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Bioscience, Biotechnology, and Biochemistry|March 22, 2016
Further increased production of free fatty acids by overexpressing a predicted transketolase gene of the pentose phosphate pathway in Aspergillus oryzae faaA disruptantKoichi Tamano, Ai MiuraInternational Journal of Dental Hygiene|February 3, 2006
Dysphagia management in a 3-year dental hygiene education programme in JapanYoko Sato, Ai Miura, Atsushi SaitoThe FEBS Journal|November 22, 2007
Effect of annealing time of an ice crystal on the activity of type III antifreeze proteinManabu Takamichi, Yoshiyuki Nishimiya, Ai Miura, et al.The FEBS Journal|February 4, 2009
Fully active QAE isoform confers thermal hysteresis activity on a defective SP isoform of type III antifreeze proteinManabu Takamichi, Yoshiyuki Nishimiya, Ai Miura, et al.The FEBS Journal|June 19, 2014
Hyperactive antifreeze protein from an Antarctic sea ice bacterium Colwellia sp. has a compound ice-binding site without repetitive sequencesYuichi Hanada, Yoshiyuki Nishimiya, Ai Miura, et al.The Biochemical Journal|September 11, 2016
Hydrophobic ice-binding sites confer hyperactivity of an antifreeze protein from a snow mold fungusJing Cheng, Yuichi Hanada, Ai Miura, et al.Plos One|September 27, 2013
Antifreeze protein prolongs the life-time of insulinoma cells during hypothermic preservationTatsuro Kamijima, Mami Sakashita, Ai Miura, et al.The FEBS Journal|January 19, 2005
Co-operative effect of the isoforms of type III antifreeze protein expressed in Notched-fin eelpout, Zoarces elongatus KnerYoshiyuki Nishimiya, Ryoko Sato, Manabu Takamichi, et al.Folia Microbiologica|January 8, 2014
Variations in bile tolerance among Lactococcus lactis strains derived from different sourcesShihori Takanashi, Ai Miura, Koko Abe, et al.FEBS Letters|March 1, 2005
A part of ice nucleation protein exhibits the ice-binding abilityYoshihiro Kobashigawa, Yoshiyuki Nishimiya, Kazunori Miura, et al.Pageof 3