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1301por Lee, Ju-Hee, Yeon, Ji-Hyun, Kim, Hanna, Roh, Whijae, Chae, Jeiwook, Park, Han-Oh, Kim, Dong-Myung“…Here, using DIH and heterozygous deletion mutants of the fission yeast Schizosaccharomyces pombe, we identified 1, 4-phopshatidylinositol 5-kinase (PI5K) its3 as a new molecular target of plumbagin for ROS generation. …”
Publicado 2012
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1302por Choi, Eun Shik, Strålfors, Annelie, Catania, Sandra, Castillo, Araceli G., Svensson, J. Peter, Pidoux, Alison L., Ekwall, Karl, Allshire, Robin C.“…It is known that normal centromeric DNA is transcribed in several systems including the fission yeast, Schizosaccharomyces pombe. Here, we show that factors which preserve stable histone H3 chromatin during transcription also play a role in preventing promiscuous CENP-A(Cnp1) deposition in fission yeast. …”
Publicado 2012
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1303“…In the fission yeast Schizosaccharomyces pombe, mitotic entry is orchestrated by a geometry-sensing mechanism that involves the Cdk1/Cdc2-inhibiting Wee1 kinase. …”
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1304por Eckler, Alan M., Wilder, Caroline, Castanon, Antonio, Ferris, Veronica M., Lamere, Rachael A., Perrin, Benjamin A., Pearlman, Ross, White, Blaise, Byrd, Clifton, Ludvik, Nicholas, Nichols, Nona, Poole-Sumrall, Kristen, Sztul, Elizabeth, Styers, Melanie L.“…To further explore the function of the GBF1/GEA family, we have characterized a fission yeast mutant lacking one copy of the essential gene gea1 (gea1+/−), the Schizosaccharomyces pombe ortholog of GBF1. The haploinsufficient gea1+/− strain was shown to be sensitive to the GBF1 inhibitor brefeldin A (BFA) and was rescued from BFA sensitivity by gea1p overexpression. …”
Publicado 2013
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1305por Mos, Magdalena, Esparza-Franco, Manuel A., Godfrey, Emma L., Richardson, Kathryn, Davey, John, Ladds, Graham“…Many eukaryotic cells express RACK1 orthologs, with one example being Cpc2p in the fission yeast Schizosaccharomyces pombe. In contrast to RACK1, Cpc2p has been described to positively regulate, at the ribosomal level, cells entry into M phase. …”
Publicado 2013
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1306por Demirbas, Didem, Wyman, Arlene R., Shimizu-Albergine, Masami, Cakici, Ozgur, Beavo, Joseph A., Hoffman, Charles S.“…By replacing the Schizosaccharomyces pombe PDE gene with the murine PDE8A1 gene in strains lacking adenylyl cyclase, we generated strains whose protein kinase A (PKA)-stimulated growth in 5-fluoro orotic acid (5FOA) medium reflects PDE8 activity. …”
Publicado 2013
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1307“…Finally, signaling through the mitogen-activated protein kinase (MAPK) Pmk1p remained active in mtl2Δ and wsc1Δ disruptants exposed to cell wall stress, suggesting that the cell wall stress-sensing spectrum of Schizosaccharomyces pombe sensor-like proteins differs from that of Saccharomyces cerevisiae.…”
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1308por Zhang, Ziguo, Chang, Leifu, Yang, Jing, Conin, Nora, Kulkarni, Kiran, Barford, David“…Here, we describe the crystal structure of the N-terminal homo-dimerization domain of Schizosaccharomyces pombe Cdc23 (Cdc23(Nterm)). Cdc23(Nterm) is composed of seven contiguous TPR motifs that self-associate through a related mechanism to those of Cdc16 and Cdc27. …”
Publicado 2013
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1309The Dnmt2 RNA methyltransferase homolog of Geobacter sulfurreducens specifically methylates tRNA-Glupor Shanmugam, Raghuvaran, Aklujkar, Muktak, Schäfer, Matthias, Reinhardt, Richard, Nickel, Olaf, Reuter, Gunter, Lovley, Derek R., Ehrenhofer-Murray, Ann, Nellen, Wolfgang, Ankri, Serge, Helm, Mark, Jurkowski, Tomasz P., Jeltsch, Albert“…The activities of Dnmt2 enzymes from Homo sapiens, Drosophila melanogaster, Schizosaccharomyces pombe and Dictyostelium discoideum for methylation of the Geobacter tRNA-Asp and tRNA-Glu were determined showing that all these Dnmt2s preferentially methylate tRNA-Asp. …”
Publicado 2014
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1310por Bayne, Elizabeth H, Bijos, Dominika A, White, Sharon A, Alves, Flavia de Lima, Rappsilber, Juri, Allshire, Robin C“…Both heterochromatin components and pathways that promote heterochromatin assembly, including RNA interference, RNAi, are broadly conserved between the fission yeast Schizosaccharomyces pombe and humans. As a result, fission yeast has emerged as an important model system for dissecting mechanisms governing heterochromatin integrity. …”
Publicado 2014
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1311por Mikheyeva, Irina V., Grady, Patrick J. R., Tamburini, Fiona B., Lorenz, David R., Cam, Hugh P.“…Here, we show that the fission yeast Schizosaccharomyces pombe Set1 utilizes distinct domain modules to regulate disparate classes of repetitive elements associated with euchromatin and heterochromatin via H3K4me-dependent and -independent pathways. …”
Publicado 2014
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1312por Porollo, Aleksey, Sesterhenn, Thomas M., Collins, Margaret S., Welge, Jeffrey A., Cushion, Melanie T.“…In the context of deciphering the metabolic strategies of the obligate pathogenic fungi in the genus Pneumocystis, the genomes of three species (P. carinii, P. murina, and P. jirovecii) were compared among themselves and with the free-living, phylogenetically related fission yeast (Schizosaccharomyces pombe). The underrepresentation of amino acid metabolism pathways compared to those in S. pombe, as well as the incomplete steroid biosynthesis pathway, were confirmed for P. carinii and P. jirovecii and extended to P. murina. …”
Publicado 2014
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1313“…We find that the distantly related yeast Schizosaccharomyces pombe has retained this circuitry for anticodon loop modification, that S. pombe trm7Δ and trm734Δ mutants have more severe phenotypes than the S. cerevisiae mutants, and that tRNA(Phe) is the major biological target. …”
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1314“…In this paper, we explore the neutral space of a Schizosaccharomyces pombe (fission yeast) cell cycle network through an evolution strategy to generate a neutral graph, composed of Boolean regulatory networks that share the same state sequences of the fission yeast cell cycle. …”
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1315por Encinar del Dedo, Javier, Gabrielli, Natalia, Carmona, Mercè, Ayté, José, Hidalgo, Elena“…Iron is an essential cofactor, but it is also toxic at high levels. In Schizosaccharomyces pombe, the sensor glutaredoxin Grx4 guides the activity of the repressors Php4 and Fep1 to mediate a complex transcriptional response to iron deprivation: activation of Php4 and inactivation of Fep1 leads to inhibition of iron usage/storage, and to promotion of iron import, respectively. …”
Publicado 2015
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1316“…The function of this PCS1 gene was assessed by heterologous expression in the Ascomycota yeasts Saccharomyces cerevisiae and Schizosaccharomyces pombe, and by mutating the gene in Sporobolomyces. …”
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1317por Svensson, J. Peter, Shukla, Manu, Menendez-Benito, Victoria, Norman-Axelsson, Ulrika, Audergon, Pauline, Sinha, Indranil, Tanny, Jason C., Allshire, Robin C., Ekwall, Karl“…This study aimed to create a high-resolution, genome-wide map of nucleosome turnover in Schizosaccharomyces pombe. The recombination-induced tag exchange (RITE) method was used to study replication-independent nucleosome turnover through the appearance of new histone H3 and the disappearance or preservation of old histone H3. …”
Publicado 2015
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1318por Bitton, Danny A., Atkinson, Sophie R., Rallis, Charalampos, Smith, Graeme C., Ellis, David A., Chen, Yuan Y.C., Malecki, Michal, Codlin, Sandra, Lemay, Jean-François, Cotobal, Cristina, Bachand, François, Marguerat, Samuel, Mata, Juan, Bähler, Jürg“…Here we analyze RNA-seq data from 116 transcriptomes in fission yeast (Schizosaccharomyces pombe), covering multiple physiological conditions as well as transcriptional and RNA processing mutants. …”
Publicado 2015
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1319“…However, an excess of glucose leads to such undesirable conditions as diabetes and age-related diseases. Since Schizosaccharomyces pombe homologous of many human genes, it offers several advantages for the investigation of the molecular mechanisms underlying human disease and aging studies. …”
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1320por Sasaki-Haraguchi, Noriko, Ikuyama, Takeshi, Yoshii, Shogo, Takeuchi-Andoh, Tomoko, Frendewey, David, Tani, Tokio“…To identify factors ensuring ordered exon joining in constitutive pre-mRNA splicing, we previously screened for exon skipping mutants in Schizosaccharomyces pombe using a reporter plasmid, and characterized three exon skipping mutants named ods1 (ordered splicing 1), ods2, and ods3, the responsible genes of which encode Prp2/U2AF(59), U2AF(23), and SF1, respectively. …”
Publicado 2015
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