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1141por Vachon, Lianne, Wood, Justin, Kwon, Eun-Joo Gina, Laderoute, Amy, Chatfield-Reed, Kate, Karagiannis, Jim, Chua, Gordon“…In Schizosaccharomyces pombe, over 90% of transcription factor genes are nonessential. …”
Publicado 2013
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1142por Sun, Ling-Ling, Li, Ming, Suo, Fang, Liu, Xiao-Man, Shen, En-Zhi, Yang, Bing, Dong, Meng-Qiu, He, Wan-Zhong, Du, Li-Lin“…Here, through screening the mating phenotype of a genome-wide deletion collection of the fission yeast Schizosaccharomyces pombe, we obtained a comprehensive catalog of autophagy genes in this highly tractable organism, including genes encoding three heretofore unidentified core Atg proteins, Atg10, Atg14, and Atg16, and two novel factors, Ctl1 and Fsc1. …”
Publicado 2013
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1143por Taylor, Nicholas M. I., Baudin, Florence, von Scheven, Gudrun, Müller, Christoph W.“…Transcription of tRNA-encoding genes by RNA polymerase (Pol) III requires the six-subunit general transcription factor IIIC that uses subcomplexes τA and τB to recognize two gene-internal promoter elements named A- and B-box. The Schizosaccharomyces pombe τA subcomplex comprises subunits Sfc1, Sfc4 and Sfc7. …”
Publicado 2013
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1144por Cranz-Mileva, Susanne, Pamula, Melissa C., Barua, Bipasha, Desai, Brinda, Hong, Yaejee Hannah, Russell, Jacquelyn, Trent, Richard, Wang, Jianqiu, Walworth, Nancy C., Hitchcock-DeGregori, Sarah E.“…The presence of a single, essential tropomyosin gene, cdc8, in fission yeast, Schizosaccharomyces pombe, enables a systems-based approach to define the residues that are important for cellular functions. …”
Publicado 2013
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1145“…We also describe a tool to compute the information profiles of a given DNA sequence, and use the genome of the fission yeast Schizosaccharomyces pombe strain 972 h(−) and five human chromosomes 22 for illustration. …”
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1146por Brown, Alistair J. P., Budge, Susan, Kaloriti, Despoina, Tillmann, Anna, Jacobsen, Mette D., Yin, Zhikang, Ene, Iuliana V., Bohovych, Iryna, Sandai, Doblin, Kastora, Stavroula, Potrykus, Joanna, Ballou, Elizabeth R., Childers, Delma S., Shahana, Shahida, Leach, Michelle D.“…However, there has been rewiring of some stress regulatory circuitry such that the roles of a number of regulators in C. albicans have diverged relative to the benign model yeasts Saccharomyces cerevisiae and Schizosaccharomyces pombe. This reflects the specific evolution of C. albicans as an opportunistic pathogen obligately associated with warm-blooded animals, compared with other yeasts that are found across diverse environmental niches. …”
Publicado 2014
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1147por Shao, Zhenhua, Yan, Wei, Peng, Junhui, Zuo, Xiaobing, Zou, Yang, Li, Fudong, Gong, Deshun, Ma, Rongsheng, Wu, Jihui, Shi, Yunyu, Zhang, Zhiyong, Teng, Maikun, Li, Xu, Gong, Qingguo“…Here, we report the first crystal structures of the tRNA MTase spTrm10 from Schizosaccharomyces pombe in the presence and absence of its methyl donor product S-adenosyl-homocysteine (SAH) and its ortholog scTrm10 from Saccharomyces cerevisiae in complex with SAH. …”
Publicado 2014
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1148por Albert, Benjamin, Colleran, Christine, Léger-Silvestre, Isabelle, Berger, Axel B., Dez, Christophe, Normand, Christophe, Perez-Fernandez, Jorge, McStay, Brian, Gadal, Olivier“…We have shown that when expressed in budding yeast, human UBF1 and a newly identified Sp-Hmo1 (Schizosaccharomyces pombe) localize to the nucleolus and suppress growth defect of the RNA polymerase I mutant rpa49-Δ. …”
Publicado 2013
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1149por Sánchez-Mir, Laura, Soto, Teresa, Franco, Alejandro, Madrid, Marisa, Viana, Raúl A., Vicente, Jero, Gacto, Mariano, Pérez, Pilar, Cansado, José“…In the fission yeast Schizosaccharomyces pombe the cell integrity pathway (CIP) orchestrates multiple biological processes like cell wall maintenance and ionic homeostasis by fine tuning activation of MAPK Pmk1 in response to various environmental conditions. …”
Publicado 2014
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1150por Chen, Weijun, Shulha, Hennady P., Ashar-Patel, Ami, Yan, Jing, Green, Karin M., Query, Charles C., Rhind, Nick, Weng, Zhiping, Moore, Melissa J.“…In this study, we utilized a split TAP-tag approach for large-scale purification of an abundant endogenous U2·U5·U6 complex from Schizosaccharomyces pombe. RNAseq revealed this complex to largely contain excised introns, indicating that it is primarily ILS (intron lariat spliceosome) complexes. …”
Publicado 2014
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1151“…This mechanism is similar to the meiotic nuclear oscillations of Schizosaccharomyces pombe and may be evolutionary conserved.…”
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1152“…In the fission yeast Schizosaccharomyces pombe, an RNA-based mechanism represses meiotic gene expression during vegetative growth. …”
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1153por Jacques, Jean-François, Mercier, Alexandre, Brault, Ariane, Mourer, Thierry, Labbé, Simon“…Although several players involved in iron transport have been identified, the mechanisms by which iron-responsive transcription factors are controlled are still poorly understood. In Schizosaccharomyces pombe, the Fep1 transcription factor represses genes involved in iron acquisition in response to high levels of iron. …”
Publicado 2014
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1154por Rincon, Sergio A., Bhatia, Payal, Bicho, Claudia, Guzman-Vendrell, Mercè, Fraisier, Vincent, Borek, Weronika E., Alves, Flavia de Lima, Dingli, Florent, Loew, Damarys, Rappsilber, Juri, Sawin, Kenneth E., Martin, Sophie G., Paoletti, Anne“…Proper division plane positioning is essential to achieve faithful DNA segregation and to control daughter cell size, positioning, or fate within tissues. In Schizosaccharomyces pombe, division plane positioning is controlled positively by export of the division plane positioning factor Mid1/anillin from the nucleus and negatively by the Pom1/DYRK (dual-specificity tyrosine-regulated kinase) gradients emanating from cell tips. …”
Publicado 2014
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1155por Sofola-Adesakin, Oyinkan, Castillo-Quan, Jorge I., Rallis, Charalampos, Tain, Luke S., Bjedov, Ivana, Rogers, Iain, Li, Li, Martinez, Pedro, Khericha, Mobina, Cabecinha, Melissa, Bähler, Jürg, Partridge, Linda“…Lithium also down-regulated translation in the fission yeast Schizosaccharomyces pombe associated with increased chronological lifespan. …”
Publicado 2014
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1156“…To rectify this problem, we compare homologous genes from the budding yeast Saccharomyces cerevisiae and the fission yeast Schizosaccharomyces pombe. We discover that simultaneously deleting a duplicate gene pair in S. cerevisiae reduces fitness significantly more than deleting their singleton counterpart in S. pombe, revealing post-duplication adaptation. …”
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1157“…The replacement of T with U or 5FU interferes with Pot1 (Pot1pN protein of Schizosaccharomyces pombe) binding. Surprisingly, 5hmU substitution only modestly diminishes Pot1 binding suggesting that hydrophobicity of the T-methyl group likely plays a minor role in protein binding. …”
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1158por Cisneros-Barroso, Eugenia, Yance-Chávez, Tula, Kito, Ayako, Sugiura, Reiko, Gómez-Hierro, Alba, Giménez-Zaragoza, David, Aligue, Rosa“…These results are the first insights into Cmk1 and Ckk2 function in Schizosaccharomyces pombe.…”
Publicado 2014
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1159por Sideri, Theodora, Rallis, Charalampos, Bitton, Danny A., Lages, Bruno M., Suo, Fang, Rodríguez-López, María, Du, Li-Lin, Bähler, Jürg“…The fission yeast Schizosaccharomyces pombe is an emerging genetic model to analyze cellular aging. …”
Publicado 2014
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1160por Wang, Ning, Wang, Mo, Zhu, Yi-Hua, Grosel, Timothy W., Sun, Daokun, Kudryashov, Dmitri S., Wu, Jian-Qiu“…The fission yeast Schizosaccharomyces pombe has six Rho GTPases (Cdc42 and Rho1–Rho5) and seven Rho GEFs (Scd1, Rgf1–Rgf3, and Gef1–Gef3). …”
Publicado 2015
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