组氨酸
化学
质子
锰
运输机
生物物理学
转运蛋白
质子输运
突变
离子运输机
突变体
离子
结晶学
生物化学
氨基酸
生物
基因
膜
物理
有机化学
量子力学
作者
I.A. Ehrnstorfer,Cristina Manatschal,Fabian Arnold,Laederach Juerg,Raimund Dutzler
摘要
Abstract Secondary active transporters of the SLC11/NRAMP family catalyse the uptake of iron and manganese into cells. These proteins are highly conserved across all kingdoms of life and thus likely share a common transport mechanism. Here we describe the structural and functional properties of the prokaryotic SLC11 transporter EcoDMT. Its crystal structure reveals a previously unknown outward-facing state of the protein family. In proteoliposomes EcoDMT mediates proton-coupled uptake of manganese at low micromolar concentrations. Mutants of residues in the transition-metal ion-binding site severely affect transport, whereas a mutation of a conserved histidine located near this site results in metal ion transport that appears uncoupled to proton transport. Combined with previous results, our study defines the conformational changes underlying transition-metal ion transport in the SLC11 family and it provides molecular insight to its coupling to protons.
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