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A combined kinetic push and thermodynamic pull as driving forces for outer membrane protein sorting and folding in bacteria

机译:结合了动力学推力和热力学拉力作为细菌外膜蛋白分选和折叠的驱动力

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摘要

In vitro folding studies of outer membrane beta-barrels have been invaluable in revealing the lipid effects on folding rates and efficiencies as well as folding free energies. Here, the biophysical results are summarized, and these kinetic and thermodynamic findings are considered in terms of the requirements for folding in the context of the cellular environment. Because the periplasm lacks an external energy source the only driving forces for sorting and folding available within this compartment are binding or folding free energies and their associated rates. These values define functions for periplasmic chaperones and suggest a biophysical mechanism for the BAM complex.
机译:外膜β-桶的体外折叠研究在揭示脂质对折叠速率和效率以及折叠自由能的影响方面具有不可估量的价值。在此,总结了生物物理结果,并根据细胞环境中折叠的要求考虑了这些动力学和热力学发现。由于周质缺乏外部能源,因此在该隔室内可用于分类和折叠的唯一驱动力是结合或折叠自由能及其相关速率。这些值定义了周质伴侣的功能,并提出了BAM复合物的生物物理机制。

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