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体内 HDX-MS 的发展及其在 TonB 依赖性转运蛋白和其他蛋白质中的应用。

Development of in vivo HDX-MS with applications to a TonB-dependent transporter and other proteins.

机构信息

Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, Illinois, USA.

Department of Molecular Physiology and Biological Physics, University of Virginia, Charlottesville, Virginia, USA.

出版信息

Protein Sci. 2022 Sep;31(9):e4402. doi: 10.1002/pro.4402.

Abstract

Hydrogen-deuterium exchange mass spectrometry (HDX-MS) is a powerful tool that monitors protein dynamics in solution. However, the reversible nature of HDX labels has largely limited the application to in vitro systems. Here, we describe a protocol for measuring HDX-MS in living Escherichia coli cells applied to BtuB, a TonB-dependent transporter found in outer membranes (OMs). BtuB is a convenient and biologically interesting system for testing in vivo HDX-MS due to its controllable HDX behavior and large structural rearrangements that occur during the B12 transport cycle. Our previous HDX-MS study in native OMs provided evidence for B12 binding and breaking of a salt bridge termed the Ionic Lock, an event that leads to the unfolding of the amino terminus. Although purified OMs provide a more native-like environment than reconstituted systems, disruption of the cell envelope during lysis perturbs the linkage between BtuB and the TonB complex that drives B12 transport. The in vivo HDX response of BtuB's plug domain (BtuBp) to B12 binding corroborates our previous in vitro findings that B12 alone is sufficient to break the Ionic Lock. In addition, we still find no evidence of B12 binding-induced unfolding in other regions of BtuBp that could enable B12 passage. Our protocol was successful in reporting on the HDX of several endogenous E. coli proteins measured in the same measurement. Our success in performing HDX in live cells opens the possibility for future HDX-MS studies in a native cellular environment. IMPORTANCE: We present a protocol for performing in vivo HDX-MS, focusing on BtuB, a protein whose native membrane environment is believed to be mechanistically important for B12 transport. The in vivo HDX-MS data corroborate the conclusions from our previous in vitro HDX-MS study of the allostery initiated by B12 binding. Our success with BtuB and other proteins opens the possibility for performing additional HDX-MS studies in a native cellular environment.

摘要

氢氘交换质谱(HDX-MS)是一种强大的工具,可监测溶液中蛋白质的动态变化。然而,HDX 标签的可逆性质在很大程度上限制了其在体外系统中的应用。在这里,我们描述了一种在活大肠杆菌细胞中测量 HDX-MS 的方法,该方法应用于 BtuB,BtuB 是一种在外膜(OM)中发现的 TonB 依赖性转运蛋白。BtuB 是一种方便且具有生物学意义的系统,可用于测试体内 HDX-MS,因为它的 HDX 行为可控,并且在 B12 转运循环过程中发生了较大的结构重排。我们之前在天然 OM 中进行的 HDX-MS 研究为 B12 结合和打破称为离子锁的盐桥提供了证据,这一事件导致氨基末端展开。虽然纯化的 OM 提供了比重建系统更接近天然的环境,但在裂解过程中破坏细胞包膜会扰乱 BtuB 与驱动 B12 转运的 TonB 复合物之间的连接。BtuB 的塞子结构域(BtuBp)对 B12 结合的体内 HDX 反应证实了我们之前的体外发现,即 B12 单独足以打破离子锁。此外,我们仍然没有发现 BtuBp 的其他区域中 B12 结合诱导展开的证据,这可能使 B12 通过。我们的方案成功地报告了在相同测量中测量的几种内源性大肠杆菌蛋白的 HDX。我们在活细胞中成功进行 HDX 为在天然细胞环境中进行未来的 HDX-MS 研究开辟了可能性。重要性:我们提出了一种在体内进行 HDX-MS 的方案,重点是 BtuB,这是一种蛋白质,其天然膜环境被认为对 B12 转运具有机械重要性。体内 HDX-MS 数据证实了我们之前关于 B12 结合引发变构的体外 HDX-MS 研究的结论。我们在 BtuB 和其他蛋白质上的成功为在天然细胞环境中进行其他 HDX-MS 研究开辟了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eaa/9382693/a4ea94251c95/PRO-31-e4402-g004.jpg

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