Department of Chemistry, Texas A & M University, College Station, Texas 77843, United States.
Biochemistry. 2020 Mar 10;59(9):1013-1022. doi: 10.1021/acs.biochem.0c00105. Epub 2020 Mar 2.
Recombinant proteins have increased our knowledge regarding the physiological role of proteins; however, affinity purification tags are often not cleaved prior to analysis, and their effects on protein structure, stability and assembly are often overlooked. In this study, the stabilizing effects of an N-terminus dual-FLAG (FT) tag fusion to transthyretin (TTR), a construct used in previous studies, are investigated using native ion mobility-mass spectrometry (IM-MS). A combination of collision-induced unfolding and variable-temperature electrospray ionization is used to compare gas- and solution-phase stabilities of FT-TTR to wild-type and C-terminal tagged TTR. Despite an increased stability of both gas- and solution-phase FT-TTR, thermal degradation of FT-TTR was observed at elevated temperatures, viz., backbone cleavage occurring between Lys9 and Cys10. This cleavage reaction is consistent with previously reported metalloprotease activity of TTR [Liz et al. 2009] and is suppressed by either metal chelation or excess zinc. This study brings to the fore the effect of affinity tag stabilization of TTR and emphasizes unprecedented detail afforded by native IM-MS to assess structural discrepancies of recombinant proteins from their wild-type counterparts.
重组蛋白增加了我们对蛋白质生理作用的了解;然而,亲和纯化标签在分析之前通常不会被切割,其对蛋白质结构、稳定性和组装的影响往往被忽视。在这项研究中,使用天然离子淌度-质谱(IM-MS)研究了先前研究中使用的转甲状腺素蛋白(TTR)的 N 端双 FLAG(FT)标签融合物的稳定作用。采用碰撞诱导解折叠和可变温度电喷雾电离的组合,比较了 FT-TTR 与野生型和 C 端标记 TTR 的气相和溶液相稳定性。尽管 FT-TTR 的气相和溶液相稳定性都有所提高,但在较高温度下观察到 FT-TTR 的热降解,即在 Lys9 和 Cys10 之间发生的骨架断裂。该断裂反应与先前报道的 TTR 的金属蛋白酶活性一致[Liz 等人,2009],并且可以通过金属螯合或过量锌来抑制。这项研究强调了亲和标签对 TTR 稳定性的影响,并强调了天然 IM-MS 提供的前所未有的细节,用于评估重组蛋白与其野生型对应物在结构上的差异。