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Inward-facing conformation of l-ascorbate transporter suggests an elevator mechanism

机译:l-抗坏血酸转运蛋白的向内构象表明了一种升降机构

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摘要

Various bacteria can ferment vitamin C (l-ascorbate) under anaerobic conditions via the phosphoenolpyruvate-dependent phosphotransferase system (PTS). The PTSasc system is composed of two soluble energy-coupling proteins (EI and HPr) and an enzyme II complex (EIIA, EIIB, and EIIC) for the anaerobic uptake of ascorbate and its phosphorylation to l-ascorbate 6-phosphate in vivo. Crystal structures of the ascorbate-bound EIIC component from Escherichia coli are available in outward-open and occluded conformations, suggesting a possible elevator mechanism of membrane transport. Despite these advances, it remains unclear how EIIC actually transports the substrate across the membrane and interacts with EIIB, which transfers its phosphate group to the EIIC-embedding ascorbate. Here, we present the crystal structure of the EIICasc component from Pasteurella multocida in the inward-facing conformation. By comparing three conformational states, we confirmed the original proposed model: the ascorbate translocation can be achieved by a rigid-body movement of the substrate-binding core domain relative to the V motif domain, which brings along the transmembrane helices TM2 and TM7 of the V motif domain to undergo a winding at the pivotal positions. Together with an in vivo transport assay, we completed the picture of the transport cycle of the ascorbate superfamily of membrane-spanning EIIC components of the PTS system.
机译:各种细菌可以通过依赖于磷酸烯醇丙酮酸的磷酸转移酶系统(PTS)在厌氧条件下发酵维生素C(1-抗坏血酸)。 PTS asc 系统由两种可溶性能量耦合蛋白(EI和HPr)和一种酶II复合物(EIIA,EIIB和EIIC)组成,用于厌氧吸收抗坏血酸盐并将其磷酸化为l-体内抗坏血酸6-磷酸。大肠杆菌中抗坏血酸结合的EIIC成分的晶体结构可以向外开放并被封闭,这提示膜运输的可能是提升机制。尽管取得了这些进展,但仍不清楚EIIC如何实际将底物跨膜运输并与EIIB相互作用,EIIB将其磷酸基团转移至嵌入EIIC的抗坏血酸盐中。在这里,我们展示了多杀巴斯德氏菌的EIIC asc 组分的向内构型的晶体结构。通过比较三种构象状态,我们证实了最初提出的模型:抗坏血酸易位可以通过底物结合核心结构域相对于V母题结构域的刚性运动来实现,该运动导致了膜的跨膜螺旋TM2和TM7。 V母题域在关键位置处进行缠绕。连同体内转运试验,我们完成了PTS系统跨膜EIIC组分抗坏血酸超家族转运周期的照片。

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