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Designer Reagents for Mass Spectrometry-Based Proteomics: Clickable Cross-Linkers for Elucidation of Protein Structures and Interactions

机译:用于基于质谱的蛋白质组学的设计试剂:用于阐明蛋白质结构和相互作用的可点击交联剂

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摘要

We present novel homobifunctional amine-reactive clickable cross-linkers (CXLs) for investigation of three-dimensional protein structures and protein–protein interactions (PPIs). CXLs afford consolidated advantages not previously available in a simple cross-linker, including (1) their small size and cationic nature at physiological pH, resulting in good water solubility and cell-permeability, (2) an alkyne group for bio-orthogonal conjugation to affinity tags via the click reaction for enrichment of cross-linked peptides, (3) a nucleophilic displacement reaction involving the 1,2,3-triazole ring formed in the click reaction, yielding a lock-mass reporter ion for only clicked peptides, and (4) higher charge states of cross-linked peptides in the gas-phase for augmented electron transfer dissociation (ETD) yields. Ubiquitin, a lysine-abundant protein, is used as a model system to demonstrate structural studies using CXLs. To validate the sensitivity of our approach, biotin-azide labeling and subsequent enrichment of cross-linked peptides are performed for cross-linked ubiquitin digests mixed with yeast cell lysates. Cross-linked peptides are detected and identified by collision induced dissociation (CID) and ETD with linear quadrupole ion trap (LTQ)-Fourier transform ion cyclotron resonance (FTICR) and LTQ-Orbitrap mass spectrometers. The application of CXLs to more complex systems (e.g., in vivo cross-linking) is illustrated by Western blot detection of Cul1 complexes including known binders, Cand1 and Skp2, in HEK 293 cells, confirming good water solubility and cell-permeability.
机译:我们提出了新颖的同双功能胺反应性可点击交联剂(CXLs),用于研究三维蛋白质结构和蛋白质-蛋白质相互作用(PPI)。 CXL具有巩固的优势,这在简单的交联剂中是前所未有的,包括(1)它们的小尺寸和在生理pH下的阳离子性质,从而具有良好的水溶性和细胞渗透性,(2)炔烃基可与生物正交偶联(3)涉及在点击反应中形成的1,2,3-三唑环的亲核置换反应,仅产生点击肽的锁定质量报告离子,亲和标签通过点击反应富集交联肽,(3) (4)气相中交联肽的较高电荷态,以提高电子转移解离(ETD)的产量。泛素,一种赖氨酸丰富的蛋白质,被用作模型系统,以证明使用CXL进行结构研究。为了验证我们方法的敏感性,对与酵母细胞裂解液混合的交联泛素消化液进行生物素-叠氮化物标记和随后的交联肽富集。通过碰撞诱导解离(CID)和带有线性四极离子阱(LTQ)-傅立叶变换离子回旋共振(FTICR)和LTQ-Orbitrap质谱仪的ETD检测和鉴定交联的肽。通过Western印迹检测HEK 293细胞中包括已知结合剂Cand1和Skp2的Cul1复合物,证实了CXL在更复杂的系统中的应用(证实了良好的水溶性和细胞渗透性)。

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