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Pyridoxamine is a substrate of the energy-coupling factor transporter HmpT

机译:吡rid醇是能量耦合因子转运蛋白HmpT的底物

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Energy-coupling factor (ECF) transporters belong to a novel family of proteins that forms a subset within the ATP-binding cassette (ABC) transporter family. These proteins are responsible for the uptake of micronutrients in bacteria. ECF transporters are composed of four proteins: the A- and A′-components, the T-component and the S-component. One of the ECF transporters, named HmpT, was crystallized in the apo form with all four components. It is currently unknown whether HmpT serves as a transporter for hydroxymethyl pyrimidine or the different forms of vitamin B6 (pyridoxine, pyridoxal or pyridoxamine). Using a combination of molecular dynamics (MD) simulations and mass spectrometry, we have identified pyridoxamine to be the preferred substrate of HmpT. Mass spectra show that the mass of the substrate from the HmpT–substrate complex matches that of pyridoxamine. MD simulations likewise indicate that pyridoxamine interacts most strongly with most of the conserved residues of the S-component (Glu 41, His 84 and Gln 43) compared with the other vitamin B6 forms. Furthermore, the simulations have implied that loops 1 and 5 of the S-component can participate in the gating action for HmpT.
机译:能量耦合因子(ECF)转运蛋白属于一个新的蛋白质家族,该蛋白形成ATP结合盒(ABC)转运蛋白家族的一个子集。这些蛋白质负责细菌中微量营养素的摄取。 ECF转运蛋白由四种蛋白质组成:A和A'成分,T成分和S成分。一种ECF转运蛋白,名为HmpT,以载脂蛋白形式与所有四种成分一起结晶。目前尚不清楚HmpT是否充当羟甲基嘧啶或不同形式的维生素B6(吡rid醇,吡ido醛或吡ido胺)的转运蛋白。结合使用分子动力学(MD)模拟和质谱,我们确定吡ido胺是HmpT的首选底物。质谱表明,HmpT-底物复合物的底物质量与吡ido胺相当。 MD模拟同样表明,与其他维生素B6形式相比,吡ido胺与S成分的大多数保守残基(Glu 41,His 84和Gln 43)相互作用最强。此外,仿真暗示S组件的循环1和5可以参与HmpT的门控动作。

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