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用于气相可裂解蛋白质交联反应分析的一体化拟质谱法。

All-in-One Pseudo-MS Method for the Analysis of Gas-Phase Cleavable Protein Crosslinking Reactions.

机构信息

Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, Alberta, Canada T2N-4N1.

Department of Chemistry, University of Calgary, Calgary, Alberta, Canada T2N-4N1.

出版信息

J Am Soc Mass Spectrom. 2023 Oct 4;34(10):2146-2155. doi: 10.1021/jasms.3c00134. Epub 2023 Aug 17.

Abstract

Crosslinking mass spectrometry (XL-MS) supports structure analysis of individual proteins and highly complex whole-cell interactomes. The identification of crosslinked peptides from enzymatic digests remains challenging, especially at the cell level. Empirical methods that use gas-phase cleavable crosslinkers can simplify the identification process by enabling an MS-based strategy that turns crosslink identification into a simpler problem of detecting two separable peptides. However, the method is limited to select instrument platforms and is challenged by duty cycle constraints. Here, we revisit a pseudo-MS concept that incorporates in-source fragmentation, where a fast switch between gentle high-transmission source conditions and harsher in-source fragmentation settings liberates peptides for standard MS-based peptide identification. We present an all-in-one method where retention time matches between the crosslink precursor and the liberated peptides establish linkage, and MS sequencing identifies the source-liberated peptides. We demonstrate that DC4, a very labile cleavable crosslinker, generates high-intensity peptides in-source. Crosslinks can be identified from these liberated peptides, as they are chromatographically well-resolved from monolinks. Using bovine serum albumin (BSA) as a crosslinking test case, we detect 27% more crosslinks with pseudo-MS over a best-in-class MS method. While performance is slightly lower for whole-cell lysates (generating two-thirds of the identifications of a standard method), we find that 60% of these hits are unique, highlighting the complementarity of the method.

摘要

交联质谱(XL-MS)支持对单个蛋白质和高度复杂的全细胞相互作用组进行结构分析。从酶解产物中鉴定交联肽仍然具有挑战性,尤其是在细胞水平。使用气相可裂解交联剂的经验方法可以通过基于 MS 的策略简化鉴定过程,该策略将交联鉴定转化为更简单的检测两个可分离肽的问题。然而,该方法仅限于选择仪器平台,并且受到工作周期限制的挑战。在这里,我们重新审视了一种伪-MS 概念,该概念包含源内碎裂,其中在温和的高传输源条件和更苛刻的源内碎裂条件之间快速切换可释放肽,以便基于 MS 的标准肽鉴定。我们提出了一种一体化方法,其中交联前体和释放肽之间的保留时间匹配建立了连接,并且 MS 测序鉴定了源释放肽。我们证明了非常不稳定的可裂解交联剂 DC4 在源内产生高强度的肽。可以从这些释放的肽中鉴定交联,因为它们在色谱上与单键很好地分离。使用牛血清白蛋白(BSA)作为交联测试案例,与最佳 MS 方法相比,伪-MS 检测到的交联增加了 27%。虽然对于全细胞裂解物的性能略低(产生标准方法三分之二的鉴定),但我们发现其中 60%的命中是独特的,突出了该方法的互补性。

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