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Dual energy landscape: the functional state of the beta-barrel outer membrane protein G molds its unfolding energy landscape.

机译:双能景观:β-桶外膜蛋白G模具展开能量景观的功能状态。

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We applied dynamic single-molecule force spectroscopy to quantify the parameters (free energy of activation and distance of the transition state from the folded state) characterizing the energy barriers in the unfolding energy landscape of the outer membrane protein G (OmpG) from Escherichia coli. The pH-dependent functional switching of OmpG directs the protein along different regions on the unfolding energy landscape. The two functional states of OmpG take the same unfolding pathway during the sequential unfolding of beta-hairpins I-IV. After the initial unfolding events, the unfolding pathways diverge. In the open state, the unfolding of beta-hairpin V in one step precedes the unfolding of beta-hairpin VI. In the closed state, beta-hairpin V and beta-strand S11 with a part of extracellular loop L6 unfold cooperatively, and subsequently beta-strand S12 unfolds with the remaining loop L6. These two unfolding pathways in the open and closed states join again in the last unfolding step of beta-hairpin VII. Also, the conformational change from the open to the closed state witnesses a rigidified extracellular gating loop L6. Thus, a change in the conformational state of OmpG not only bifurcates its unfolding pathways but also tunes its mechanical properties for optimum function.
机译:我们应用动态单分子力谱学,以量化参数(从折叠状态的过渡状态的激活和距离的距离),其特征在于大肠杆菌的外膜蛋白G(OMPG)的展开能量景观中的能量屏障。 OMPG的pH依赖性功能切换将蛋白质沿着不同地区的展开能量景观。在β发夹I-IV的顺序展开期间,OMPG的两个功能状态采用相同的展开途径。在初始展开事件之后,展开途径分歧。在开放状态下,在一步中的β-发夹v的展开在展开的β发夹VI的展开之前。在闭合状态下,β-发夹V和β-股线S11,其具有组织间环L6的一部分,以及随后与剩余环L6展开的β-股线S12。开放和封闭状态下的这两个展开途径再次加入Beta-Mairpin VII的最后展开步骤。而且,从开放到闭合状态的构象变化见证了刚性的细胞外浇口环L6。因此,OMPG的构象状态的变化不仅分叉其展开途径,而且还调整其机械性能以获得最佳功能。

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