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  • Takuya Tsubota, Takayo Nakakura, Takahiro Shiotsuki
  • Medicine, Biology
  • Insect molecular biology
  • 2010 (First Publication: 1 June 2010)
  • Juvenile hormone epoxide hydrolases (JHEHs) degrade juvenile hormones (JHs) and are important for JH titre regulation. Here, we report the cloning and analysis of five jheh-related (jheh-r1-r5) genesExpand
  • Atsushi Seino, Takehiko Ogura, +7 authors Takahiro Shiotsuki
  • Biology, Medicine
  • Bioscience, biotechnology, and biochemistry
  • 2010 (First Publication: 23 July 2010)
  • Juvenile hormone epoxide hydrolases (JHEHs) are a family of enzymes that hydrolyze juvenile hormones (JHs). They are important in terms of organ-specific regulation and irreversible degradation. InExpand
  • Kaoru Ohno, Jun-ichi Sawada, +8 authors Yoshiaki Suzuki
  • Biology, Medicine
  • The Journal of Biological Chemistry
  • 2013 (First Publication: 10 September 2013)
  • Background: Silk gland factor-2 (SGF-2) is a key factor regulating tissue-specific expression of the fibroin gene. Results: SGF-2 is a 1.1-MDa heteromeric complex containing Awh, Ldb, Lcaf, andExpand
  • Takuya Tsubota, Chieka Minakuchi, Takayo Nakakura, Tetsuro Shinoda, Takahiro Shiotsuki
  • Medicine, Biology
  • Insect molecular biology
  • 2010 (First Publication: 1 August 2010)
  • Juvenile hormone esterases (JHEs) are required for the degradation of juvenile hormones (JHs) in insects. Here, we report the cloning and analysis of the jhe gene in the red flour beetle, TriboliumExpand
  • Takuya Tsubota, Masaru Shimomura, +5 authors Takahiro Shiotsuki
  • Biology, Medicine
  • Insect biochemistry and molecular biology
  • 2010 (First Publication: 1 February 2010)
  • We have previously cloned and characterized BmJHE, a juvenile hormone (JH)-selective esterase (JHE) that is important for JH titer regulation in the silkworm Bombyx mori. Here, we sought to determineExpand
  • Mai Kimoto, Takuya Tsubota, Keiro Uchino, Hideki Sezutsu, Shigeharu Takiya
  • Medicine, Biology
  • Developmental biology
  • 2014 (First Publication: 1 February 2014)
  • Hox genes are well-known master regulators in developmental morphogenesis along the anteroposterior axis of animals. However, the molecular mechanisms by which Hox proteins regulate their targetExpand