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Structure and mechanism of the mammalian fructose transporter GLUT5

Authors :
Hitomi Abe
Tomoya Hino
Saba Abdul Hussien
Takeshi Murata
Takatoshi Arakawa
Takao Hamakubo
Grégory Verdon
Michihiro Kasahara
Hiroko Iwanari
Hae Joo Kang
Yumi Sato
Mathieu Coincon
Yayoi Nomura
Yo Sonoda
Norimichi Nomura
So Iwata
Yoshiko Nakada-Nakura
Aziz Abdul Qureshi
Tatsuro Shimamura
Takuya Kobayashi
David A. Drew
Osamu Kusano-Arai
Source :
Nature
Publication Year :
2015

Abstract

The altered activity of the fructose transporter GLUT5, an isoform of the facilitated-diffusion glucose transporter family, has been linked to disorders such as type 2 diabetes and obesity. GLUT5 is also overexpressed in certain tumour cells, and inhibitors are potential drugs for these conditions. Here we describe the crystal structures of GLUT5 from Rattus norvegicus and Bos taurus in open outward- and open inward-facing conformations, respectively. GLUT5 has a major facilitator superfamily fold like other homologous monosaccharide transporters. On the basis of a comparison of the inward-facing structures of GLUT5 and human GLUT1, a ubiquitous glucose transporter, we show that a single point mutation is enough to switch the substrate-binding preference of GLUT5 from fructose to glucose. A comparison of the substrate-free structures of GLUT5 with occluded substrate-bound structures of Escherichia coli XylE suggests that, in addition to global rocker-switch-like re-orientation of the bundles, local asymmetric rearrangements of carboxy-terminal transmembrane bundle helices TM7 and TM10 underlie a 'gated-pore' transport mechanism in such monosaccharide transporters.<br />糖分を細胞内に輸送する膜たんぱく質の立体構造と動きを解明 -肥満やがんの抑制策に役立つ新たな知見-. 京都大学プレスリリース. 2015-10-01.

Details

Language :
English
ISSN :
14764687 and 00280836
Volume :
526
Issue :
7573
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....973c012950a3a81f8ba537b1a0260135