Department of Biosystems Science and Engineering, Eidgenössische Technische Hochschule Zürich, Basel, Switzerland.
Biozentrum, University of Basel, Basel, Switzerland.
Nat Struct Mol Biol. 2015 Oct;22(10):795-802. doi: 10.1038/nsmb.3087. Epub 2015 Sep 7.
Chaperones increase the folding yields of soluble proteins by suppressing misfolding and aggregation, but how they modulate the folding of integral membrane proteins is not well understood. Here we use single-molecule force spectroscopy and NMR spectroscopy to observe the periplasmic holdase chaperones SurA and Skp shaping the folding trajectory of the large β-barrel outer-membrane receptor FhuA from Escherichia coli. Either chaperone prevents FhuA from misfolding by stabilizing a dynamic, unfolded state, thus allowing the substrate to search for structural intermediates. During this search, the SurA-chaperoned FhuA polypeptide inserts β-hairpins into the membrane in a stepwise manner until the β-barrel is folded. The membrane acts as a free-energy sink for β-hairpin insertion and physically separates transient folds from chaperones. This stabilization of dynamic unfolded states and the trapping of folding intermediates funnel the FhuA polypeptide toward the native conformation.
伴侣蛋白通过抑制错误折叠和聚集来提高可溶性蛋白的折叠产率,但它们如何调节整合膜蛋白的折叠方式还不是很清楚。在这里,我们使用单分子力谱和 NMR 光谱技术来观察周质持留伴侣蛋白 SurA 和 Skp 如何塑造来自大肠杆菌的大型β桶外膜受体 FhuA 的折叠轨迹。这两种伴侣蛋白都通过稳定一个动态的、未折叠的状态来防止 FhuA 错误折叠,从而使底物能够寻找结构中间体。在这个搜索过程中,SurA 伴侣蛋白辅助的 FhuA 多肽以逐步的方式将β发夹插入膜中,直到β桶折叠。膜作为β发夹插入的自由能汇,并将瞬态折叠与伴侣蛋白物理分离。这种对动态未折叠状态的稳定和对折叠中间体的捕获,将 FhuA 多肽引导到天然构象。