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cisevol fungi [28 articles]

最近 cisevol さんのライブラリに追加された論文の中から タグ fungi. You can also see everyone's fungi.
  • The yeast coexpression network has a small-world, scale-free architecture and can be explained by a simple model.
    EMBO reports, Vol. 5, No. 3. (March 2004), pp. 280-284.
    by V van Noort, B Snel, MA Huynen
  • Gene co-regulation is highly conserved in the evolution of eukaryotes and prokaryotes.
    Nucleic Acids Res, Vol. 32, No. 16. (2004), pp. 4725-4731.
    by B Snel, V van Noort, MA Huynen
  • Multiple rounds of speciation associated with reciprocal gene loss in polyploid yeasts
    Nature, Vol. 440, No. 7082., pp. 341-345.
    by Devin R Scannell, Kevin P Byrne, Jonathan L Gordon, Simon Wong, Kenneth H Wolfe
  • Functional Analysis of Gene Duplications in Saccharomyces cerevisiae
    Genetics, Vol. 175, No. 2. (1 February 2007), pp. 933-943.
    by Yuanfang Guan, Maitreya J Dunham, Olga G Troyanskaya
  • Retrotransposon Tf1 is targeted to Pol II promoters by transcription activators.
    Molecular cell, Vol. 30, No. 1. (11 April 2008), pp. 98-107.
    by YE Leem, TL Ripmaster, FD Kelly, H Ebina, ME Heincelman, K Zhang, SI Grewal, CS Hoffman, HL Levin
  • Correlation between the abundance of yeast transfer RNAs and the occurrence of the respective codons in protein genes. Differences in synonymous codon choice patterns of yeast and Escherichia coli with reference to the abundance of isoaccepting transfer RNAs.
    J Mol Biol, Vol. 158, No. 4. (15 July 1982), pp. 573-597.
    by T Ikemura
    posted to codon_bias fungi by cisevol on 2008-04-25 12:49:50 as ** along with 1 person and 1 group bjorns BergmanLab
  • Genetic Properties Influencing the Evolvability of Gene Expression.
    Science (24 May 2007)
    by Christian R R Landry, Bernardo Lemos, Scott A A Rifkin, W J J Dickinson, Daniel L L Hartl
  • On the relation between promoter divergence and gene expression evolution
    Mol Syst Biol, Vol. 4 (15 January 2008)
    by Itay Tirosh, Adina Weinberger, Dana Bezalel, Mark Kaganovich, Naama Barkai
  • Evolution of alternative transcriptional circuits with identical logic
    Nature, Vol. 443, No. 7110. (2006), pp. 415-420.
    by Annie E Tsong, Brian B Tuch, Hao Li, Alexander D Johnson
  • Evolution of a combinatorial transcriptional circuit: a case study in yeasts.
    Cell, Vol. 115, No. 4. (14 November 2003), pp. 389-399.
    by AE Tsong, MG Miller, RM Raisner, AD Johnson
  • Transcriptional cosuppression of yeast Ty1 retrotransposons.
    Genes Dev, Vol. 16, No. 4. (15 February 2002), pp. 467-478.
    by YW Jiang
    posted to fungi transposon by cisevol on 2007-12-10 23:12:53 as ** along with 1 group BergmanLab
  • Genome-wide regulatory complexity in yeast promoters: Separation of functionally conserved and neutral sequence.
    Genome Res, Vol. 15, No. 2. (February 2005), pp. 205-213.
    by CS Chin, JH Chuang, H Li
  • Genomic Evolution of the Proteasome System Among Hemiascomycetous Yeasts.
    J Mol Evol (2 October 2007)
    by Gertrud Mannhaupt, Horst Feldmann
  • Transcriptional regulatory code of a eukaryotic genome
    Nature, Vol. 431, No. 7004. (2004), pp. 99-104.
    by Christopher T Harbison, Benjamin D Gordon, Tong I Lee, Nicola J Rinaldi, Kenzie D Macisaac, Timothy W Danford, Nancy M Hannett, Jean-Bosco Tagne, David B Reynolds, Jane Yoo, Ezra G Jennings, Julia Zeitlinger, Dmitry K Pokholok, Manolis Kellis, Alex P Rolfe, Ken T Takusagawa, Eric S Lander, David K Gifford, Ernest Fraenkel, Richard A Young
  • Genetic interactions between polymorphisms that affect gene expression in yeast
    Nature, Vol. 436, No. 7051., pp. 701-703.
    by Rachel B Brem, John D Storey, Jacqueline Whittle, Leonid Kruglyak
  • Comparative analysis indicates regulatory neofunctionalization of yeast duplicates
    Genome Biology, Vol. 8 (05 April 2007), R50.
    by Itay Tirosh, Naama Barkai
  • Expression evolution in yeast genes of single-input modules is mainly due to changes in trans-acting factors.
    Genome Res (5 July 2007)
    by Daryi Wang, Huang-Mo M Sung, Tzi-Yuan Y Wang, Chih-Jen J Huang, Peggy Yang, Tiffany Chang, Yang-Chao C Wang, Da-Lun L Tseng, Jen-Pey P Wu, Tso-Ching C Lee, Ming-Che C Shih, Wen-Hsiung H Li
  • Divergence of Transcription Factor Binding Sites Across Related Yeast Species
    Science, Vol. 317, No. 5839. (10 August 2007), pp. 815-819.
    by Anthony R Borneman, Tara A Gianoulis, Zhengdong D Zhang, Haiyuan Yu, Joel Rozowsky, Michael R Seringhaus, Lu Y Wang, Mark Gerstein, Michael Snyder
  • The Role of Cis-Regulatory Motifs and Genetical Control of Expression in the Divergence of Yeast Duplicate Genes.
    Mol Biol Evol (10 September 2007)
    by Lindsey J J Leach, Ze Zhang, Chenqi Q Q Lu, Michael J J Kearsey, Zewei W W Luo
  • Position specific variation in the rate of evolution in transcription factor binding sites.
    BMC Evol Biol, Vol. 3, No. 1. (28 August 2003)
    by AM Moses, DY Chiang, M Kellis, ES Lander, MB Eisen
  • MONKEY: identifying conserved transcription-factor binding sites in multiple alignments using a binding site-specific evolutionary model.
    Genome Biol, Vol. 5, No. 12. (2004)
    by AM Moses, DY Chiang, DA Pollard, VN Iyer, MB Eisen
  • Sequencing and comparison of yeast species to identify genes and regulatory elements.
    Nature, Vol. 423, No. 6937. (15 May 2003), pp. 241-254.
  • Phylogeny based discovery of regulatory elements.
    BMC Bioinformatics, Vol. 7 (2006)
    by J Gertz, JC Fay, BA Cohen
  • Conservation and Evolution of Cis-Regulatory Systems in Ascomycete Fungi.
    PLoS Biol, Vol. 2, No. 12. (9 November 2004)
    by Audrey P P Gasch, Alan M M Moses, Derek Y Y Chiang, Hunter B B Fraser, Mark Berardini, Michael B B Eisen
  • Identification of functional transcription factor binding sites using closely related Saccharomyces species.
    Genome Res, Vol. 15, No. 5. (May 2005), pp. 701-709.
    by SW Doniger, J Huh, JC Fay
  • Frequent Gain and Loss of Functional Transcription Factor Binding Sites
    PLoS Computational Biology, Vol. 3, No. 5. (1 May 2007), e99.
    by Scott W Doniger, Justin C Fay
  • Finding functional features in Saccharomyces genomes by phylogenetic footprinting.
    Science, Vol. 301, No. 5629. (4 July 2003), pp. 71-76.
  • Rate of promoter class turn-over in yeast evolution.
    BMC Evol Biol, Vol. 6 (2006)
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