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タイトル: Riboflavin transporters RFVT/SLC52A mediate translocation of riboflavin, rather than FMN or FAD, across Plasma Membrane
著者: Jin, Congyun
Yao, Yoshiaki
Yonezawa, Atsushi  KAKEN_id  orcid https://orcid.org/0000-0002-8057-6768 (unconfirmed)
Imai, Satoshi  KAKEN_id
Yoshimatsu, Hiroki
Otani, Yuki
Omura, Tomohiro
Nakagawa, Shunsaku  kyouindb  KAKEN_id
Nakagawa, Takayuki  KAKEN_id  orcid https://orcid.org/0000-0003-1890-0843 (unconfirmed)
Matsubara, Kazuo
著者名の別形: 金, 叢芸
八尾, 祉顕
米澤, 淳
今井 哲司
吉松, 宏樹
大谷, 祐基
大村, 友博
中川, 俊作
中川, 貴之
松原, 和夫
キーワード: FAD
Flavin mononucleotide
Riboflavin
Transporter
Vitamin B2
発行日: 1-Nov-2017
出版者: Pharmaceutical Society of Japan
誌名: Biological and Pharmaceutical Bulletin
巻: 40
号: 11
開始ページ: 1990
終了ページ: 1995
抄録: Riboflavin (vitamin B2) plays a role in various biochemical oxidation-reduction reactions. Flavin mononucleotide (FMN) and FAD, the biologically active forms, are made from riboflavin. Riboflavin transporters (RFVTs), RFVT1-3/Slc52a1-3, have been identified. However, the roles of human (h)RFVTs in FMN and FAD homeostasis have not yet been fully clarified. In this study, we assessed the contribution of each hRFVT to riboflavin, FMN and FAD uptake and efflux using in vitro studies. The transfection of hRFVTs increased cellular riboflavin concentrations. The uptake of riboflavin by human embryonic kidney cells transfected with hRFVTs was significantly increased, and the efflux was accelerated in a time-dependent manner. However, the uptake and efflux of FMN and FAD hardly changed. These results strongly suggest that riboflavin, rather than FMN or FAD, passes through plasma membranes via hRFVTs. Our findings could suggest that hRFVTs are involved in riboflavin homeostasis in the cells, and that FMN and FAD concentrations are regulated by riboflavin kinase and FAD synthase.
著作権等: © 2017 The Pharmaceutical Society of Japan
URI: http://hdl.handle.net/2433/276093
DOI(出版社版): 10.1248/bpb.b17-00292
PubMed ID: 29093349
出現コレクション:学術雑誌掲載論文等

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