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Structural signatures of the class III lasso peptide BI-32169 and the branched-cyclic topoisomers using trapped ion mobility spectrometry-mass spectrometry and tandem mass spectrometry

机译:使用捕获的离子迁移光谱 - 质谱和串联质谱法,III类套索肽BI-32169和支链环状甲基异构体的结构签名

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摘要

Lasso peptides are a class of bioactive ribosomally synthesized and post-translationally modified peptides (RiPPs) characterized by a mechanically interlocked topology, where the C-terminal tail of the peptide is threaded and trapped within an N-terminal macrolactam ring. BI-32169 is a class III lasso peptide containing one disulfide bond that further stabilizes the lasso structure. In contrast to its branched-cyclic analog, BI-32169 has higher stability and is known to exert a potent inhibitory activity against the human glucagon receptor. In the present work, tandem mass spectrometry, using collision-induced dissociation (CID) and electron capture dissociation (ECD), and trapped ion mobility spectrometry-mass spectrometry (TIMS-MS) experiments were carried out to evidence specific structural signatures of the two topologies. CID experiments showed similar fragmentation patterns for the two topoisomers, where a part of the C-terminal tail remains covalently linked to the macrolactam ring by the disulfide bond, which cannot clearly constitute a signature of the lasso topology. ECD experiments of BI-32169 showed an increase of hydrogen migration events in the loop region when compared with those of its branched-cyclic topoisomer evidencing specific structural signatures for the lasso topology. The high mobility resolving power of TIMS resulted in the identification of multiple conformations for the protonated species but did not allow the clear differentiation of the two topologies in mixture. When in complex with cesium metal ions, a reduced number of conformations led to a clear identification of the two structures. Experiments reducing and alkylating the disulfide bond of BI-32169 showed that the lasso structure is preserved and heat stable and the associated conformational changes provide new insights about the role of the disulfide bond in the inhibitory activity against the human glucagon receptor.
机译:套索肽是一种类生物活性核糖体合成和翻译后修饰的肽(RIPP),其特征在于机械互锁拓扑,其中肽的C末端尾部被螺纹并捕获在N-末端MacroLActam环上。 Bi-32169是含有一种含有一种二硫化键的III类套索肽,其进一步稳定套索结构。与其支链环状模拟相比,Bi-32169具有更高的稳定性,已知对人胰高血糖素受体产生有效的抑制活性。在本作的工作中,使用碰撞诱导的解离(CID)和电子捕获解离(ECD)和被捕获的离子迁移光谱 - 质谱(TIMS-MS)实验进行串联质谱法以证据于两者的证据特定结构签名拓扑。 CID实验显示出两个拓扑异构体的类似碎片模式,其中C末端尾部的一部分通过二硫键仍然与Macrolactam环共价连接,这不能明确构成套索拓扑的签名。与其支链循环拓扑器相比,Bi-32169的ECD实验表明,与卢斯拓扑的特定结构签名的分支循环拓扑机相比,环形区域中的氢迁移事件增加。 Tims的高迁移率分辨率导致识别质子化物种的多个构象,但不允许在混合物中清晰分化两个拓扑。当与铯金属离子复合时,减少的构象数导致两种结构的清晰识别。减少和烷基化的实验Bi-32169的二硫键显示,套索结构被保存并热稳定,相关的构象变化提供了关于二硫键在对人胰高血糖素受体的抑制活性中的作用的新见解。

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