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Saburo Neya

Showing results (71-80 of 83) with videos related to

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Bioorganic & Medicinal Chemistry|March 29, 2008
An epoxidation mechanism of carbamazepine by CYP3A4Masayuki Hata, Yoshikazu Tanaka, Naoko Kyoda, et al.
Biochemistry|September 13, 2018
Characterization of Catalytic Activities and Heme Coordination Structures of Heme-DNA Complexes Composed of Some Chemically Modified Hemes and an All Parallel-Stranded Tetrameric G-Quadruplex DNA Formed from d(TTAGGG)Ryosuke Shinomiya, Yuya Katahira, Haruka Araki, et al.
The Journal of Physical Chemistry. B|December 20, 2014
Involvement of propionate side chains of the heme in circular dichroism of myoglobin: experimental and theoretical analysesMasako Nagai, Chika Kobayashi, Yukifumi Nagai, et al.
Biochemistry|June 12, 2010
Molecular insight into intrinsic heme distortion in ligand binding in hemoproteinSaburo Neya, Masaaki Suzuki, Tyuji Hoshino, et al.
Inorganic Chemistry|March 4, 2003
Iron hemiporphycene as a functional prosthetic group for myoglobinSaburo Neya, Kiyohiro Imai, Hiroshi Hori, et al.
Inorganic Chemistry|August 12, 2014
Electronic control of ligand-binding preference of a myoglobin mutantRyu Nishimura, Daichi Matsumoto, Tomokazu Shibata, et al.
Inorganic Chemistry|January 28, 2016
Effects of Heme Electronic Structure and Distal Polar Interaction on Functional and Vibrational Properties of MyoglobinYuki Kanai, Ryu Nishimura, Kotaro Nishiyama, et al.
Inorganic Chemistry|October 23, 2012
Relationship between oxygen affinity and autoxidation of myoglobinTomokazu Shibata, Daichi Matsumoto, Ryu Nishimura, et al.
Biochemistry|August 1, 2017
Characterization of Heme Orientational Disorder in a Myoglobin Reconstituted with a Trifluoromethyl-Group-Substituted Heme CofactorYuki Kanai, Ayaka Harada, Tomokazu Shibata, et al.
Inorganic Chemistry|March 1, 2013
Relationship between the electron density of the heme Fe atom and the vibrational frequencies of the Fe-bound carbon monoxide in myoglobinRyu Nishimura, Tomokazu Shibata, Hulin Tai, et al.
Pageof 9

Showing results (71-80 of 83) with videos related to

Sort By:
Pageof 9
Bioorganic & Medicinal Chemistry|March 29, 2008
An epoxidation mechanism of carbamazepine by CYP3A4Masayuki Hata, Yoshikazu Tanaka, Naoko Kyoda, et al.
Biochemistry|September 13, 2018
Characterization of Catalytic Activities and Heme Coordination Structures of Heme-DNA Complexes Composed of Some Chemically Modified Hemes and an All Parallel-Stranded Tetrameric G-Quadruplex DNA Formed from d(TTAGGG)Ryosuke Shinomiya, Yuya Katahira, Haruka Araki, et al.
The Journal of Physical Chemistry. B|December 20, 2014
Involvement of propionate side chains of the heme in circular dichroism of myoglobin: experimental and theoretical analysesMasako Nagai, Chika Kobayashi, Yukifumi Nagai, et al.
Biochemistry|June 12, 2010
Molecular insight into intrinsic heme distortion in ligand binding in hemoproteinSaburo Neya, Masaaki Suzuki, Tyuji Hoshino, et al.
Inorganic Chemistry|March 4, 2003
Iron hemiporphycene as a functional prosthetic group for myoglobinSaburo Neya, Kiyohiro Imai, Hiroshi Hori, et al.
Inorganic Chemistry|August 12, 2014
Electronic control of ligand-binding preference of a myoglobin mutantRyu Nishimura, Daichi Matsumoto, Tomokazu Shibata, et al.
Inorganic Chemistry|January 28, 2016
Effects of Heme Electronic Structure and Distal Polar Interaction on Functional and Vibrational Properties of MyoglobinYuki Kanai, Ryu Nishimura, Kotaro Nishiyama, et al.
Inorganic Chemistry|October 23, 2012
Relationship between oxygen affinity and autoxidation of myoglobinTomokazu Shibata, Daichi Matsumoto, Ryu Nishimura, et al.
Biochemistry|August 1, 2017
Characterization of Heme Orientational Disorder in a Myoglobin Reconstituted with a Trifluoromethyl-Group-Substituted Heme CofactorYuki Kanai, Ayaka Harada, Tomokazu Shibata, et al.
Inorganic Chemistry|March 1, 2013
Relationship between the electron density of the heme Fe atom and the vibrational frequencies of the Fe-bound carbon monoxide in myoglobinRyu Nishimura, Tomokazu Shibata, Hulin Tai, et al.
Pageof 9