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Journal of Inorganic Biochemistry|December 14, 2024
Quantification of lysosomal labile Zn2+ and monitoring of Zn2+ efflux using a small-molecule-protein hybrid fluorescent probeYuyin Du, Toshiyuki Kowada, EunHye Sung, et al.Biochemistry|April 23, 2013
Heme degradation by Staphylococcus aureus IsdG and IsdI liberates formaldehyde rather than carbon monoxideToshitaka Matsui, Shusuke Nambu, Yukari Ono, et al.Proceedings of the National Academy of Sciences of the United States of America|March 24, 2016
Unique coupling of mono- and dioxygenase chemistries in a single active site promotes heme degradationToshitaka Matsui, Shusuke Nambu, Celia W Goulding, et al.European Journal of Biochemistry|November 19, 2003
Characterization of Met95 mutants of a heme-regulated phosphodiesterase from Escherichia coli. Optical absorption, magnetic circular dichroism, circular dichroism, and redox potentialsSatoshi Hirata, Toshitaka Matsui, Yukie Sasakura, et al.ACS Sensors|March 3, 2022
Organelle-Level Labile Zn2+ Mapping Based on Targetable Fluorescent SensorsRong Liu, Toshiyuki Kowada, Yuyin Du, et al.European Biophysics Journal : EBJ|April 3, 2019
Biophysical characterization of heme binding to the intrinsically disordered region of Bach1Kei Segawa, Miki Watanabe-Matsui, Kengo Tsuda, et al.Journal of the American Chemical Society|September 3, 2010
Enzymatic ring-opening mechanism of verdoheme by the heme oxygenase: a combined X-ray crystallography and QM/MM studyWenzhen Lai, Hui Chen, Toshitaka Matsui, et al.Archives of Biochemistry and Biophysics|December 3, 2014
Heme binds to an intrinsically disordered region of Bach2 and alters its conformationMiki Watanabe-Matsui, Takashi Matsumoto, Toshitaka Matsui, et al.The Journal of Biological Chemistry|August 24, 2005
O(2)- and H(2)O(2)-dependent verdoheme degradation by heme oxygenase: reaction mechanisms and potential physiological roles of the dual pathway degradationToshitaka Matsui, Aya Nakajima, Hiroshi Fujii, et al.Journal of the American Chemical Society|December 9, 2004
Proton transfer at helium temperatures during dioxygen activation by heme monooxygenasesRoman Davydov, Sergey Chemerisov, David E Werst, et al.Pageof 5