Kosuke Oda
Hiroshima University
28 Papers
91 Citations
Kosuke Oda is an academic researcher from Hiroshima University. The author has contributed to research in topics: Biology & Arginase. The author has an hindex of 9, co-authored 22 publications.
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Papers
A molecular mechanism for copper transportation to tyrosinase that is assisted by a metallochaperone, caddie protein
Yasuyuki Matoba,Naohiko Bando,Kosuke Oda,Masafumi Noda,Fumiko Higashikawa,Takanori Kumagai,Masanori Sugiyama +6 more
TL;DR: The crystal structures of tyrosinase complexed with caddie prepared by altering the soaking time of the copper ion are determined and a molecular mechanism by which two copper ions are transported to the tyosinase catalytic center with the assistance of caddies acting as a metallochaperone is proposed.
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Ethanol Susceptibility of SARS-CoV-2 and Other Enveloped Viruses.
Toshihito Nomura,Tanuza Nazmul,Reiko Yoshimoto,Akifumi Higashiura,Kosuke Oda,Takemasa Sakaguchi +5 more
TL;DR: It was concluded that ethanol at a concentration of 30%(w/w) [36.2%(v/v)] almost completely inactivates SARS-CoV-2.
Molecular Cloning and Heterologous Expression of a Biosynthetic Gene Cluster for the Antitubercular Agent d-Cycloserine Produced by Streptomyces lavendulae
TL;DR: A 21-kb DNA fragment containing a d-cycloserine (DCS) biosynthetic gene cluster from a DCS-producing Streptomyceslavendulae strain, ATCC 11924, is cloned and it is revealed that the introduced genes are responsible for the biosynthesis of DCS.
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A novel transformation system using a bleomycin resistance marker with chemosensitizers for Aspergillus oryzae
Satoshi Suzuki,Sawaki Tada,Mari Fukuoka,Hiroko Taketani,Yoshiki Tsukakoshi,Mayumi Matsushita,Kosuke Oda,Ken-Ichi Kusumoto,Yutaka Kashiwagi,Masanori Sugiyama +9 more
TL;DR: A Bm-resistance expression cassette is constructed, in which blmB encoding Bm N-acetyltransferase from Bm producing Streptomyces verticillus was expressed under the control of a fungal promoter, and a gene knockout mutant efficiently is obtained by Bm selection.
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Catalytic Mechanism of Bleomycin N-Acetyltransferase Proposed on the Basis of Its Crystal Structure
TL;DR: The present study crystallized BAT under both a terrestrial and a microgravity environment in the International Space Station and proposed that the catalytic mode of BAT takes an ordered-like mechanism.
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