Astbury Centre for Structural Molecular Biology, School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds, Leeds, LS2 9JT, UK.
Faculty of Science, University of South Bohemia, České Budějovice, 370 05, Czech Republic.
EMBO J. 2024 Jan;43(1):1-13. doi: 10.1038/s44318-023-00004-1. Epub 2023 Dec 15.
The Sec translocon is a highly conserved membrane assembly for polypeptide transport across, or into, lipid bilayers. In bacteria, secretion through the core channel complex-SecYEG in the inner membrane-is powered by the cytosolic ATPase SecA. Here, we use single-molecule fluorescence to interrogate the conformational state of SecYEG throughout the ATP hydrolysis cycle of SecA. We show that the SecYEG channel fluctuations between open and closed states are much faster (~20-fold during translocation) than ATP turnover, and that the nucleotide status of SecA modulates the rates of opening and closure. The SecY variant PrlA4, which exhibits faster transport but unaffected ATPase rates, increases the dwell time in the open state, facilitating pre-protein diffusion through the pore and thereby enhancing translocation efficiency. Thus, rapid SecYEG channel dynamics are allosterically coupled to SecA via modulation of the energy landscape, and play an integral part in protein transport. Loose coupling of ATP-turnover by SecA to the dynamic properties of SecYEG is compatible with a Brownian-rachet mechanism of translocation, rather than strict nucleotide-dependent interconversion between different static states of a power stroke.
Sec 转运通道是一种高度保守的跨膜多肽转运或内吞的膜组装体。在细菌中,通过核心通道复合物-SecYEG 在质膜中的分泌是由细胞质 ATP 酶 SecA 驱动的。在这里,我们使用单分子荧光技术在 SecA 的 ATP 水解循环中检测 SecYEG 的构象状态。我们表明,SecYEG 通道在打开和关闭状态之间的波动速度比 ATP 转换速度快得多(在转运过程中快 20 倍),并且 SecA 的核苷酸状态调节打开和关闭的速度。表现出更快转运但 ATP 酶速率不受影响的 PrlA4 SecY 变体增加了开放状态的停留时间,促进前蛋白通过孔扩散,从而提高转运效率。因此,SecYEG 通道的快速动力学通过调节能量景观与 SecA 发生变构偶联,并在蛋白质转运中发挥重要作用。SecA 通过 SecYEG 的动态特性对 ATP 转换的松散偶联与布朗棘轮转运机制兼容,而不是严格依赖核苷酸的动力冲程不同静态状态之间的相互转换。