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Three-dimensional structure of the human breast cancer resistance protein (BCRP/ABCG2) in an inward-facing conformation.

Rosenberg, Mark F; Bikadi, Zsolt; Hazai, Eszter; Starborg, Tobias; Kelley, Lawrence; Chayen, Naomi E; Ford, Robert C; Mao, Qingcheng

Acta crystallographica. Section D, Biological crystallography. 2015;71(Pt 8):1725-35.

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Abstract

ABCG2 is an efflux drug transporter that plays an important role in drug resistance and drug disposition. In this study, the first three-dimensional structure of human full-length ABCG2 analysed by electron crystallography from two-dimensional crystals in the absence of nucleotides and transported substrates is reported at 2 nm resolution. In this state, ABCG2 forms a symmetric homodimer with a noncrystallographic twofold axis perpendicular to the two-dimensional crystal plane, as confirmed by subtomogram averaging. This configuration suggests an inward-facing configuration similar to murine ABCB1, with the nucleotide-binding domains (NBDs) widely separated from each other. In the three-dimensional map, densities representing the long cytoplasmic extensions from the transmembrane domains that connect the NBDs are clearly visible. The structural data have allowed the atomic model of ABCG2 to be refined, in which the two arms of the V-shaped ABCG2 homodimeric complex are in a more closed and narrower conformation. The structural data and the refined model of ABCG2 are compatible with the biochemical analysis of the previously published mutagenesis studies, providing novel insight into the structure and function of the transporter.

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Published date:
Abbreviated journal title:
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Place of publication:
United States
Volume:
71
Issue:
Pt 8
Pagination:
1725-35
Digital Object Identifier:
10.1107/S1399004715010676
Pubmed Identifier:
26249353
Pii Identifier:
S1399004715010676
Access state:
Active

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Manchester eScholar ID:
uk-ac-man-scw:292626
Created by:
Ford, Robert
Created:
17th December, 2015, 15:49:46
Last modified by:
Ford, Robert
Last modified:
17th December, 2015, 15:49:46

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