Team:The University of Alberta/Project

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Contents

Journals

Estrogen Receptors

  • High level expression of full-length estrogen receptor in Escherichia coli is facilitated by the uncoupler of oxidative phosphorylation, CCCP Zhang C.C.; Glenn K.A.; Kuntz M.A.; Shapiro D.J.1 Link
  • Nuclear receptor coactivators function in estrogen receptor- and progestin receptor-dependent aspects of sexual behavior in female mice Heather A. Molenda-Figueiraa, Casey A. Williamsa, Andreana L. Griffina, Eric M. Rutledgeb, Jeffrey D. Blausteina and Marc J. Tetela, Link
  • Estrogen receptor interaction with estrogen response elements Carolyn M. Klinge
    Link
  • A novel estrogen sensor based on recombinant Arxula adeninivorans cells: Thomas Hahna, Kristina Taga, Klaus Riedela, Steffen Uhligb, Keith Baronianc, Gerd Gellissend and Gotthard Kunzea
    Link
  • Estrogen receptor ß: an overview and update: Chunyan Zhao, Karin Dahlman-Wright, and Jan-Åke Gustafsson
    Link
  • A simple and extremely sensitive system for detecting estrogenic activity using transgenic Arabidopsis thaliana
    Link
  • How estrogen-specific proteins discriminate estrogens from androgens: a common steroid binding site architecture
    Link

    Bisphenol A

  • Direct Evidence Revealing Structural Elements Essential for the High Binding Ability of Bisphenol A to Human Estrogen-Related Receptor-γ: Hiroyuki Okada, Takatoshi Tokunaga, Xiaohui Liu, Sayaka Takayanagi, Ayami Matsushima, and Yasuyuki Shimohigashi
    Link
  • Endocrine disruptor bisphenol A strongly binds to human estrogen-related receptor γ (ERRγ) with high constitutive activity:Sayaka Takayanagia, Takatoshi Tokunagaa, Xiaohui Liua, Hiroyuki Okadaa, Ayami Matsushimaa and Yasuyuki Shimohigashi
    Link
  • Aerobic degradation of bisphenol A by Achromobacter xylosoxidans strain B-16 isolated from compost leachate of municipal solid waste:Chang Zhanga, Guangming Zenga, Li Yuana, Jian Yub, Jianbing Lia, Guohe Huanga, Beidou Xie and Hongliang Liua.
    Link
  • Molecular cloning and characterization of cytochrome P450 and ferredoxin genes involved in bisphenol A degradation in Sphingomonas bisphenolicum strain AO1: M. Sasaki, T. Tsuchido and Y. Matsumura.
    Link
  • Processing of Bisphenol A by Plant Tissues: Glucosylation by Cultured BY-2 Cells and Glucosylation/Translocation by Plants of Nicotiana tabacum: Nobuyoshi Nakajima1,4, Yukiko Ohshima2, Shigeko Serizawa2, Tomoko Kouda2, John S. Edmonds2, Fujio Shiraishi2, Mitsuko Aono3, Akihiro Kubo3, Masanori Tamaoki1, Hikaru Saji3 and Masatoshi Morita2.
    Link
  • Purification of Cytochrome P450 and Ferredoxin, Involved in Bisphenonol A Degradation, from Sphingomonas sp. Strain AO1: Miho Sasaki,Ayako Akahira, Ko-ichi Oshiman, Tetsuaki Tsuchido, and Yoshinobu Matsumura.
    Link
  • Biodegradation of bisphenol A by cells and cell lysate from Sphingomonas sp. strain AO1: Miho Sasaki1, Jun-ichi Maki1, Ko-ichi Oshiman3, Yoshinobu Matsumura1, 2 and Tetsuaki Tsuchido1, 2.
    Link

    Plant Info

  • The Basic Helix–Loop–Helix Transcription Factor Family in Plants: A Genome-Wide Study of Protein Structure and Functional Diversity: Marc A. Heim, Marc Jakoby, Martin Werber, Cathie Martin, Bernd Weisshaar, and Paul C. Bailey
    Link

    Other Info

  • Natural Animal Coloration Can Be Determined by a Nonfluorescent Green Flourescent Protein Homolog: Lukyanov K., Fradkov A., Gurskaya N., Matz M., Labas Y., Savitsky A., Markelov M., Zaraisky A., Zhao X., Fang Y., Tan W., and Lukyanov S.
    Link