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Yutaka Ebizuka
Researcher at University of Tokyo
Publications - 234
Citations - 9145
Yutaka Ebizuka is an academic researcher from University of Tokyo. The author has contributed to research in topics: Polyketide synthase & Complementary DNA. The author has an hindex of 53, co-authored 234 publications receiving 8578 citations. Previous affiliations of Yutaka Ebizuka include Musashino University.
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The Electronic Plant Gene Register
Matthias Schmidt,Juergen Feierabend,Ya-Hsuan Hsu,Kin-Ying To,Chih-Yuan Yang,Yen Lin,Jei-Fu Shaw,Tanos G. Hage,Craig Seither,David F. Hildebrand,Jun-Jun Liu,Gopi K. Podila,Frauke Hein,Stefan Overkamp,Wolfgang Barz,Kazunari Nozue,John M. Christie,Tomohiro Kiyosue,Winslow R. Briggs,Masamitsu Wada,Raúl Arredondo-Peter,Mario Ramírez,Gautam Sarath,Robert V. Klucas,Armando Casas-Mollano,Luis Destefano-Beltrán,Gary D. Coleman,Baolong Zhu,Sang-Gyu Park,Robert W. Thornburg,David J. Blanchard,Asim Esen,Etti Or,Jenny Baybik,Yolanta Sacks,Iris Vilozny,Hiroaki Hayashi,Noboru Hiraoka,Yasumasa Ikeshiro,Kazufumi Yazaki,Shigeo Tanaka,Tetsuo Kushiro,Masaaki Shibuya,Yutaka Ebizuka,Frank Gubler,Zhongyi Li,Sarah Fieg,John V. Jacobsen,Matthew K. Morell,Soichi Kojima,Sakiko Hanzawa,Toshihiko Hayakawa,Makoto Hayashi,Tomoyuki Yamaya,Bertrand Veau,Audrey Oudin,Martine Courtois,Jean-Claude Chénieux,Saïd Hamdi,Marc Rideau,Marc Clastre,Wen-Joan Chiang,Shu-Chen Grace Chen,Tine Thorbjørnsen,Per Villand,Vanja Eirin Ramstad,Leszek A. Kleczkowski,Odd-Arne Olsen,Hilde-Gunn Opsahl-Ferstad,James V. Anderson,David P. Horvath +70 more
TL;DR: The sequences have been beendeposited in GenBank and the articles listed online through the World Wide Web have been listed on GenBank.
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Beta-amyrin synthase--cloning of oxidosqualene cyclase that catalyzes the formation of the most popular triterpene among higher plants.
TL;DR: The present studies have revealed that distinct OSC exists for triterpene formation in higher plants, and the high level of similarity with cycloartenol synthase indicates close evolutional relationship between sterol and triterPene biosynthesis.
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A new pathway for polyketide synthesis in microorganisms
TL;DR: It is shown that a homodimer of RppA catalyses polyketide synthesis: it selects malonyl-coenzyme-A as the starter, carries out four successive extensions and releases the resulting pentaketide to cyclize to 1,3,6,8-tetrahydroxynaphthalene (THN).
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Identification of Claisen cyclase domain in fungal polyketide synthase WA, a naphthopyrone synthase of Aspergillus nidulans.
TL;DR: Since the C-terminus region of WA PKS of this type was determined to be involved in Claisen-type cyclization of the second ring of naphthopyrone, it is proposed that the so far called TE of these PKSs work not just as TE but as Claisen cyclase.
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Dammarenediol-II synthase, the first dedicated enzyme for ginsenoside biosynthesis, in Panax ginseng
TL;DR: In this paper, a new OSC gene (named as PNA) was expressed in a lanosterol synthase deficient (erg7) Saccharomyces cerevisiae strain GIL77.