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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Exploring the conformational dynamics and membrane interactions of PorB from C. glutamicum: a multi-scale molecular dynamics simulation study.
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Exploring the conformational dynamics and membrane interactions of PorB from C. glutamicum: a multi-scale molecular dynamics simulation study.

机译:探索谷氨酸棒杆菌PorB的构象动力学和膜相互作用:多尺度分子动力学模拟研究。

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摘要

Members of the gram-positive mycolata bacteria have unusual cell envelopes which help them to avoid the immune system and the effects of most antibiotics, whilst rendering them permeable to solutes of importance in industrial bioconversion. It is therefore of interest to understand the molecular mechanisms for this selective permeability. PorB is an unusual porin from the outer membrane (OM) of Corynebacterium glutamicum. It has been proposed as an atypical alpha-helical, symmetrical homo-pentameric architecture, with an unusual distribution of polar amino acids on its surface. The proposed structure is too short to traverse a typical phospholipid bilayer, in contrast with the beta-barrel porins of Gram-negative bacteria. Nevertheless, it has been shown to form small anion-selective channels in membranes typical of Escherichia coli. To further understand its function, we have performed ~400 ns of all-atom and ~270 mus of coarse-grained simulations of PorB in a range of membrane mimetic and phospholipid milieus. Our results suggest that PorB can undergo spontaneous conformational rearrangements that allow it to adapt to its local lipid environment. We speculate that the increased flexibility of this alpha-helical porin in comparison with rigid beta-barrels may be an adaptation for the heterogeneous mycolic OM, and explains its demonstrated ability to form measurable pores with phospholipid membranes.
机译:革兰氏阳性霉菌菌的成员具有异常的细胞被膜,这有助于它们避免免疫系统和大多数抗生素的作用,同时使它们对工业生物转化中重要的溶质具有渗透性。因此,有兴趣了解这种选择性渗透的分子机理。 PorB是来自谷氨酸棒状杆菌外膜(OM)的异常孔蛋白。已经提出它是非典型的α-螺旋,对称的均五聚体结构,其表面上极性氨基酸分布异常。与革兰氏阴性细菌的β-桶孔蛋白相反,提出的结构太短而无法穿过典型的磷脂双层。然而,已显示在典型的大肠杆菌膜中形成小的阴离子选择通道。为了进一步了解其功能,我们在一系列膜模拟和磷脂环境中进行了〜400 ns的全原子和〜270 mus的PorB粗粒度模拟。我们的结果表明,PorB会经历自发的构象重排,使其适应其局部脂质环境。我们推测,与刚性β-桶相比,这种α-螺旋孔蛋白的柔性增加可能是对异种霉菌性OM的适应,并解释了其已证明具有形成磷脂膜可测量孔的能力。

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