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Biotechnology and Bioengineering|October 23, 2020
Comparative analyses of site-directed mutagenesis of human melatonin MTNR1A and MTNR1B receptors using a yeast fluorescent biosensorYasuyuki Nakamura, Ririka Asama, Takuya Tabata, et al.Journal of Bioscience and Bioengineering|May 23, 2022
Enhanced squalene production by modulation of pathways consuming squalene and its precursorMasahiro Tominaga, Keita Miyazaki, Shoko Hataya, et al.Plos One|March 24, 2026
Correction: Utility of a freehand frameless navigation system in computed tomography-assisted ventral bulla osteotomy for otitis media in calvesTakeshi Tsuka, Masamichi Yamashita, Yoshiharu Okamoto, et al.Gan to Kagaku Ryoho. Cancer & Chemotherapy|January 29, 2008
[A case of gastric cancer with synchronous hepatic metastases which enforced the intra hepatic arterial chemotherapy showed a reduction of both tumors]Kunihiro Yamazaki, Masashi Watanabe, Masaru Tsuchiya, et al.Biotechnology Progress|August 8, 2006
Quantitative and dynamic analyses of G protein-coupled receptor signaling in yeast using Fus1, enhanced green fluorescence protein (EGFP), and His3 fusion proteinJun Ishii, Shizuka Matsumura, Sakurako Kimura, et al.Analytical Biochemistry|October 22, 2013
Microbial fluorescence sensing for human neurotensin receptor type 1 using Gα-engineered yeast cellsJun Ishii, Asami Oda, Shota Togawa, et al.Journal of Biotechnology|October 29, 2009
Displaying non-natural, functional molecules on yeast surfaces via biotin-streptavidin interactionTsutomu Tanaka, Shinsuke Masunari, Jun Ishii, et al.Plos One|February 13, 2026
Utility of a freehand frameless navigation system in computed tomography-assisted ventral bulla osteotomy for otitis media in calvesTakeshi Tsuka, Masamichi Yamahita, Yoshiharu Okamoto, et al.ACS Synthetic Biology|March 22, 2017
Positive Feedback Genetic Circuit Incorporating a Constitutively Active Mutant Gal3 into Yeast GAL Induction SystemShintaro Ryo, Jun Ishii, Toshihide Matsuno, et al.International Journal of Molecular Sciences|November 25, 2023
Improved 2,3-Butanediol Production Rate of Metabolically Engineered <i>Saccharomyces cerevisiae</i> by Deletion of <i>RIM15</i> and Activation of Pyruvate Consumption PathwayMasahiko Sugimura, Taisuke Seike, Nobuyuki Okahashi, et al.Pageof 18