that orexins have an antinociceptive role in at least four different types of pains, probably acting on both the brain and spinal cord. 相似文献
99.
Characterization of mesendoderm: a diverging point of the definitive endoderm and mesoderm in embryonic stem cell differentiation culture 总被引:11,自引:0,他引:11
Tada S Era T Furusawa C Sakurai H Nishikawa S Kinoshita M Nakao K Chiba T Nishikawa S 《Development (Cambridge, England)》2005,132(19):4363-4374
Bipotent mesendoderm that can give rise to both endoderm and mesoderm is an established entity from C. elegans to zebrafish. Although previous studies in mouse embryo indicated the presence of bi-potent mesendoderm cells in the organizer region, characterization of mesendoderm and its differentiation processes are still unclear. As bi-potent mesendoderm is implicated as the major precursor of definitive endoderm, its identification is also essential for exploring the differentiation of definitive endoderm. In this study, we have established embryonic stem (ES) cell lines that carry GFP gene in the goosecoid (Gsc) gene locus and have investigated the differentiation course of mesendodermal cells using Gsc expression as a marker. Our results show that mesendoderm is represented as a Gsc-GFP+ E-cadherin(ECD)+ PDGFRalpha(alphaR)+ population and is selectively induced from ES cells under defined conditions containing either activin or nodal. Subsequently, it diverges to Gsc+ ECD+ alphaR- and Gsc+ ECD- alphaR+ intermediates that eventually differentiate into definitive endoderm and mesodermal lineages, respectively. The presence of mesendodermal cells in nascent Gsc+ ECD+ alphaR+ population was also confirmed by single cell analysis. Finally, we show that the defined culture condition and surface markers developed in this study are applicable for obtaining pure mesendodermal cells and their immediate progenies from genetically unmanipulated ES cells. 相似文献
100.
The efficient evolution of a population requires both genetic diversity and stable reproduction of advantageous genotypes. The accuracy of DNA replication guarantees the stable reproduction, while errors during DNA replication produce the genetic diversity. Thus, one key to the promotion of evolution is inherent in DNA replication. In bacteria, replication forks progress bidirectionally from the single origin of replication on a genome. One replication fork contains two DNA polymerase molecules so that four DNA polymerases simultaneously carry out the replication of a genome. It is generally believed that the fidelity of the intracellular DNA polymerases is identical (parity strategy). To test this, we examined the effects of the intracellular coexistence of a mutator polymerase with low fidelity and a normal polymerase with high fidelity on adaptive evolution (disparity strategy). From the analysis using genetic algorithms based on the bacterial replication, it was found that the population using the disparity strategy could further expand its genetic diversity and preserve the advantageous genotypes more profoundly than the parity population. This strongly suggests that bacteria replicating with a disparity strategy may undergo rapid evolution, particularly during severe environmental changes. The implications of the conspicuous adaptability of Escherichia coli mutator strains are discussed in this context. 相似文献